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Optimized bacterial expression of myocilin proteins and functional comparison of bacterial and eukaryotic myocilins.

PURPOSE: To maximize the expression level of myocilin and its truncated proteins in Escherichia coli (E. coli) and to examine the biological effects of bacterially expressed myocilin as compared to eukaryotic myocilin on cultured human trabecular meshwork (TM) cells. METHODS: Myocilin full length (1-504 amino acids) and two truncated proteins, myocilin 1-270 and 271-504, were expressed and purified from an E. coli strain, Rosetta2(DE3)pLysS. The eukaryotic myocilin was purified from cultured medium of a transformed TM cell line (TM5) transduced with feline immunodeficiency virus that contains an internal cassette expressing full length myocilin. The morphology and adhesion of human TM cells plated either on fibronectin alone or on fibronectin/purified myocilin mixtures were assessed by phase contrast microscopy. Actin cytoskeleton was examined using Oregon Green phalloidin. Immunofluorescence staining for paxillin was also performed. RESULTS: The expression of full length and truncated myocilin proteins in Rosetta2(DE3)pLysS was markedly increased especially when the bacteria were grown in media supplemented with 1.0% glucose. Cell adhesion was impaired and microspikes were formed when TM cells were plated onto fibronectin/bacterial full length myocilin mixtures. Loss of actin stress fibers and focal adhesions was also observed. This myocilin phenotype was also seen with myocilin 1-270, but not with myocilin 271-504. The eukaryotic full length myocilin produced nearly identical de-adhesive effects as those of the bacterially expressed myocilin. CONCLUSIONS: The condition for a high level expression of full length and truncated myocilins in E. coli was optimized. The bacterial and eukaryotic recombinant full length myocilin produced similar biological consequence on TM cells. The myocilin phenotype appears to be largely due to the NH(2)-terminal half of the protein.

Adult↗

Characterization of rabbit myocilin: Implications for human myocilin glycosylation and signal peptide usage.

BACKGROUND: Mutations in the gene encoding human myocilin (MYOC) have been shown to cause juvenile- and adult-onset glaucoma. In addition, myocilin has been associated with glucocorticoid-induced ocular hypertension and steroid-induced glaucoma. To better understand the role myocilin plays in steroid-induced glaucoma and open-angle glaucoma, we examined rabbit myocilin for use in the rabbit animal model of steroid-induced glaucoma. RESULTS: We have cloned the rabbit ortholog of human MYOC. Rabbit MYOC consists of three exons and an open reading frame encoding a 490 amino acid, 54,882-Da protein, which is 14 amino acids shorter at the N-terminus than human myocilin but 84% identical overall. Rabbit myocilin migrates as a single electrophoretic band, vs. double-banded human myocilin, by SDS-PAGE/immunoblot analysis. We determined that the differential migration exhibited is due to an N-glycosylation site that is present in human (Asn57), monkey and mouse myocilin but absent in rabbit (Ser43), rat and bovine myocilin. Rabbit myocilin is secreted in vitro in trabecular meshwork cell culture and in vivo in aqueous humor. Secretion of human myocilin is shown to be dependent on the signal peptide and independent of the extra 14 amino acids not found in rabbit myocilin. Many of the amino acids in myocilin that are mutated in glaucoma patients are conserved across species. CONCLUSION: We have cloned the rabbit MYOC cDNA and determined that rabbit myocilin is secreted but not N-linked glycosylated. Knowledge of the rabbit MYOC cDNA sequence will facilitate future studies in the rabbit animal model examining the role of myocilin in steroid-induced glaucoma and the gain-of-function hypothesis in open-angle glaucoma.

Amino Acid Sequence↗

Myocilin mutations causing glaucoma inhibit the intracellular endoproteolytic cleavage of myocilin between amino acids Arg226 and Ile227.

Myocilin is a secreted glycoprotein of unknown function that is ubiquitously expressed in many human organs, including the eye. Mutations in this protein produce glaucoma, a leading cause of blindness worldwide. To explore the biological role of myocilin and the pathogenesis of glaucoma, we have analyzed the expression of recombinant wild type and four representative pathogenic myocilin mutations (E323K, Q368X, P370L, and D380A) in transiently transfected cell lines derived from ocular and nonocular tissues. We found that wild type myocilin undergoes an intracellular endoproteolytic processing at the C terminus of Arg226. This cleavage predicts the production of two fragments, one of 35 kDa containing the C-terminal olfactomedin-like domain, and another of 20 kDa containing the N-terminal leucine zipper-like domain. Here we have analyzed the 35-kDa processed fragment, and we have found that it is co-secreted with the nonprocessed protein. Western immunoblot analyses showed that human aqueous humor and some ocular tissues also contain the processed 35-kDa myocilin, indicating that the endoproteolytic cleavage occurs in vivo. Mutant myocilins accumulated in the endoplasmic reticulum of transfected cells as insoluble aggregates. Interestingly, the four pathogenic myocilins inhibited the endoproteolytic processing with varying efficiency. Furthermore, the mutation P370L, which produces the most severe glaucoma phenotype, also elicited the most potent endoproteolytic cleavage inhibition. We propose that the endoproteolytic processing might regulate the activity of myocilin and that the inhibition of the processing by pathogenic mutations impairs the normal role of myocilin.

Amino Acid Sequence↗

Aggregated myocilin induces russell bodies and causes apoptosis: implications for the pathogenesis of myocilin-caused primary open-angle glaucoma.

Primary open-angle glaucoma with elevated intraocular pressure is a leading cause of blindness worldwide. Mutations of myocilin are known to play a critical role in the manifestation of the disease. Misfolded mutant myocilin forms secretion-incompetent intracellular aggregates. The block of myocilin secretion was proposed to alter the extracellular matrix environment of the trabecular meshwork, with subsequent impediment of aqueous humor outflow leading to elevated intraocular pressure. However, the molecular pathogenesis of myocilin-caused glaucoma is poorly defined. In this study, we show that heteromeric complexes composed of wild-type and mutant myocilin were retained in the rough endoplasmic reticulum, aggregating to form inclusion bodies typical of Russell bodies. The presence of myocilin aggregates induced the unfolded protein response proteins BiP and phosphorylated endoplasmic reticulum-localized eukaryotic initiation factor-2alpha kinase (PERK) with the subsequent activation of caspases 12 and 3 and expression of C/EBP homologous protein (CHOP)/GADD153, leading to apoptosis. Our findings identify endoplasmic reticulum stress-induced apoptosis as a pathway to explain the reduction of trabecular meshwork cells in patients with myocilin-caused glaucoma. As a consequence, the phagocytotic capacity of the remaining trabecular meshwork cell population would be insufficient for effective cleaning of aqueous humor, constituting a major pathogenetic factor for the development of increased intraocular pressure in primary open-angle glaucoma.

Animals↗

Characterization of myocilin-myocilin interactions.

PURPOSE: To determine whether myocilin (MYOC; also referred to as TIGR) is present as a complex in human aqueous humor, whether part of the complex formation may be due to MYOC-MYOC interactions and to characterize the sites of interaction. METHODS: Human aqueous humor was analyzed by using a gel filtration column for the identification of MYOC complexes. MYOC-MYOC interactions were studied with a yeast two-hybrid system. Expression of full-length and truncated MYOC proteins in AH109 yeast was analyzed for growth and color on minimal medium. Site-directed mutagenesis was used to selectively mutate eight leucine residues within the leucine zipper motif. In vitro transcription and translation was used to verify yeast two-hybrid analysis. RESULTS: MYOC was found to be present in human aqueous humor as a complex ranging from 120 to 180 kDa. Expression of full-length MYOC in yeast as well as in vitro binding studies revealed that MYOC can interact with itself. MYOC-MYOC interactions occurred mainly within amino acids 117-166, a region containing a leucine zipper domain. Glycine substitution for selective leucine residues confirmed that MYOC-MYOC interactions occurred mainly within the leucine zipper domain. CONCLUSIONS: MYOC is present in human aqueous humor, not as a monomer but as a complex. Part of this complex may form due to MYOC-MYOC interactions that take place mainly within the leucine zipper domain.

Aqueous Humor↗

Canine myocilin is associated with lipid modified by palmitic acid.

PURPOSE: Myocilin, the product of the GLC1A locus in humans, has been associated with primary open angle glaucoma (POAG). Mutations in myocilin exon 3 correlate with age of onset and severity of POAG. Myocilin has been under investigation in experimentally induced glaucoma in rats, mice, and monkeys, however no animal model of inherited POAG exists except in beagles. Our aim was to determine whether canine myocilin more closely resembles human myocilin than does myocilin from other species. METHODS: Canine myocilin was cloned and sequenced from beagle ocular tissues and Madin-Darby Canine Kidney (MDCK) cells, a well characterized canine cell line. Immunohistochemistry was performed on beagle tissues and cultured canine ocular primary cells. RT-PCR was employed to analyze genes expressed by tissues and cells. Myocilin protein synthesized by MDCK and canine optic nerve head cells (ONH) was analyzed by metabolic radioisotope labeling. Immunoprecipitation, enzymatic digestion, and Triton X-114 phase separation were performed to determine the carbohydrate content and the hydrophobicity of canine myocilin, respectively. RESULTS: Canine ONH astrocytes cultured from a beagle eye expressed myocilin and markers of type 1B astrocytes observed also in human ONH cells in culture. The sequence of canine myocilin showed close similarity with the human sequence but lacked the additional upstream coding region found only in human and rat. Myocilin was labeled with (3)H palmitic acid. This label co-eluted with (35)S label in hydroxylapatite chromatography despite purification by phase separation in Triton X-114, immunoprecipitation with myocilin-specific sera, and denaturing conditions of heat, SDS, and reducing agent. CONCLUSIONS: Canine myocilin revealed no striking sequence differences from myocilin of other species. Mutations in myocilin of glaucomatous beagles may suggest a similar pattern of involvement in inherited POAG. This represents the first report of lipid associated with the myocilin protein. Many lipid-modified proteins reside in lipid rafts. This modification of myocilin with lipids supports the unusual secretion properties and may suggest a function of myocilin in sorting, cell signaling and communication between the extracellular matrix and the cell membranes.

Amino Acid Sequence↗

Characterization of the Felix domesticus (cat) glaucoma-associated protein myocilin.

The domestic cat (Felix domesticus) is a useful model for understanding the implications of long-term expression and function of normal and mutant myocilin. To better understand the role myocilin has in the cat eye, we isolated and characterized cat myocilin. Oligonucleotides designed against conserved nucleotide regions of myocilin mammalian orthologs were used to PCR amplify a partial cat myocilin cDNA clone. Rapid amplification of cDNA ends (5' and 3' RACE) was used to obtain full-length cat myocilin. The 2125 nucleotide cat myocilin cDNA contains a 490 amino acid open reading frame. Comparison of cat myocilin to human myocilin shows a 87% similarity, including conservation of the N-terminal leucine zipper, N-linked glycosylation site, C-terminal olfactomedin domain, and all five cysteine residues thought to be involved in disulfide bond formation. Expression in a transformed human trabecular cell line or in Crandall feline kidney cells showed cat myocilin was secreted from these cells, similar to human myocilin, suggesting cat myocilin contains a functional signal peptide sequence. In contrast, expression of cat myocilin containing a known human glaucoma-associated mutation (Y423H in cat; Y437H in human) was not secreted. Characterization of cat myocilin will enable long-term studies be performed in Felix domesticus to analyze changes to intraocular pressure and the aqueous outflow pathway following expression of myocilin and glaucoma causing mutations.

Amino Acid Sequence↗

In vitro and in vivo characterization of disulfide bond use in myocilin complex formation.

PURPOSE: Myocilin forms large complexes in aqueous humor. Part of this complex formation is due to myocilin-myocilin protein non-covalent interactions within the leucine zipper. However, additional covalent interactions also exist. We investigated the role of these covalent interactions in disulfide bond formation within myocilin. METHODS: Human aqueous humor was separated by denatured/non-reduced SDS-PAGE followed by Western blot analysis with myocilin specific antibodies. In part two of the study, site-directed mutagenesis was used to selectively mutate one, two, three, four, and all five cysteine residues in the mature myocilin protein expressed in an in vitro system. Products were immunoprecipitated with a hemagglutinin polyclonal antibody following in vitro transcription/translation and analyzed by SDS-PAGE. In part three of the study, glaucoma associated myocilin mutations Arg82Cys and Cys433Arg were created and complex formation analyzed in trabecular meshwork cells. RESULTS: Human aqueous humor showed myocilin in several distinct large complexes in non-reduced SDS-PAGE gels, indicating disulfide bonds occur. Similarly, in vitro expressed myocilin also produced large complexes. Mutation of all five cysteines (within the mature myocilin protein) eliminated this large complex formation. A combination of cysteine to alanine substitutions at amino acids 185, 245, and 433 had the most influence on myocilin complex formation under non-reducing conditions, however individual substitutions at each of the five cysteine amino acids had little influence on myocilin complexes. In trabecular meshwork cells, Arg82Cys was secreted but formed different sized complexes than wild type myocilin. Cys433Arg was not secreted and remained intracellular in a pattern that differed from wild type myocilin and Arg82Cys. CONCLUSIONS: Myocilin complexes present in human aqueous humor are in part due to disulfide bond formation between cysteine amino acids. Glaucoma associated mutations that affect the number of cysteine residues may alter covalent interactions.

Aqueous Humor↗

Interaction of myocilin with gamma-synuclein affects its secretion and aggregation.

Mutations in the gene encoding human myocilin are associated with some cases of juvenile and early-onset glaucoma. Glaucomatous mutations prevent myocilin from being secreted. The analysis of the defects associated with mutations point to the existence of factor(s) in addition to mutations that might be implicated in the development of glaucoma. In the present paper, we found that interaction of myocilin with one of the members of the synuclein family alters its properties, including its ability to be secreted. Results of immunoprecipitation show that myocilin is a gamma-synuclein-interacting protein. Further analysis demonstrated that both myocilin and gamma-synuclein are expressed in human TM cells, immortalized rat ganglion (RGC-5) cells, and HT22 hippocampal neurons. According to Western blotting, in addition to monomeric form with molecular weight 17 kDa gamma-synuclein is present as higher molecular weight forms ( approximately 35 and 68 KDa), presumably dimer and tetramer. Myocilin and gamma-synuclein have partially overlapping perinuclear localization. Dexamethasone upregulates myocilin expression in RGC-5 cells and HT22 hippocampal neurons. We found alterations of myocilin properties as a result of its interaction with gamma-synuclein. In cultured cells, gamma-synuclein upregulates myocilin expression, inhibits its secretion and prevents the formation of high molecular weight forms of myocilin. Although both alpha-synuclein and gamma-synuclein are expressed in HTM cells, only gamma-synuclein interacts with myocilin and alters its properties. We conclude that myocilin and gamma-synuclein interact and as a result, myocilin's properties are changed. Since myocilin and gamma-synuclein have partially overlapping intracellular localization in cell types that are implicated in glaucoma development, their interaction may play an important role in glaucoma.

Adolescent↗

Myocilin and glaucoma: facts and ideas.

Mutations in the MYOC gene that encodes for myocilin are causative for some forms of juvenile and adult-onset primary open-angle glaucoma (POAG). Myocilin is a secreted 55-57kDa glycoprotein that forms dimers and multimers. Characteristic structural motifs include a myosin-like domain, a leucine zipper region and an olfactomedin domain. Most of the mutations that have been identified in patients with POAG are localized in the olfactomedin domain, which is highly conserved among species. In the eye, myocilin is expressed in high amounts in the trabecular meshwork (TM), sclera, ciliary body and iris, and at considerable lower amounts in retina and optic nerve head. Secreted myocilin is present in the aqueous humor. In the TM, myocilin is found within the cytoplasm of TM cells and in the juxtacanalicular region in association with fibrillar extracellular matrix components. Since patients with mutations in myocilin may have high intraocular pressures, the role of myocilin for aqueous humor outflow has been investigated and conflicting results have been obtained. Recombinant myocilin increases outflow resistance in perfused anterior segment organ cultures, while overexpression of myocilin after viral gene transfer appears to reduce outflow resistance. In TM cells, the expression of myocilin is induced upon treatment with dexamethasone at a time course similar to that observed in steroid-induced glaucoma. Other factors that induce myocilin expression are transforming growth factor-beta and mechanical stretch. Promoter elements that are important for the glucocorticoid induction have not been identified, but it has been shown that upstream stimulatory factor is critical for the basal promoter activity of MYOC. Mice with a targeted disruption of the myocilin gene do not express a phenotype, indicating that the glaucomatous phenotype in humans is not because of a loss-of-function effect. Experimental studies show that mutated myocilin is not secreted, but appears to accumulate in the cells. Such an accumulation might interfere with TM function and lead to impaired outflow resistance, but, so far, experimental evidence for such a scenario is lacking. In addition, the normal function(s) of myocilin is (are) still elusive.

Animals↗

Overexpression and properties of wild-type and Tyr437His mutated myocilin in the eyes of transgenic mice.

PURPOSE: To obtain experimental in vivo information on the functional properties of myocilin for aqueous humor (AH) outflow and to study in vivo the processing of mutated Tyr437His myocilin. Myocilin is a secreted glycoprotein that is mutated in some forms of primary open-angle glaucoma (POAG), and patients with the Tyr437His mutation have severe phenotypes. METHODS: The chicken betaB1-crystallin promoter was used to overexpress wild-type human myocilin and mutated Tyr437His myocilin in the lenses of transgenic mice. Expression of transgenic mRNA was monitored by Northern blot analysis and in situ hybridization. The localization and secretion of transgenic myocilin was investigated by Western blot analysis and light and electron microscopy. Intraocular pressure (IOP) was measured by anterior chamber cannulation. RESULTS: Two independent lines were established with each of the constructs that showed a strong expression of transgenic mRNA in their lenses. Transgenic expression resulted in a 4.7 +/- 1.8-fold increase of secreted normal myocilin in mouse AH, compared with its concentration in human AH. Immunoreactivity for transgenic myocilin was observed along the surfaces of lens and corneal endothelium, and in the chamber angle. At 12 weeks of age, the ultrastructure of the trabecular meshwork in mice expressing normal myocilin was not different from that of control eyes, and IOP of transgenic animals did not significantly differ from that of control littermates. In contrast, mutated Tyr437His myocilin was not secreted from lens fibers, but accumulated in dilated cisterns of rough endoplasmic reticulum. Although no structural changes were observed in lenses of animals expressing normal myocilin, lenses with Tyr437His expression developed nuclear cataracts, completely lost transparency, and eventually ruptured. Structural changes in lenses of Tyr437His expressing mice were correlated with a significant increase in IOP. CONCLUSIONS: The results do not support the concept that increasing amounts of myocilin in the outflow tissues obstruct the system and directly cause an increase in outflow resistance. Mutated Tyr437His myocilin is not secreted in vivo and causes severe alterations of cellular structure and function. A comparable mechanism may cause POAG in patients with myocilin mutations.

Animals↗

Perfusion of his-tagged eukaryotic myocilin increases outflow resistance in human anterior segments in the presence of aqueous humor.

PURPOSE: A previous study by the authors has shown that recombinant myocilin purified from a prokaryotic expression system increases outflow resistance in cultured human anterior segments. The present study was performed to determine whether full-length myocilin purified from a human trabecular meshwork cell expression system alters outflow resistance after infusion into human anterior segments. METHODS: A feline immunodeficiency virus vector encoding both full-length myocilin (amino acids 1-503 fused to C-terminal V5 and six-histidine epitopes) and puromycin resistance was used to transduce a transformed trabecular meshwork cell line (TM5). Stably expressing cells were selected with puromycin. Recombinant myocilin was purified from the media using nickel ion affinity chromatography. Control purifications were performed on media from parental TM5 cells. Anterior segments of human eyes were placed in organ culture and perfused with either Dulbecco's modified Eagle's medium (DMEM) or DMEM supplemented with 50% porcine aqueous humor. One eye received an anterior chamber exchange with recombinant myocilin (2 microg/mL), whereas the fellow eye received an equal volume of control. Immunohistochemistry was performed with anti-myocilin and anti-V5 antibodies. Native polyacrylamide gel electrophoresis was used to analyze myocilin complex formation in porcine aqueous humor. RESULTS: Recombinant myocilin in porcine aqueous humor increased outflow resistance in cultured human anterior segments (91% +/- 68% [mean +/- SD] versus 18% +/- 31% in fellow control eye; n = 9, P = 0.004). Maximum outflow resistance was obtained 5 to 17 hours after infusion and remained above baseline for >3 days. Recombinant myocilin also increased outflow resistance in eyes incubated in DMEM, but only if myocilin was preincubated with porcine aqueous humor (78% +/- 77% when preincubated in DMEM containing porcine aqueous humor versus 13% +/- 15% when preincubated with DMEM alone, n = 6, P = 0.03). Recombinant myocilin appears to form a complex in porcine aqueous humor with a heat-labile protein(s). Immunohistochemistry revealed the presence of myocilin in the juxtacanalicular region of the trabecular meshwork. CONCLUSIONS: Myocilin purified from human trabecular meshwork cells increased outflow resistance in cultured human anterior segments, but only after incubation with porcine aqueous humor. Recombinant myocilin appears to form a complex in porcine aqueous humor that enables it to bind specifically within the trabecular meshwork.

Aged↗

Protein interactions with myocilin.

PURPOSE: To identify factors that interact in vivo with myocilin, a glaucoma gene product. METHODS: The yeast two-hybrid system with myocilin as the bait and a human skeletal muscle cDNA library as the prey was used to identify potential factors that interact with myocilin. Interactions were also examined in bovine trabecular meshwork (TM) cells through a mammalian two-hybrid system. Biochemical coimmunoprecipitation from both human TM cell lysate and in vitro translated proteins was also used to confirm results obtained from yeast analysis. RESULTS: Twenty positive clones isolated through yeast two-hybrid screening were deemed potential myocilin partners. Sequence analysis determined that two of them encoded for myocilin from amino acids 64 to 268. Myocilin was also found to interact with a component of the myosin motor protein, myosin regulatory light chain (RLC). The myocilin-myocilin and myocilin-RLC interactions revealed by the yeast system were further confirmed and demonstrated in cultured TM cells, by means of a mammalian two-hybrid system, and through biochemical coimmunoprecipitation, subcellular fractionation, immunofluorescence, and immunogold double labeling. CONCLUSIONS: These results indicate that myocilin can form homomultimers in vivo, independent of the olfactomedin-like domain. Further analysis established that the leucine zipper motif of myocilin may be necessary for the myocilin-RLC interaction. The interaction of myocilin with RLC, a component of the myosin motor protein complex, implies a role for myocilin in the actomyosin system, linking in turn this novel protein to functional status of the TM.

Animals↗

Did myocilin evolve from two different primordial proteins?

PURPOSE: Myocilin, a 57 kDa glycoprotein, has been of much interest because of its association with primary open-angle glaucoma, lack of understanding of its biological function, and sequence homology of its N- and C-termini with two distinctly different proteins, myosin and olfactomedin, respectively. In that context, the molecular evolution of myocilin was investigated. METHODS: The human myocilin protein was used as query in sequence alignment program and the similar protein sequences were searched in the protein databases for different species. The secondary structure analysis of human myocilin and the prediction of disulfide bonded cysteine residues in the protein were done using PSIPRED and CYSPRED software, respectively. Presence of putative motifs in the protein sequences was determined using the ScanProsite tool with the option of including patterns with the high probability of occurrence. The phylogenetic analyses of human, mouse, rat, and bovine myocilin were done at the DNA Data Bank of Japan (DDBJ) server. RESULTS: It was observed that while two different protein sequences from Drosophila melanogaster contained significant homology with either C-terminal or N-terminal of myocilin, a single protein from Xenopus laevis showed homology covering entire C-terminal and most of the N-terminal region of myocilin. These observations are noteworthy in the context of the previously reported homology of N-terminal domain of myocilin with a single protein (non-muscle myosin) in Dictyostelium discoideum, and C-terminal domain with a single protein (olfactomedin-like) in Caenorhabditis elegans, both representing lower organisms. Further, specific amino acids and putative functional motifs were observed to be conserved between the two sets of proteins having homology to two ends (N- and C-termini) of myocilin. At the secondary structure level, myocilin shows two distinctly different domains: (a) the N-terminal region is primarily a-helical type, and (b) the C-terminal region consists mostly of beta-sheet and turn. CONCLUSIONS: These observations led to the hypothesis that during evolution myocilin might have resulted from fusion of genes for at least two different proteins with functional implications relevant to mammals. It is noteworthy that mutations in the myocilin gene, causal to Primary Open Angle Glaucoma, have only been detected in the first exon (corresponding to myosin like region) and the last exon (corresponding to olfactomedin domain) but not the region (exon 2) between the two domains. Phylogenetic analysis of mammalian myocilin revealed that rat and mouse myocilins demonstrate a closer relationship compared to its human or bovine homologues.

Amino Acid Sequence↗

Molecular cloning and expression profile of rat myocilin.

Myocilin is known to be associated with the pathogenesis of juvenile-onset primary open angle glaucoma. The tissue distribution of myocilin transcripts has been analyzed in both humans and mice, and a high level of expression in the retina and skeletal muscle has been reported. The functions of myocilin in these tissues are unknown. We isolated rat myocilin cDNA and examined the expression pattern of myocilin, including its expression in endocrine organs, using Northern blot analysis. The rat myocilin cDNA sequence has two in-frame initiation codons, the upstream and downstream ATGs corresponding to the initiation codon of human and murine myocilin, respectively. It is most likely that the first ATG is a translational initiation codon, since 8 of 13 amino acid residues deduced from the rat cDNA sequence between the first and the second ATGs are the same as those in human myocilin. The open reading frame encodes 502 amino acids. Rat myocilin also has both a myosin-like domain and an olfactmedin-like domain, which have been identified in human and murine myocilin. Northern analysis of rat myocilin mRNA revealed substantial expression in the thyroid gland, as well as in the retina and muscle. No transcripts were detected in other endocrine glands, including the adrenal gland, pituitary, and testis. Myocilin may play an important role in thyroid function. Further study of the expression and role of myocilin in the thyroid is required.

Amino Acid Sequence↗

[The role of myocilin in the pathogenesis of primary open-angle glaucoma].

Mutations in myocilin are responsible for autosomal-dominant inherited juvenile open-angle glaucoma and some subgroups of adult-onset glaucoma (POAG). Myocilin is a secreted glycoprotein with a molecular weight of approximately 55-57 kDa that forms dimers and multimers. Structural motives are domains that have similarities with myosin and olfactomedin, a signalling sequence as well as a leucine zipper at the N-terminus of myocilin. Most mutations that were identified in patients with POAG are localized in the olfactomedin domain which is highly conserved between species. In the eye, myocilin is highly expressed in the trabecular meshwork (TM), the sclera, the ciliary body and the iris, lower amounts are seen in the retina and the optic nerve. In addition, secreted myocilin is detected in the aqueous humor. In the chamber angle, myocilin is associated with fibrillar components of the extracellular matrix in the cribriform portion of the TM. Myocilin binds specifically to the HepII domain of fibronectin. In organ cultures of perfused anterior eye segments, recombinant myocilin increases outflow resistance. In cultured TM cells, myocilin is induced by treatment with dexamethasone in a similar time course as observed in steroid-induced glaucoma. Myocilin is also induced by transforming growth factor-beta (TGF-beta) and mechanical stress. Mice with a targeted disruption of the myocilin gene do not express a phenotype. Experimental data indicate that mutated myocilin is not secreted and accumulates in cells which might critically impair the function of the TM.

Animals↗

The expression of myocilin during murine eye development.

PURPOSE: To study the expression and localization of myocilin in the developing mouse eye. Myocilin is a 55- to 57-kDa secreted glycoprotein that is mutated in some forms of primary open-angle glaucoma. METHODS: The eyes of NMRI mice were studied from embryonic day (E) 14.5 to postnatal day (P) 21, and at 2-3 months of age. Immunohistochemistry was performed with antibodies against myocilin. The specificity of the antibodies was checked by two-dimensional gel electrophoresis. RNA was isolated from eyes at various ages, and the presence of myocilin mRNA was analyzed by northern blot hybridization. RESULTS: No immunostaining for myocilin was seen before E16.5. At around E17.5, a distinct positive immunoreactivity of optic nerve axons in the developing nerve fiber layer of the retina was observed. At P5-6, immunostaining appeared in perikarya of optic nerve ganglion cells. In the anterior eye, no immunoreactivity was observed until P10. At P12-14, the cells of the epithelial layers of ciliary body and iris, as well as the cells of the trabecular meshwork and iris stroma, became immunoreactive for myocilin. At that time, positive staining for myocilin was also seen in the corneal endothelium and in keratocytes of the corneal stroma. An essentially similar staining pattern was seen in adult eyes. Northern blot analysis for myocilin mRNA in RNA from developing mouse eyes was negative until P9. At P12, a distinct band was observed. A band with similar mobility, but somewhat more intense, was detected in mRNA from adult mouse eyes 2-3 months of age. CONCLUSIONS: The onset of immunoreactivity for myocilin in the retina occurs in parallel with the maturation of optic nerve ganglion cells. In the anterior eye, the expression of myocilin is associated with the final development of those tissues that are directly involved in aqueous humor dynamics. The presence of myocilin might be important for proper function and structure of mature optic nerve ganglion cells and aqueous humor outflow.

Animals↗

Myocilin binding to Hep II domain of fibronectin inhibits cell spreading and incorporation of paxillin into focal adhesions.

Myocilin, a novel matricellular protein found in the human eye, can modify signaling events mediated by the Heparin II domain of fibronectin. Using myocilin produced in sf9 insect cells, myocilin inhibited spreading of cycloheximide-treated human skin fibroblasts plated on substrates co-coated with myocilin and either fibronectin or its Heparin II domain. Cell spreading could be rescued by adding back either substrate adsorbed or soluble Heparin II domains. Myocilin did not inhibit cell attachment to fibronectin even in the presence of a 2400 M excess of myocilin. Myocilin impaired focal adhesion formation and specifically blocked the incorporation of paxillin, but not vinculin, into focal adhesions. The Heparin II domain mediated the incorporation of paxillin into focal adhesions, since paxillin was not assembled into focal adhesions unless the Heparin II domain was present. The effect of myocilin on focal adhesions could be overcome by treating cells with either phorbol 12-myristate (PMA) or oleoyl-L-alpha-lysophosphatidic acid (LPA). Myocilin bound to the fibroblast cell surface, but its binding could not be competed with excess fibronectin, suggesting that myocilin does not compete for cell surface binding sites of fibronectin. Myocilin therefore appears to specifically block functions mediated by the Heparin II domain possibly through direct interactions with it.

Animals↗