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C Lazure

Publications and source records attributed to C Lazure.

At least 55 records · Page 3Linked to original sources

Identification of glandular kallikrein in dog pancreas and determination of its tissue distribution.

In order to establish a formal link between previously purified canine urinary kallikrein and dog pancreatic kallikrein whose cDNA sequence has recently been published, we have isolated the pancreatic kallikrein from that animal species. Pancreatic cytosol proteins were sequentially subjected to chromatography on DEAE-Sepharose CL-6B and Concanavalin A-Sepharose, to an autolysis step and finally to two-dimensional gel electrophoresis. Kallikrein immunoreactive spots were identified with an antibody directed against canine urinary kallikrein. These proteins were isolated after electroblotting and the amino acid sequence of their NH2-terminal portion was determined by microsequencing. The sequence was found to be identical to the one deduced from pancreatic kallikrein cDNA. Using the same antibody and immunohistochemical procedures, kallikrein was found to be present in the pancreas, the salivary glands, the kidney, the colon, the lungs and the testis. These results thus confirm the molecular nature of a glandular kallikrein in the canine species.

Amino Acid Sequence↗

Processing specificity and biosynthesis of the Drosophila melanogaster convertases dfurin1, dfurin1-CRR, dfurin1-X, and dfurin2.

Pro-protein and pro-hormone convertases are subtilisin/kexin-like enzymes implicated in the activation of numerous precursors by cleavage at sites mostly composed of pairs of basic amino acids. Six members of this family of enzymes have been identified in mammals and named furin (also called PACE), PC1 (also called PC3), PC2, PACE4, PC4, and PC5 (also called PC6). Multiple transcripts are produced for all the mammalian convertases, but only in the cases of PC4, PACE4, and PC5 does differential splicing result in the modification of the C-terminal sequence of these enzymes. A similar molecular diversity is also observed for the convertases of Hydra vulgaris, Caenorhabditis elegans, and Drosophila melanogaster. In the third species, two genes homologous to human furin called Dfur1 and Dfur2 have been identified. The Dfur1 gene undergoes differential splicing to generate three type I membrane-bound proteins called dfurin1, dfurin1-CRR, and dfurin1-X, which differ only in their C-terminal sequence. By using recombinant vaccinia viruses that express each of the dfurin proteins, we investigated the potential effect of the C-terminal domain on their catalytic specificities. For this purpose, these enzymes were coexpressed with the precursors pro-7B2, pro-opiomelanocortin, and pro-dynorphin in a number of cell lines, and the processed products obtained were characterized. Our studies demonstrate that these proteases display cleavage specificities similar to that of mammalian furin but not to that of PC2. In contrast, we noted significant differences in the biosynthetic fates of these convertases. All dfurins undergo rapid removal of their transmembrane domain within the endoplasmic reticulum, resulting in the release of several truncated soluble forms. However, in the media of cells containing secretory granules, such as GH4C1 and AtT-20, dfurin1-CRR and dfurin2 predominate over dfurin1, whereas dfurin1-X is never detected. While pro-segment removal occurs predominantly in the trans-Golgi network for all the dfurins, in the presence of brefeldin A, only dfurin1-CRR and dfurin2 can undergo partial zymogen cleavage. The conclusions drawn from the results of this study may well be applicable to the mammalian convertases PC4, PACE4, and PC5, which also display C-terminal sequence heterogeneity.

Amino Acid Sequence↗

N-terminal truncated forms of insulin-like growth factor binding protein-3 in the peritoneal fluid of women without laparoscopic evidence of endometriosis. Le groupe d'investigation en gynécologie.

OBJECTIVE: To characterize and purify peritoneal mitogens able to stimulate the proliferation of human endometrial cells in vitro. DESIGN: Peritoneal fluids (PFs) from 50 patients were collected at laparoscopy and pooled (270 mL) for purification of mitogenic activity. SETTING: University infertility clinic and endocrinology of reproduction and molecular endocrinology laboratories. PATIENTS: Fifty subjects presenting for tubal ligation, pelvic pain, mass, or infertility but otherwise having no evidence of endometriosis inflammation, infection, or tumor. INTERVENTIONS: None. MAIN OUTCOME MEASURES: Assessment of mitogenic activity by 3H-thymidine incorporation into mouse embryo fibroblasts and into primary cultures of isolated epithelial and stromal cells of human endometrium. RESULTS: The PF mitogens were purified successively on carboxymethyl-sepharose and heparin-sepharose columns followed by fractionation on cartridges of C18 silica and reverse-phase high-performance liquid chromatography (HPLC). Four distinct bands were eluted from Sep-Pak, (Mississauga, Ontario, Canada) with molecular weights of 17 to 18, 20, 25, and 29 to 30 kd. The eluted fractions of Sep-Pak exerted preferential mitogenic activity on epithelial-derived human endometrial cells at an equimolar ratio with epidermal growth factor. Microsequencing of the 17 to 18, 20, 25, and 29 to 30 kd bands showed a homologous sequence with N-terminal amino acid sequences of insulin-like growth factor binding protein-3 (IGFBP-3). CONCLUSION: These data indicate that the PF of normal women without evidence of endometriosis contains N-terminal truncated forms of IGFBP-3 that mediate an apparent preferential mitogenic action on epithelial-derived endometrial cells. Therefore, they could play a role in the ectopic growth of endometrial cells.

Amino Acid Sequence↗

The neuroendocrine precursor 7B2 is a sulfated protein proteolytically processed by a ubiquitous furin-like convertase.

The neuroendocrine granule-associated protein 7B2, unlike many other neuroendocrine precursor proteins stored in secretory granules, carries in its primary structure the Arg-Xaa-Arg/Lys-Arg processing site usually found in constitutively secreted precursor proteins and recognized by the ubiquitously expressed convertase, furin. pro7B2 (30 kDa), when expressed in endocrine (AtT-20, PC12, and GH4C1) or non-endocrine (Ltk-) cell lines using recombinant vaccinia viruses, was converted to a 23-kDa form. Mutation of the P4 Arg to Gly completely prevented this conversion. When excess pro7B2 was coexpressed with the pro-protein convertases PC1, PC2, or furin, only furin could induce complete processing. In addition, coexpression of pro7B2 in LoVo cells, which are devoid of endogenous furin activity, with each one of the three convertases, showed that only furin was able to induce processing of this precursor. pro7B2 processing in AtT-20 was completely abolished when protein transport into Golgi compartments was blocked by cell incubation at either 15 or 37 degrees C in the presence of monensin or brefeldin A. Furthermore, pulse-chase experiments in the presence of Na2[35S]SO4 showed that pro7B2 is Tyr-sulfated in the trans-Golgi network before it is processed. These results demonstrate that pro7B2 is first processed by a furin-like enzyme within the trans-Golgi network into a 23-kDa form that is then sequestered into secretory granules.

Animals↗

Processing of prodynorphin by the prohormone convertase PC1 results in high molecular weight intermediate forms. Cleavage at a single arginine residue.

Processing of rat prodynorphin (proDyn) by the mouse prohormone convertase PC1 was investigated. Recombinant vaccinia virus vectors were used to coexpress proDyn and PC1 in rat PC12 pheochromocytoma and mouse AtT-20 corticotroph cells. In vitro experiments were also conducted by co-incubating purified proDyn and PC1. The results demonstrate that PC1 cleaves proDyn at pairs of basic residues to yield 10 and 16 kDa high molecular weight (HMW) intermediates. Additionally, PC1 cleaves proDyn at a single arginine residue to yield an 8 kDa product and the C-peptide. This demonstrates that PC1 cleaves proDyn at single and pairs of basic residues.

Amino Acid Sequence↗

Insertion of hydrophilic amino acid residues in the signal peptide/membrane anchor domain of neprilysin (neutral endopeptidase-24.11) results in its cleavage: role of the position of insertion.

We have expressed in COS-1 cells mutants of neprilysin (neutral endopeptidase-24.11; NEP) in which the hydrophilic sequence S-Q-N-S was either substituted for V42-T-M-I or inserted after T38 in the signal peptide/membrane anchor (SA) domain. These mutations were introduced in full-length NEP (mutants NEP(H1) and NEP(H2), respectively) and a form of NEP lacking its cytosolic tail (mutants NEP delta cyto(H1) and NEP delta cyto(H2), respectively). Immunoblotting showed that NEP(H1) was membrane-bound while NEP delta cyto(H1), NEP(H2), and NEP delta cyto(H2) were secreted. Furthermore, carbonate treatment of isolated intracellular membranes suggested that cleavage of the SA domain was performed in the endoplasmic reticulum, presumably by signal peptidase. Sequencing of the secreted proteins indicated that cleavage of the SA domain mostly occurred at the carboxy side of Ala46 but also at the carboxy side of Ala41 in NEP(H2) and NEP delta cyto(H2). We conclude that the position of the S-Q-N-S sequence influences the accessibility of the cleavage site and, in the case of NEP(H1) and NEP(H2), the efficiency of cleavage of the SA domain.

Amino Acid Sequence↗

Identification of a calcium dependent atrial secretory binding protein as calmodulin.

OBJECTIVE: The role of calcium in the regulation of atrial natriuretic factor (ANF) secretion has focused attention on calcium binding proteins as regulatory components of the secretory machinery for ANF. Two members of the annexin family of calcium binding proteins have emerged as candidates for this role. The aim of this paper is to report the isolation, purification, and identification of another calcium dependent atrial secretory granule binding protein. METHODS: A 20 kDa calcium binding protein was isolated from rat cardiac tissue by affinity chromatography and purified by ion exchange high pressure liquid chromatography followed by reverse phase high pressure liquid chromatography. Identification of the protein was based on its electrophoretic mobility, chromatographic properties, amino acid composition, and ability to stimulate the activity of calmodulin dependent phosphodiesterase. RESULTS: Analysis of this protein and its interaction with atrial secretory granules revealed that it was identical to calmodulin and that the calcium dependent interaction with atrial secretory granules takes place at physiological calcium concentrations. CONCLUSIONS: The study identifies calmodulin as a calcium dependent atrial secretory binding protein. The interaction of calmodulin with atrial secretory granules at physiological calcium concentrations suggest a possible role for calmodulin in the regulation of ANF release from the secretory granules.

Animals↗

Design and synthesis of novel inhibitors of prohormone convertases.

Prohormone convertase-1 (PC1) and furin are subtilisin-like endopeptidases involved in the biosynthesis of peptide hormones. Five decapeptides representing the junction between the pro-region and the catalytic region of PC1 were prepared. The core sequence corresponded to D-Tyr-Arg-Ser-Lys-Arg- Xaa-Val-Gln-Lys-Asp where D-Tyr replaces the native Glu residue and Xaa, representing the P1' position, corresponds to L-Ser, L-Leu or the unnatural amino acids, D-Ser, beta-Ala, gamma-Abu, beta-Cha or gamma-Hyp. Another analog incorporating an Orn residue in place of the Arg at the P1 site was also prepared. These peptides, synthesized by solid-phase Fmoc chemistry, were fully characterized by FAB-MS, 1H-NMR and amino acid composition. Except for Orn, gamma-Hyp, L/D-Ser and L-Leu containing analogs, the others were found to be moderate to potent competitive inhibitors of hPC1 activity in the following order: gamma-Abu > beta-Cha > beta-Ala, with Ki values ranging from 1 to 8.6 microM. Both L-Ser and L-Leu analogs were correctly cleaved at the acyl carbon COOH-terminal to the Lys-Arg pair by human PC1, whereas beta-Cha, gamma-Abu, beta-Ala and D-Ser analogs proved to be very poor substrates. The Orn and gamma-Hyp derivatives were not cleaved by the enzyme at all. The three analogs containing beta-Cha, gamma-Abu and beta-Ala also proved to be potent inhibitors of the human furin activity in the following order: beta-Ala > beta-Cha > gamma-Abu, with Ki ranging from 0.8 to 2.2 microM.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Differential processing of proenkephalin by prohormone convertases 1(3) and 2 and furin.

Recombinant vaccinia virus vectors were used to coexpress mouse prohormone convertase 1 (mPC1), mPC2, or human furin together with human proenkephalin in GH4C1 cells (rat pituitary somatomammotrophs) to examine the proteolytic processing of proenkephalin by these enzymes. Radioimmunoassays performed on high pressure gel permeation size-fractionated extracts obtained from GH4C1 cells and corresponding conditioned media revealed distinct profiles of immunoreactivity for products generated by each enzyme. PC1 produced intermediate sized processing products (3-10 kDa); the major immunoreactive enkephalin-containing species observed eluted at the positions of peptide B, the 5.3-kDa fragment, and free Leu5-enkephalin. PC2 exhibited a more complete processing profile. The major immunoreactive enkephalins produced were free Met5-enkephalin-Arg-Phe, free Met5-enkephalin-Arg-Gly-Leu, free Leu5-enkephalin, and free Met5-enkephalin. Thus PC2 appears to be more capable of generating active opioid units from proenkephalin than is PC1. Finally, furin cleaved proenkephalin to generate peptide B, an unidentified peak between the 18- and 5.3-kDa fragments, and a small amount of the 5.3-kDa fragment. Radiosequencing data verified that the production of the 5.3-kDa fragment by PC1 occurred as a result of a Lys-Lys cleavage. The ability of PC1 to cleave proenkephalin (but not proopiomelanocortin) at a Lys-Lys site implies that the structural context of the paired basic cleavage site may be more important in the determination of cleavage specificity than the particular pair of basic residues at the site.

Amino Acid Sequence↗

Comparative biosynthesis, covalent post-translational modifications and efficiency of prosegment cleavage of the prohormone convertases PC1 and PC2: glycosylation, sulphation and identification of the intracellular site of prosegment cleavage of PC1 and PC2.

We present herein the pulse-chase analysis of the biosynthesis of the prohormone convertases PC1 and PC2 in the endocrine GH4C1 cells infected with vaccinia virus recombinants expressing these convertases. Characterization of the pulse-labelled enzymes demonstrated that pro-PC1 (88 kDa) is cleaved into PC1 (83 kDa) and pro-PC2 (75 kDa) into PC2 (68 kDa). Secretion of glycosylated and sulphated PC1 (84 kDa) occurs about 30 min after the onset of biosynthesis, whereas glycosylated and sulphated PC2 (68 kDa) is detected in the medium after between 1 and 2 h. Furthermore, in the case of pro-PC2 only, we observed that a fraction of this precursor escapes glycosylation. A small proportion (about 5%) of the intracellular glycosylated pro-PC2 (75 kDa) is sulphated, and it is this glycosylated and sulphated precursor that is cleaved into the secretable 68 kDa form of PC2. Major differences in the carbohydrate structures of PC1 and PC2 are demonstrated by the resistance of the secreted PC1 to endoglycosidase H digestion and sensitivity of the secreted PC2 to this enzyme. Inhibition of N-glycosylation with tunicamycin caused a dramatic intracellular degradation of these convertases within the endoplasmic reticulum, with the net effect of a reduction in the available activity of PC1 and PC2. These results emphasize the importance of N-glycosylation in the folding and stability of PC1 and PC2. Pulse-labelling experiments in uninfected mouse beta TC3 and rat Rin m5F insulinoma cells, which endogenously synthesize PC2, showed that, as in infected GH4C1 cells, pro-PC2 predominates intracellularly. In order to define the site of prosegment cleavage, pulse-chase analysis was performed at low temperature (15 degrees C) or after treatment of GH4C1 cells with either brefeldin A or carbonyl cyanide m-chlorophenylhydrazone. These results demonstrated that the onset of the conversions of pro-PC1 into PC1 and non-glycosylated pro-PC2 into PC2 (65 kDa) occur in a pre-Golgi compartment, presumably within the endoplasmic reticulum. In contrast, pulse labelling in the presence of Na(2)35SO4 demonstrated that the processing of glycosylated and sulphated pro-PC2 occurs within the Golgi apparatus. In order to test the possibility that zymogen processing is performed by furin, we co-expressed this convertase with either pro-PC1 or pro-PC2. The data demonstrated the inability of furin to cleave either proenzyme.

Animals↗

Proteolytic degradation of rat growth hormone-releasing factor(1-29) amide in rat pituitary and hypothalamus.

The identification of peptide bonds vulnerable to tissue peptidases is a valuable approach to design peptide agonists which exhibit a longer duration of action than the native molecules. Therefore, the kinetic of disappearance of rat growth hormone-releasing factor (rGRF(1-29)NH2) and the identification of its metabolites were studied in rat pituitary and hypothalamus. Synthetic rGRF(1-29)NH2 (10 microM) was incubated (0-120 min, 37 degrees C) in the presence of a pituitary (237 +/- 51 micrograms protein/ml) or hypothalamus homogenate (576 +/- 27 micrograms protein/ml). Using analytical high pressure liquid chromatography (HPLC), apparent half-lives of 22 +/- 3 min and 25 +/- 4 min were found in pituitary and hypothalamus, respectively. In both tissues, three degradation products, all less hydrophobic than the native peptide, were detected and isolated by preparative HPLC. The identification of the purified metabolites was ascertained by amino acid analysis, sequencing and chromatography with synthetic homologs. These results indicate that the main sites of cleavage in the pituitary and hypothalamus are Lys21-Leu22 (trypsin-like cleavage site), Leu14-Gly15 and Tyr10-Arg11 (chymotrypsin-like cleavage sites). TLCK and leupeptin did not affect the formation of fragment (1-21)OH while TPCK blocked the cleavage of Leu14-Gly15. The low affinity of fragment (1-21)NH2 for pituitary GRF binding sites suggests that hydrolysis of the Lys21-Leu22 bond inactivates rGRF(1-29)NH2 in this target tissue.

Amino Acid Sequence↗

Enzymic characterization of murine and human prohormone convertase-1 (mPC1 and hPC1) expressed in mammalian GH4C1 cells.

Prohormone convertase-1 (PC1), an endopeptidase that is structurally related to the yeast subtilisin-like Kex2 gene product, has been proposed to be involved in mammalian tissue-specific prohormone processing at pairs of basic residues. To better study this enzyme, a rat somatomammotroph cell line, GH4C1, was infected with vaccinia virus recombinants of murine PC1 (mPC1) and human PC1 (hPC1). An enzymically active form of each protein was secreted into the cell medium and partially purified by anion-exchange chromatography. The 80-85 kDa enzyme was shown to be Ca(2+)-dependent and exhibited a pH optimum of 6.0 when assayed against a synthetic fluorogenic substrate, acetyl-Arg-Ser-Lys-Arg-4-methylcoumaryl-1-amide. mPC1 and hPC1 displayed identical cleavage selectivity towards a number of fluorogenic substrates, and those incorporating an Arg at the P4 site were most favoured. Synthetic peptides, encompassing the junction between the putative pro-region and the active enzyme, and between the pro-region and the biologically active parathyroid hormone, were shown to be recognized and cleaved specifically at the pair of basic residues by both enzymes. Group-specific proteinase inhibitors such as metal ion chelators and p-hydroxymercuribenzoate, but not phenylmethanesulphonyl fluoride and pepstatin, strongly inhibit the PC1-associated activity. In addition, it is shown that an enzyme activity displaying identical properties is present in the cell medium of uninfected corticotroph AtT-20 cells and that its level is increased following stimulation of secretion by the secretagogue 8-bromo cyclic AMP.

Amino Acid Sequence↗

Isolation and primary structure of the three major forms of granulin-like peptides from hematopoietic tissues of a teleost fish (Cyprinus carpio).

Granulins are cysteine-rich polypeptides purified from human and rat hematopoietic cells and structurally related to the epithelin family of growth modulatory factors. A prototypic form of granulin was isolated from the hematopoietic organs of teleost fish (Belcourt, D., and Bennett, H.P.J. (1988) J. Cell Biol. 107, 629 (abstr.)). This study reports the structure of three granulins purified from the spleen and head kidney of the carp (Cyprinus carpio). Ion-spray mass spectrometric analysis of granulin-1, -2, and -3 corroborated the observed primary structures and demonstrated that each 57-residue-peptide was monomeric in nature with all cysteines linked via intramolecular disulfide bridges. A comparison of the carp granulin sequences demonstrates that granulins 2 and 3 are most closely related with sequence variations occurring primarily toward the amino terminus. A rabbit polyclonal antibody was raised against carp granulin-1 to develop a radioimmunoassay for this peptide, which showed no significant cross-reactivity with granulin-2 and -3. The distribution of carp granulin-1 was studied by screening purified tissue extracts for immunoreactivity using reversed-phase high performance liquid chromatography. A single form of immunoreactive granulin-1 was identified in all carp tissues studied including spleen, head kidney, heart, skin, gills, and gut. These studies have established that members of the granulin/epithelin family are found in a lower vertebrate and may serve important growth modulatory functions throughout the vertebrate kingdom.

Amino Acid Sequence↗

Radiolabeled biotinyl peptides as useful reagents for the study of proteolytic enzymes.

A radiometric assay for studying the proteolytic activity of endopeptidases using a radiolabeled biotinyl peptide substrate is described. The method relies on the use of a peptidyl substrate incorporating susceptible bonds located between a biotinyl group at one end and a radioiodinated group at the other end. Two tyrosine-containing peptidyl substrates, a fragment of rat plasma kallikrein and a derivative of Leu-enkephalin, were coupled to biotin by reacting with N-hydroxysuccinimidyl-6-(biotinamido) hexanoate. The enzymatic activity is measured by the release into solution of the radiolabeled peptide fragment following selective retrieval, using immobilized avidin, of the biotinyl undigested substrate and the unlabeled biotinyl peptide fragment. This study illustrates that retrieval can be done either before incubation with the enzyme by immobilizing the labeled substrate onto avidin-agarose or, alternatively, after incubation by treating the resulting digest with immobilized avidin. The identity of the labeled released peptides and hence the sites of cleavage can be obtained following separation by RP-HPLC. This assay, in addition to allowing proteolysis to occur with the substrate either in solution or immobilized, is rapid, sensitive (less than 1 pg/ml of trypsin), reproducible, and applicable to the detection of members of all endopeptidase classes. Furthermore, incubation of the radiolabeled biotinyl peptide substrates with enzymes immobilized within polyacrylamide gel slices can be used to detect proteolytic activity following electrophoretic separations under denaturing or nondenaturing conditions.

Amino Acid Sequence↗

The major dog pancreas protein recognized by an antiserum to dog prostate kallikrein is the anionic trypsin.

1. On the basis of its immunoreactivity with a polyclonal antiserum to dog prostate kallikrein in Western blot experiments, a 30 kDa protein was purified from the pancreas of the dog using ion-exchange and gel filtration chromatography. 2. That protein was identified as the anionic trypsin by its NH2-terminal amino acid sequence. 3. The immunoreaction occurred despite an overall amino acid homology which was limited to 39% between the prostate kallikrein and anionic trypsin. 4. Otherwise, the anti-prostatic kallikrein antiserum was rather specific since it did not react with dog cationic trypsin, dog renal kallikrein and human prostate specific antigen.

Amino Acid Sequence↗

Identification and immunolocalisation of annexins V and VI, the major cardiac annexins, in rat heart.

OBJECTIVE: The heart contains proteins of the annexin family, a unique group of calcium binding proteins. This study was aimed at identifying the major cardiac annexins and determining their distribution in the rat heart. METHODS: Annexins were isolated by affinity chromatography and purified by ion exchange high pressure liquid chromatography. Identification of isolated proteins by immunoblotting was confirmed by partial amino acid sequence determination. Antisera raised against the isolated proteins were used for immunohistochemistry by the avidin-biotin-peroxidase technique. RESULTS: Two annexins were isolated and purified. Amino acid sequencing confirmed their identities as annexin V and VI. Immunohistochemistry showed that both annexins were present in cardiac myocytes and non-myocytes, but a distinct pattern of distribution was seen for each annexin. Annexin V immunoreactivity was enhanced in the atria compared with the ventricles, whereas annexin VI was more uniformly distributed. In individual cardiac myocytes annexin V was distributed throughout the cell by contrast with annexin VI, which localised to the sarcolemma. Intercalated discs displayed immunoreactivity for both annexins, most prominently for annexin VI. The most striking immunoreactivity for annexin V occurred in vascular endothelial cells, both in the microcirculation and in the major coronary vessels. Immunoreactivity for annexin VI in vascular structures was localised to the nuclei of endothelial and smooth muscle cells. CONCLUSIONS: Annexins V and VI are the major cardiac annexins. The localisation of these annexins to different components of cardiac myocytes will serve to direct the search for their functions in the heart. The striking immunoreactivity for annexins, particularly annexin V, in the coronary vessels indicates that the functions of cardiac annexins include a role in the coronary circulatory system.

Amino Acid Sequence↗

Affinity purification of proteinases by a combination of immobilized peptidyl aldehyde and semicarbazone.

D-Phe-Phe-argininal semicarbazone and Tyr-Gly-Gly-Phe-Leu-Arg-argininal semicarbazone were prepared using the solution phase synthesis method and characterized by mass spectrometry and nuclear magnetic resonance spectroscopy. The tripeptide and heptapeptide semicarbazones were individually immobilized on affi-Gel 15 resulting in two affinity columns called S3 and S7, respectively. A third affinity column was obtained by hydrolysing the semicarbazone moiety in column S3 to aldehyde (column A3). Serine proteinases such as trypsin or rat plasma kallikrein almost quantitatively bind to either S3 or A3 affinity columns. Under optimized conditions, more than 97% of trypsin bound to both columns S3 and A3. At a lower ionic strength and higher pH, 80-85% of rat plasma kallikrein bound to the same columns. Elution of both enzymes was achieved using mild conditions at near neutral pH and in the presence of a small amount of denaturant. Both proteinases were identified and characterized by high-performance liquid chromatography, sodium dodecylsulphate polyacrylamide gel electrophoresis and by their substrate specificity and inhibition profiles. A single purification (six-to seven-fold) step using either column S3 or A3 allowed the preparation of pure trypsin from commercial sources. Starting from rat plasma partially purified by a phenyl boronate column, fractionation on the S3 column allowed approximately an 87-fold purification of rat plasma kallikrein. However, serial purification of rat plasma kallikrein on column S7 followed by column A3 resulted in a purification factor of about 455.

Aldehydes↗

Gene structure of semenogelin I and II. The predominant proteins in human semen are encoded by two homologous genes on chromosome 20.

The genes for semenogelin I and II, the major protein constituents of the human seminal fluid, have been characterized by three overlapping clones in bacteriophage lambda, encompassing 31.5 kilobases (kb) of genomic DNA. The two genes are located 11.5 kb apart in the region q12-q13.1 on chromosome 20. Both genes are relatively compact, spanning only 2.7 and 3.1 kb, respectively. The transcription units are composed of three exons, of which the first encodes the signal peptide, the second encodes the secreted protein, while the third solely contains 3'-noncoding nucleotides. The nucleotide sequences exhibit a similarity of close to 90% in the exons and exceeding 80% in the introns and flanking nucleotides.

Amino Acid Sequence↗