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Biomedical subjects

Seth J Orlow

Publications and source records attributed to Seth J Orlow.

36 records · Page 2Linked to original sources

Oxidative stress activates FUS1 and RLM1 transcription in the yeast Saccharomyces cerevisiae in an oxidant-dependent Manner.

Mating in haploid Saccharomyces cerevisiae occurs after activation of the pheromone response pathway. Biochemical components of this pathway are involved in other yeast signal transduction networks. To understand more about the coordination between signaling pathways, we used a "chemical genetic" approach, searching for compounds that would activate the pheromone-responsive gene FUS1 and RLM1, a reporter for the cell integrity pathway. We found that catecholamines (l-3,4-hydroxyphenylalanine [l-dopa], dopamine, adrenaline, and noradrenaline) elevate FUS1 and RLM1 transcription. N-Acetyl-cysteine, a powerful antioxidant in yeast, completely reversed this effect, suggesting that FUS1 and RLM1 activation in response to catecholamines is a result of oxidative stress. The oxidant hydrogen peroxide also was found to activate transcription of an RLM1 reporter. Further genetic analysis combined with immunoblotting revealed that Kss1, one of the mating mitogen-activated protein kinases (MAPKs), and Mpk1, an MAPK of the cell integrity pathway, participated in l-dopa-induced stimulation of FUS1 and RLM1 transcription. We also report that Mpk1 and Hog1, the high osmolarity MAPK, were phosphorylated upon induction by hydrogen peroxide. Together, our results demonstrate that cells respond to oxidative stress via different signal transduction machinery dependent upon the nature of the oxidant.

Cell Membrane Permeability↗

The Tyr (albino) locus of the laboratory mouse.

The albino mouse was already known in ancient times and was apparently selectively bred in Egypt, China, and Japan. Thus, it is not surprising that the c or albino locus (now the Tyr locus) was among the first used to demonstrate Mendelian inheritance in mammals at the dawn of the past century. This locus is now known to encode tyrosinase, the rate-limiting enzyme in the production of melanin pigment, and the molecular basis of the albino ( Tyr(c)) mutation is known. Here we describe the congenic series of Tyr-locus alleles, from wild type to null ( albino). We compare eye and skin pigmentation phenotypes and the genetic lesions that cause each. We suggest that this panel of congenic mutants contains rich, untapped resources for the study of many questions of basic cell biological interest.

Albinism↗

Identification of compounds that bind mitochondrial F1F0 ATPase by screening a triazine library for correction of albinism.

A triazine-based combinatorial library of small molecules was screened in albino murine melanocytes to identify compounds that induce pigmentation. Six compounds (of 1536 screened) produced at least 3-fold increases in pigmentation. Immunohistochemical studies demonstrated that the compounds conferred correct routing of the mistrafficked enzyme tyrosinase, which is critical to normal melanogenesis. Affinity matrices of the immobilized compounds allowed the cellular target to be identified as the mitochondrial F1F0-ATP synthase. Oligomycin and aurovertin B, small molecules known to inhibit the mitochondrial ATP synthase, were shown to compete with the triazine-based compounds for their cellular target in albino melanocytes and confer similar effects on pigmentation and tyrosinase rerouting. This is the first demonstration of the mitochondrial ATP synthase as a potential therapeutic target for restoring pigmentation in albino melanocytes.

Albinism, Oculocutaneous↗

Mucosal dominant pemphigus vulgaris with anti-desmoplakin autoantibodies.

BACKGROUND: Anti-desmoplakin (DP) antibodies are present in paraneoplastic pemphigus (PNP) as a component of a complex humoral autoimmune reaction characterized by antibodies against proteins of the plakin family, desmogleins, and an unidentified 170 kd protein. Anti-DP antibodies have also been rarely identified in other blistering diseases. The significance of anti-DP antibodies in the pathogenesis of bullous diseases is unclear. OBSERVATION: We studied 3 patients with severe and chronic mucosal dominant pemphigus vulgaris (PV). In addition to anti-desmoglein 3 antibodies, these patients had anti-DP autoantibodies, demonstrable by immunofluorescence (IF), immunoprecipitation (IP), and indirect immunoelectromicroscopy (IIEM). This finding suggested these patients may have had PNP and not PV. However, antibodies against periplakin, envoplakin, bullous pemphigoid antigen 1 (BPAG 1), plectin, and 170 kd PNP antigen could not be detected using IP and immunoblotting. Extensive and repeated investigations for an underlying neoplasm throughout the follow-up period were consistently negative for all patients. CONCLUSION: This study demonstrates that anti-DP antibodies without the presence of any other anti-plakin antibodies are not specific for PNP, and are present in some cases of PV. Cellular disadhesion induced by anti-desmoglein antibodies can trigger an epitope-spreading phenomenon with a secondary formation of autoantibodies against desmoplakins, intracellular desmosomal antigens. The role of anti-DP antibodies in the pathogenesis of these PV patients is still unclear. The presence of anti-DP antibodies will produce a false positive serologic interpretation for the diagnosis of PNP especially if one uses only indirect IF on murine bladder, the most commonly employed screening test to identify PNP. More specific immunologic tests are required in this subset of patients with PV.

Autoantibodies↗

Infantile granular parakeratosis: recognition of two clinical patterns.

Granular parakeratosis is an acquired, idiopathic disorder of keratinization typified by retention hyperkeratosis. It usually occurs in women at intertriginous sites. There have been only 2 reports of infants with granular parakeratosis to our knowledge. We describe 3 additional infants with granular parakeratosis. We demonstrate that infantile granular parakeratosis exhibits 2 clinical patterns: bilateral linear plaques in the inguinal folds; and erythematous geometric plaques underlying pressure points from the diaper. A thick, flakelike scale is present in both forms and is characteristic. Diaper wearing appears to play an important role in the genesis of infantile granular parakeratosis but the mechanisms are unclear. Therapeutic responsiveness to topical agents is ambiguous, however, spontaneous clearance after months to 1 year appears to be the rule.

Biopsy↗

Infantile systemic hyalinosis.

Infantile systemic hyaloinosis is a rare, progressive, and fatal disease that is inherited in an autosomal recessive fashion. We describe 2 patients in whom thickened skin; small nodules of the perianal region, face, and neck; joint contractures; growth failure; diarrhea; and frequent infections developed within the first few weeks of life. Both patients died before 2 years of age.

Buttocks↗

Correction of defective early tyrosinase processing by bafilomycin A1 and monensin in pink-eyed dilution melanocytes.

Mutations in the human P gene result in oculocutaneous albinism type 2, the most common form of albinism. Mouse melan-p1 melanocytes, cultured from mice null at the homologous pink-eyed dilution (p) locus, exhibit defective melanin production. A variety of compounds including tyrosine, NH4Cl, bafilomycin A1, concanamycin, monensin, and nigericin are capable of restoring melanin synthesis in these cells. In the current study, we investigated the subcellular effects of bafilomycin A1 and monensin treatment of melan-p1 cells. Both agents play two roles in the processing of tyrosinase (Tyr) in melan-p1 cells. First, combined glycosidase digestion and immunoblotting analysis showed that these agents reduce levels of Tyr retained in the endoplasmic reticulum (ER) and facilitate the release of Tyr from the ER to the Golgi. Secondly, treatment with these compounds resulted in the stabilization of Tyr. Surprisingly, induction of melanin synthesis corresponds more closely with diminution of ER-retained Tyr, rather than the absolute amount of Tyr. Our results suggest that bafilomycin A1 and monensin induce melanin synthesis in melan-p1 cells mainly by facilitating Tyr processing from the ER to the Golgi by increasing the pH in either the ER or the ER-Golgi intermediate compartment.

Animals↗

Juvenile myelomonocytic leukemia presenting with features of hemophagocytic lymphohistiocytosis in association with neurofibromatosis and juvenile xanthogranulomas.

An association exists among neurofibromatosis 1 (NF1), juvenile xanthogranulomas (JXGs), and juvenile myelomonocytic leukemia (JMML). The authors describe a patient with the triple association of JXG, NF1, and JMML initially presenting with features of hemophagocytic lymphohistiocytosis (HLH). An 18-month old boy had multiple cutaneous and gastrointestinal JXG and NF1. At 3 years of age he developed anemia, thrombocytopenia, and hepatosplenomegaly. A bone marrow biopsy revealed features of HLH. Despite chemotherapy, he went on to develop JMML, which proved fatal.

Bone Marrow↗

25-hydroxycholesterol acts in the Golgi compartment to induce degradation of tyrosinase.

Oxysterols play a significant role in cholesterol homeostasis. 25-Hydroxycholesterol (25HC) in particular has been demonstrated to regulate cholesterol homeostasis via oxysterol-binding protein and oxysterol-related proteins, the sterol regulatory element binding protein, and the rate-limiting enzyme of cholesterol biosynthesis, hydroxymethylglutaryl coenzyme A reductase. We have examined the effect of 25HC on pigmentation of cultured murine melanocytes and demonstrated a decrease in pigmentation with an IC(50) of 0.34 microM and a significant diminution in levels of melanogenic protein tyrosinase. Pulse-chase studies of 25HC-treated cells demonstrated enhanced degradation of tyrosinase, the rate-limiting enzyme of melanin synthesis, following endoplasmic reticulum (ER) and Golgi maturation. Protein levels of GS28, a member of an ER/cis-Golgi SNARE protein complex, were also diminished in 25HC-treated melanocytes, however levels of the ER chaperone calnexin and the cis-Golgi matrix protein GM130 were unaffected. Effects of 25HC on tyrosinase were completely reversed by 4 alpha-allylcholestan-3 alpha-ol, a sterol identified by its ability to reverse effects of 25HC on cholesterol homeostasis. Finally, the addition of 25HC to lipid deficient serum inhibited correct processing of tyrosinase. We conclude that 25HC acts in the Golgi compartment to regulate pigmentation by a mechanism shared with cholesterol homeostasis.

Animals↗

Accumulation of tyrosinase in the endolysosomal compartment is induced by U18666A.

The 3beta-(2-diethylaminoethoxy)-androstenone HCl (U18666A), progesterone and several cationic amphiphilic drugs have been shown to alter the trafficking of a number of intracellular membrane proteins including CD63/Lamp-3, insulin growth factor 2/mannose 6-phosphate receptor (IGF2/MPR), and the Niemann-Pick C1 gene product (NPC1) as well as ganglioside GM1. We have examined the effects of these compounds on cultured melanocytes at concentrations that have been shown to effectively alter intracellular trafficking. Treatment of melanocytes with U18666A (2.5 micro M) or progesterone (15 micro M) for 96 h decreased melanin content an average of 67% as compared with control without lowering the total cellular tyrosinase activity. Steroidal alkaloids that preferentially act on the Sonic Hedgehog signaling pathway showed no related specificity in their ability to decrease pigmentation. In melanocytes treated with U18666A, tyrosinase accumulates in a compartment that contains both lysosome-associated membrane protein-1 (Lamp 1) and MPR, and stains with filipin, consistent with cholesterol-laden late endosomes/lysosomes. Our results suggest that tyrosinase, like the NPC1 gene product, traverses a U18666A-sensitive trafficking pathway.

Androstenes↗

Oral retinoid therapy for dermatologic conditions in children and adolescents.

The efficacy of systemic retinoid therapy in a number of dermatologic diseases is well established; however, concerns about potential side effects limit their use, especially in children. We review the efficacy and toxicity of oral retinoids in the pediatric population. The acute mucocutaneous toxicities commonly observed are typically well tolerated, readily treatable, and reversible. Systemic toxicities include teratogenicity and effects on the musculoskeletal, neurologic, and gastrointestinal systems. Children, like adults, generally tolerate short-term retinoid therapy without major complications. Concerns regarding serious systemic side effects are greater for those on high doses of oral synthetic retinoids for longer periods of time. Close patient monitoring and patient education can minimize the occurrence of complications. (J Am Acad Dermatol 2003;49:171-82.)Learning objective At the conclusion of this learning activity, participants should be familiar with use of oral retinoids for childhood dermatologic conditions such as psoriasis, acne, and ichthyoses as well as safety and risks associated with oral retinoid use in children and adolescents.

Acne Vulgaris↗

p16(Ink4a) in melanocyte senescence and differentiation.

BACKGROUND: The Ink4a-Arf tumor suppressor locus encodes two growth inhibitors, p16 and Arf, both of which are also implicated as effectors in cellular senescence. Because human germline defects in the INK4A-ARF locus are associated with familial melanoma, melanocytes may have unusual INK4A-ARF functions or controls of cell senescence. Because senescence is believed to be an anticancer mechanism, we investigated the role of Ink4a-Arf and its individual components in melanocyte senescence. METHODS: Melanocytes were cultured from littermate mice with zero, one, or two functional copies of the Ink4a-Arf locus. Senescence was evaluated by cumulative population doubling curves and by the assessment of acidic beta-galactosidase (an indicator of senescence) expression. Pigmentation and cell size were evaluated by spectrophotometry and microscopy. p16 and Arf expression in primary and spontaneously immortalized melanocyte or melanocyte precursor cell lines were evaluated by immunoblotting. Retroviral vectors containing normal p16 and Arf complementary DNAs were used to restore expression of these genes in Ink4a-Arf(-/-) melanocytes. RESULTS: Wild-type melanocytes (i.e., Ink4a-Arf(+/+)) senesced within 4-5 weeks of culture. Ink4a-Arf(-/-) melanocytes did not senesce and readily became immortal. Ink4a-Arf(+/-) melanocytes showed defective senescence. Senescent Ink4a-Arf(+/+) melanocytes were heavily pigmented, but Ink4a-Arf(+/-) and Ink4a-Arf(-/-) melanocytes were less pigmented. All of six spontaneously immortalized melanocyte or melanocyte precursor lines from Ink4a-Arf(+/+) mice lacked p16 protein expression, although most retained Arf protein expression. After restoration of p16 but not Arf expression, Ink4a-Arf(-/-) melanocytes stopped growing, became highly melanized, and expressed acidic beta-galactosidase. By contrast, restoration of Arf but not p16 expression led to cell death without evidence of senescence. CONCLUSION: Normal mouse melanocyte senescence and associated pigmentation require both copies of Ink4a-Arf and appear to depend more on p16 than on Arf function. Mutations of the INK4A-ARF locus may favor tumorigenesis from melanocytes by impairing senescence, cell differentiation, and (where ARF is disrupted) cell death.

Animals↗

Rab27b association with melanosomes: dominant negative mutants disrupt melanosomal movement.

The movement of melanosomes from post-Golgi compartments to the periphery of melanocytes is known to be regulated by factors including myosin Va and at least one Rab protein, Rab27a. Mutations in the genes encoding either protein in the mouse result in a hypopigmented phenotype mimicking the human disease Griscelli syndrome. Rab27b and Rab27a share 72% identity and they belong to the same melanocyte/platelet subfamily of Rab proteins. Rab27a orchestrates the transport of melanosomes by recruitment of the actin motor, myosin Va, onto melanosomes. By contrast, the function of Rab27b has remained elusive. In this study, we found that Rab27b mRNA is present in melanocytes and demonstrated the intrinsic GTPase activity of Rab27b protein. We explored the function of Rab27b by overexpression of two dominant negative mutants as well as the wild-type Rab27b in melan-a melanocytes. Green-fluorescent-protein-tagged Rab27b colocalizes with the melanosome marker tyrosinase-related protein 1 and with myosin Va at the cell periphery, whereas Rab27b mutants do not decorate melanosomes, and melanosomes in these mutant transfected cells redistribute from cell periphery to the perinuclear region. Furthermore, transient overexpression of the dominant negative forms of Rab27b caused diminution in both numbers and length of dendrites of melan-a cells. Our results suggest that Rab27b may regulate the outward movement of melanosomes and the formation or maintenance of dendritic extensions in melanocytes.

Animals↗

Extensive Riga-Fede disease of the lip and tongue.

Riga-Fede disease presents in early infancy and is characterized by firm, verrucous plaques arising on the oral mucosal surfaces. These histologically benign lesions occur as a result of repetitive trauma of the oral mucosal surfaces by the teeth. Early recognition of this entity is important, because it may be the presenting sign of an underlying neurologic disorder. We report the case of a 10-month-old boy with extensive Riga-Fede disease involving the lip and tongue that prompted a diagnosis of congenital autonomic dysfunction with universal pain loss.

Autonomic Nervous System Diseases↗

Congenital Spitz nevus clinically mimicking melanoma.

The differentiation between atypical variants of Spitz nevus and melanoma is often difficult given the many clinical and histopathologic similarities between the two. We report a case of an infant with a congenital scalp lesion exhibiting clinical features of melanoma, including variegation and regression of pigmentation and a rapidly changing appearance. Histologic examination of the excised lesion revealed a benign congenital Spitz nevus. This case emphasizes the need for clinical and histologic correlation in determining the benign or malignant nature of atypical pigmented lesions in infants.

Diagnosis, Differential↗

Pink-eyed dilution protein controls the processing of tyrosinase.

The processing of tyrosinase, which catalyzes the limiting reaction in melanin synthesis, was investigated in melan-p1 melanocytes, which are null at the p locus. Endoglycosidase H digestion showed that a significant fraction of tyrosinase was retained in the endoplasmic reticulum. This retention could be rescued either by transfection of melan-p1 cells with an epitope-tagged wild-type p transcript or by treatment with either bafilomycin A1 or ammonium chloride. We found that the endoplasmic reticulum contains a significant amount of p protein, thus supporting a role for p within this compartment. Using immunofluoresence, we showed that most mature full-length tyrosinase in melan-p1 cells was located in the perinuclear area near the Golgi, in contrast to its punctate melanosomal pattern in wild-type melanocytes. Expression of p in melan-p1 cells restored tyrosinase to melanosomes. Triton X-114 phase separation revealed that an increased amount of tyrosinase was proteolyzed in melan-p1 cells compared with wild-type melanocytes. The proteolyzed tyrosinase was no longer membrane bound, but remained enzymatically active and a large proportion was secreted into the culture medium of melan-p1 cells. We conclude that p regulates posttranslational processing of tyrosinase, and hypopigmentation in melan-p1 cells is the result of altered tyrosinase processing and trafficking.

Animals↗

Pink-eyed dilution protein modulates arsenic sensitivity and intracellular glutathione metabolism.

Mutations in the mouse p (pink-eyed dilution) and human P genes lead to melanosomal defects and ocular developmental abnormalities. Despite the critical role played by the p gene product in controlling tyrosinase processing and melanosome biogenesis, its precise biological function is still not defined. We have expressed p heterologously in the yeast Saccharomyces cerevisiae to study its function in greater detail. Immunofluorescence studies revealed that p reaches the yeast vacuolar membrane via the prevacuolar compartment. Yeast cells expressing p exhibited increased sensitivity to a number of toxic compounds, including arsenicals. Similarly, cultured murine melanocytes expressing a functional p gene were also found to be more sensitive to arsenical compounds compared with p-null cell lines. Intracellular glutathione, known to play a role in detoxification of arsenicals, was diminished by 50% in p-expressing yeast. By using the glutathione-conjugating dye monochlorobimane, in combination with acivicin, an inhibitor of vacuolar gamma-glutamyl cysteine transpeptidase, involved in the breakdown of glutathione, we found that p facilitates the vacuolar accumulation of glutathione. Our data demonstrate that the pink-eyed dilution protein increases cellular sensitivity to arsenicals and other metalloids and can modulate intracellular glutathione metabolism.

Acid Phosphatase↗