Hypomelanoses transmitted from generation to generation

COMMENTARY ON THE LAW

Hypomelanoses transmitted from generation to generation

Michał Otręba 1 , Ewa Buszman 1 , Maciej Miliński 1 , Dorota Wrześniok 1

1. Śląski Uniwersytet Medyczny w Katowicach, Wydział Farmaceutyczny z Oddziałem Medycyny Laboratoryjnej, Katedra i Zakład Chemii i Analizy Leków

Published: 2014-09-03
DOI: 10.5604/17322693.1119791
GICID: 01.3001.0003.1283
Available language versions: en pl
Issue: Postepy Hig Med Dosw 2014; 68 : 1081-1090

 

Abstract

Inherited diseases of pigmentation were among the first traits studied in humans because of their easy recognition. This article presents selected hypopigmentary disorders, which can be divided into hypomelanocytoses and hypomelanoses. Hereditary hypomelanoses are caused by abnormal melanin biosynthesis as well as by abnormal transfer of mature melanosomes to melanocyte dendrites and to neighboring cells. These disorders are represented by oculocutaneous albinism, Hermansky-Pudlak syndrome, Chediak-Higashi syndrome, Griscelli syndrome, Menkes syndrome and phenylketonuria, and are caused by different mutations of the following genes: TYR, P, TRP1, MATP, HPS, CHS, MYO5A, RAB27A, MLPH, ATP7A and PAH. Oculocutaneous albinism is caused by a deficiency of melanin pigment in the skin, hair, and eye and results from mutations in the TYR, P, TRP1 and MATP genes involved in the biosynthesis of melanin pigment. Mutations in the HPS, CHS, MYO5A, RAB27A and MLPH genes, which regulate the biogenesis, maturation and transfer of me-lanosomes to neighboring cells, are responsible for such disorders as Hermansky-Pudlak, Chediak-Higashi and Griscelli syndromes. In turn, mutations of the ATP7A and PAH genes, regulating intracellular copper concentration and activity of phenylalanine hydroxylase, lead to Menkes syndrome and phenylketonuria.

References

  • 1. Aslan D., Sari S., Derinöz O., Dalgiç B.: Griscelli syndrome: descriptionof a case with Rab27A mutation. Pediatr. Hematol. Oncol.,2006; 23: 255-261
    Google Scholar
  • 2. Bertini I., Rosato A.: Menkes disease. Cell. Mol. Life. Sci., 2008;65: 89-91
    Google Scholar
  • 3. Cheng A.S., Bayliss S.J.: The genetics of hair shaft disorders. J.Am. Acad. Dermatol., 2008; 59: 1-22
    Google Scholar
  • 4. Costin G.E., Hearing V.J.: Human skin pigmentation: melanocytesmodulate skin color in response to stress. FASEB J., 2007; 21: 976-994
    Google Scholar
  • 5. Cullinane A.R., Curry J.A., Golas G., Pan J., Carmona-Rivera C., HessR.A., White J.G., Huizing M., Gahl W.A.: A BLOC-1 mutation screenreveals a novel BLOC1S3 mutation in Hermansky-Pudlak Syndrometype 8. Pigment Cell Melanoma Res., 2012; 25: 584-591
    Google Scholar
  • 6. de Bie P., Muller P., Wijmenga C., Klomp L.W.: Molecular pathogenesisof Wilson and Menkes disease: correlation of mutations withmolecular defects and disease phenotypes. J. Med. Genet., 2007;44: 673-688
    Google Scholar
  • 7. Dessinioti C., Stratigos A.J., Rigopoulos D., Katsambas A.D.: Areview of genetic disorders of hypopigmentation: lessons learnedfrom the biology of melanocytes. Exp. Dermatol., 2009; 18: 741-749
    Google Scholar
  • 8. Drukała J., Bobis S., Zabińska-Płazak E., Wojas-Pelc A.: Molekularnepodłoże zaburzeń pigmentacji w chorobach skóry. Przegl. Lek.,2009; 66: 145-149
    Google Scholar
  • 9. Fistarol S.K., Itin P.H..: Disorders of pigmentation. J. Dtsch. Dermatol.Ges., 2010; 8: 187-201
    Google Scholar
  • 10. Grønskov K., Ek J., Brondum-Nielsen K.: Oculocutaneous albinism.Orphanet. J. Rare. Dis., 2007; 2: 43
    Google Scholar
  • 11. Halaban R., Cheng E., Svedine S., Aron R., Hebert D.N.: Properfolding and endoplasmic reticulum to Golgi transport of tyrosinaseare induced by its substrates, DOPA and tyrosine. J. Biol. Chem.,2001; 276: 11933-11938
    Google Scholar
  • 12. Halaban R., Svedine S., Cheng E., Smicun Y., Aron R., HebertD.N.: Endoplasmic reticulum retention is a common defect associatedwith tyrosinase-negative albinism. Proc. Natl. Acad. Sci. USA,2000; 97: 5889-5894
    Google Scholar
  • 13. Hoeks M.P., den Heijer M., Janssen M.C.: Adult issues in phenylketonuria.Neth. J. Med., 2009; 67: 2-7
    Google Scholar
  • 14. Holt O.J., Gallo F., Griffiths G.M.: Regulating secretory lysosomes.J. Biochem., 2006; 140: 7-12
    Google Scholar
  • 15. Hou L, Pavan W.J.: Transcriptional and signaling regulation inneural crest stem cell-derived melanocyte development: do all roadslead to Mitf? Cell Res., 2008; 18: 1163-1176
    Google Scholar
  • 16. Huizing M., Helip-Wooley A., Westbroek W., Gunay-Aygun M.,Gahl W.A.: Disorders of lysosome-related organelle biogenesis: clinicaland molecular genetics. Annu. Rev. Genomics Hum. Genet., 2008;9: 359-386
    Google Scholar
  • 17. Kaplan J., De Domenico I., Ward D.M.: Chediak-Higashi syndrome.Curr. Opin. Hematol., 2008; 15: 22-29
    Google Scholar
  • 18. King R.A., Pietsch J., Fryer J.P., Savage S., Brott M.J., RussellEggittI., Summers C.G., Oetting W.S.: Tyrosinase gene mutationsin oculocutaneous albinism 1 (OCA1): definition of the phenotype.Hum. Genet., 2003; 113: 502-513
    Google Scholar
  • 19. Kodama H., Fujisawa C., Bhadhprasit W.: Pathology, clinical featuresand treatments of congenital copper metabolic disorders – focuson neurologic aspects. Brain Dev., 2011; 33: 243-251
    Google Scholar
  • 20. Kosmadaki M.G., Stratigos A.J., Antoniou Ch., Katsambas A.: DNApolymorphisms: what they are and their role in human pigmentation.Actas Dermosifiliogr., 2009; 100: 84-87
    Google Scholar
  • 21. Levin A.V., Stroh E.: Albinism for the busy clinician. J. AAPOS,2011; 15: 59-66
    Google Scholar
  • 22. Liu J., Choy K.W., Chan L.W., Leung T.Y., Tam P.O., Chiang S.W.,Lam D.S., Pang C.P., Lai T.Y.: Tyrosinase gene (TYR) mutations inChinese patients with oculocutaneous albinism type 1. Clin. Experiment.Ophthalmol., 2010; 38: 37-42
    Google Scholar
  • 23. Manga P., Kromberg J.G., Box N.F., Sturm R.A., Jenkins T., RamsayM.: Rufous oculocutaneous albinism in southern African blacks iscaused by mutations in the TYRP1 gene. Am. J. Hum. Genet., 1997;61: 1095-1101
    Google Scholar
  • 24. Meeths M., Bryceson Y.T., Rudd E., Zheng C., Wood S.M., RammeK., Beutel K., Hasle H., Heilmann C., Hultenby K., Ljunggren H.G.,Fadeel B., Nordenskjöld M., Henter J.I.: Clinical presentation of Griscellisyndrome type 2 and spectrum of RAB27A mutations. Pediatr.Blood Cancer, 2010; 54: 563-572
    Google Scholar
  • 25. Michals-Matalon K., Bhatia G., Guttler F., Tyring S.K., MatalonR.: Response of phenylketonuria to tetrahydrobiopterin. J. Nutr.,2007; 137: 1564S-1567S
    Google Scholar
  • 26. Oh H.J., Park E.S., Kang S., Jo I., Jung S.C.: Long-term enzymaticand phenotypic correction in the phenylketonuria mouse modelby adeno-associated virus vector-mediated gene transfer. Pediatr.Res., 2004; 56: 278-284
    Google Scholar
  • 27. Otręba M., Rok J., Buszman E., Wrześniok D.: Regulacja melanogenezy:rola cAMP i MITF. Postępy Hig. Med. Dośw., 2012; 66: 33-40
    Google Scholar
  • 28. Park H.Y., Kosmadaki M., Yaar M., Gilchrest A.: Cellular mechanismsregulating human melanogenesis. Cell. Mol. Life Sci., 2009;66: 1493-1506
    Google Scholar
  • 29. Passmore L.A., Kaesmann-Kellner B., Weber B.H.: Novel andrecurrent mutations in the tyrosinase gene and the P gene in theGerman albino population. Hum. Genet., 1999; 105: 200-210
    Google Scholar
  • 30. Prasad A.N., Levin S., Rupar C.A., Prasad C.: Menkes disease andinfantile epilepsy. Brain Dev., 2011; 33: 866-876
    Google Scholar
  • 31. Ray K., Chaki M., Sengupta M.: Tyrosinase and ocular diseases:some novel thoughts on the molecular basis of oculocutaneous albinismtype 1. Prog. Retin. Eye Res., 2007; 26: 323-358
    Google Scholar
  • 32. Richmond B., Huizing M., Knapp J., Koshoffer A., Zhao Y., GahlW.A., Boissy R.E.: Melanocytes derived from patients with Hermansky-Pudlaksyndrome types 1, 2, and 3 have distinct defects in cargotrafficking. J. Invest. Dermatol., 2005; 124: 420-427
    Google Scholar
  • 33. Rok J., Otręba M., Buszman E., Wrześniok D.: Melanina – z melanocytudo keratynocytu, czyli jak przebiega transport melaninyw skórze. Ann. Acad. Med. Siles. 2012; 66: 60-66
    Google Scholar
  • 34. Sarangarajan R., Boissy R.E.: Tyrp1 and oculocutaneous albinismtype 3. Pigment Cell. Res., 2001; 14: 437-444
    Google Scholar
  • 35. Scherer D., Kumar R.: Genetics of pigmentation in skin cancer- a review. Mutat. Res., 2010; 705: 141-153
    Google Scholar
  • 36. Sieni E., Cetica V., Mastrodicasa E., Pende D., Moretta L., GriffithsG., Aricò M.: Familial hemophagocytic lymphohistiocytosis: a modelfor understanding the human machinery of cellular cytotoxicity.Cell. Mol. Life. Sci., 2012; 69: 29-40
    Google Scholar
  • 37. Spritz R.A., Oh J., Fukai K., Holmes S.A., Ho L., Chitayat D., FranceT.D., Musarella M.A., Orlow S.J., Schnur R.E., Weleber R.G., Levin A.V.:Novel mutations of the tyrosinase (TYR) gene in type I oculocutaneousalbinism. Hum. Mutat., 1997; 10: 171-174
    Google Scholar
  • 38. Suzuki T., Tomita Y.: Recent advances in genetic analyses of oculocutaneousalbinism types 2 and 4. J. Dermatol. Sci., 2008; 51: 1-9
    Google Scholar
  • 39. Tripathi R.K., Bundey S., Musarella M.A., Droetto S., Strunk K.M.,Holmes S.A., Spritz R.A.: Mutations of the tyrosinase gene in IndoPakistanipatients with type I (tyrosinase-deficient) oculocutaneousalbinism (OCA). Am. J. Hum. Genet., 1993; 53: 1173-1179
    Google Scholar
  • 40. Tümer Z., Møller L.B.: Menkes disease. Eur. J. Hum. Genet., 2010;18: 511-518
    Google Scholar
  • 41. Van Gele M., Dynoodt P., Lambert J.: Griscelli syndrome: a modelsystem to study vesicular trafficking. Pigment Cell Melanoma Res.,2009; 22: 268-282
    Google Scholar
  • 42. Walter J.H.: Late effects of phenylketonuria. Arch. Dis. Child.,1995; 73: 485-486
    Google Scholar
  • 43. Wei M.L.: Hermansky-Pudlak syndrome: a disease of proteintrafficking and organelle function. Pigment Cell Res., 2006; 19: 19-42
    Google Scholar

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