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药物诱导和遗传性色素沉着过度:对色素细胞分化的影响。

Drug-induced and genetic hypermelanism: effects on pigment cell differentiation.

作者信息

Frost S K, Borchert M, Carson M K

机构信息

Department of Physiology and Cell Biology, University of Kansas, Lawrence 66045.

出版信息

Pigment Cell Res. 1989 May-Jun;2(3):182-90. doi: 10.1111/j.1600-0749.1989.tb00184.x.

DOI:10.1111/j.1600-0749.1989.tb00184.x
PMID:2771877
Abstract

Allopurinol, a drug that inhibits the enzyme xanthine dehydrogenase (XDH), is known to cause hypermelanism in the axolotl. The hypermelanistic condition that results from allopurinol treatment is similar in most respects to the phenotype that results from the action of the melanoid (m) gene in axolotls. On the basis of structural and biochemical studies, it now seems clear that genetic and drug-induced hypermelanism are the same in the following ways. 1) Both types of melanism result in the production of more than normal amounts of melanin and more melanin-containing cells (melanophores). 2) In both cases the amount of pteridine-associated yellow pigment declines during development, and this is associated directly with fine structural changes that occur within the pigment organelles (pterinosomes) of yellow pigment cells (xanthophores). 3) In both cases the hypermelanistic condition results in the suppression of reflecting pigment cell (iridophore) differentiation. 4) Both conditions have now been linked directly to depressed levels of XDH activity. Thus both genetic and drug-induced hypermelanism result in alterations in the normal differentiation of all three pigment cell types and the subsequent disruption of normal pigment pattern formation. The possible significance of these findings with regard to factors known or suspected to direct the migration and/or differentiation of neural crest-derived pigment cells is discussed.

摘要

别嘌醇是一种抑制黄嘌呤脱氢酶(XDH)的药物,已知它会导致美西螈出现色素沉着过度。别嘌醇治疗导致的色素沉着过度情况在大多数方面与美西螈中类黑素(m)基因作用产生的表型相似。基于结构和生化研究,现在似乎很清楚,遗传和药物诱导的色素沉着过度在以下方面是相同的。1)两种类型的色素沉着过度都会导致产生比正常量更多的黑色素以及更多含黑色素的细胞(黑素细胞)。2)在这两种情况下,蝶啶相关黄色素的量在发育过程中都会下降,这与黄色素细胞(黄色素细胞)色素细胞器(蝶呤体)内发生的细微结构变化直接相关。3)在这两种情况下,色素沉着过度的情况都会导致反射色素细胞(虹彩细胞)分化受到抑制。4)现在这两种情况都直接与XDH活性水平降低有关。因此,遗传和药物诱导的色素沉着过度都会导致所有三种色素细胞类型的正常分化发生改变,进而破坏正常色素模式的形成。讨论了这些发现对于已知或疑似指导神经嵴衍生色素细胞迁移和/或分化的因素的可能意义。

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