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神经嵴来源的黑素细胞发育中SOX10功能分析:多巴色素互变异构酶的SOX10依赖性转录调控

Analysis of SOX10 function in neural crest-derived melanocyte development: SOX10-dependent transcriptional control of dopachrome tautomerase.

作者信息

Potterf S B, Mollaaghababa R, Hou L, Southard-Smith E M, Hornyak T J, Arnheiter H, Pavan W J

机构信息

Genetic Disease Research Branch, National Human Genome Research Institute, Bethesda, Maryland 20892, USA.

出版信息

Dev Biol. 2001 Sep 15;237(2):245-57. doi: 10.1006/dbio.2001.0372.

Abstract

SOX10 is a high-mobility-group transcription factor that plays a critical role in the development of neural crest-derived melanocytes. At E11.5, mouse embryos homozygous for the Sox10(Dom) mutation entirely lack neural crest-derived cells expressing the lineage marker KIT, MITF, or DCT. Moreover, neural crest cell cultures derived from homozygous embryos do not give rise to pigmented cells. In contrast, in Sox10(Dom) heterozygous embryos, melanoblasts expressing KIT and MITF do occur, albeit in reduced numbers, and pigmented cells eventually develop in nearly normal numbers both in culture and in vivo. Intriguingly, however, Sox10(Dom)/+ melanoblasts transiently lack Dct expression both in culture and in vivo, suggesting that during a critical developmental period SOX10 may serve as a transcriptional activator of Dct. Indeed, we found that SOX10 and DCT colocalized in early melanoblasts and that SOX10 is capable of transactivating the Dct promoter in vitro. Our data suggest that during early melanoblast development SOX10 acts as a critical transactivator of Dct, that MITF, on its own, is insufficient to stimulate Dct expression, and that delayed onset of Dct expression is not deleterious to the melanocyte lineage.

摘要

SOX10是一种高迁移率族转录因子,在神经嵴衍生的黑素细胞发育中起关键作用。在胚胎第11.5天,Sox10(Dom)突变纯合子小鼠胚胎完全缺乏表达谱系标志物KIT、MITF或DCT的神经嵴衍生细胞。此外,来自纯合子胚胎的神经嵴细胞培养物不会产生色素细胞。相比之下,在Sox10(Dom)杂合子胚胎中,表达KIT和MITF的黑素母细胞确实存在,尽管数量减少,并且色素细胞最终在培养物和体内都以接近正常的数量发育。然而,有趣的是,Sox10(Dom)/+黑素母细胞在培养物和体内均短暂缺乏Dct表达,这表明在关键的发育时期,SOX10可能作为Dct的转录激活因子。事实上,我们发现SOX10和DCT在早期黑素母细胞中共定位,并且SOX10能够在体外反式激活Dct启动子。我们的数据表明,在早期黑素母细胞发育过程中,SOX10作为Dct的关键反式激活因子,MITF单独不足以刺激Dct表达,并且Dct表达的延迟起始对黑素细胞谱系无害。

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