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蛋白零基因的表达受神经胶质转录因子Sox10调控。

Protein zero gene expression is regulated by the glial transcription factor Sox10.

作者信息

Peirano R I, Goerich D E, Riethmacher D, Wegner M

机构信息

Zentrum für Molekulare Neurobiologie, Universität Hamburg, D-20246 Hamburg, Germany.

出版信息

Mol Cell Biol. 2000 May;20(9):3198-209. doi: 10.1128/MCB.20.9.3198-3209.2000.

Abstract

Myelinating glia express high levels of a unique set of genes which code for structural proteins of the myelin sheath. Few transcription factors have so far been implicated in the regulation of any myelin gene. Here we show that the protein zero (P(0)) gene, a myelin gene exclusively expressed in the Schwann cell lineage of the peripheral nervous system, is controlled in its expression by the high-mobility-group domain protein Sox10 both in tissue culture and in vivo. Induction of wild-type Sox10, but not of other transcription factors or Sox10 mutants, strongly increased endogenous P(0) expression in tissue culture. This activation was mediated by the P(0) promoter, which was stimulated by Sox10 in transient transfections. Detailed analyses revealed the involvement of a proximal and a distal promoter region. The distal region functioned only in conjunction with the proximal one and contained a single Sox consensus binding site, which accounted for most of its activity. In contrast, the proximal region mediated Sox10 responsiveness on its own. It contained multiple binding sites for Sox proteins, with two high-affinity sites being the most significant. P(0) expression also depended on Sox10 in vivo, as evident from the analysis of Schwann cell precursors in mouse embryos with Sox10 mutation at day 12.5 of embryogenesis. To our knowledge this is the most conclusive link to date between a glial transcription factor and cell-specific activation of myelin gene expression.

摘要

形成髓鞘的神经胶质细胞表达一组独特的高水平基因,这些基因编码髓鞘的结构蛋白。到目前为止,很少有转录因子参与任何髓鞘基因的调控。在此我们表明,蛋白零(P(0))基因是一种仅在外周神经系统的施万细胞谱系中表达的髓鞘基因,在组织培养和体内,其表达均受高迁移率族结构域蛋白Sox10的控制。在组织培养中,野生型Sox10的诱导而非其他转录因子或Sox10突变体的诱导,可强烈增加内源性P(0)的表达。这种激活由P(0)启动子介导,在瞬时转染中该启动子受Sox10刺激。详细分析揭示了一个近端启动子区域和一个远端启动子区域的参与。远端区域仅与近端区域协同发挥作用,且包含一个单一的Sox共有结合位点,该位点决定了其大部分活性。相比之下,近端区域自身介导Sox10反应性。它包含多个Sox蛋白结合位点,其中两个高亲和力位点最为重要。从胚胎发育第12.5天具有Sox10突变的小鼠胚胎的施万细胞前体分析可知,P(0)表达在体内也依赖于Sox10。据我们所知,这是迄今为止神经胶质转录因子与髓鞘基因表达的细胞特异性激活之间最确凿的联系。

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