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早期生长反应因子2通过上游和基因内元件诱导髓鞘蛋白零表达。

Induction of myelin protein zero by early growth response 2 through upstream and intragenic elements.

作者信息

Jang Sung-Wook, Svaren John

机构信息

Graduate Program in Cellular and Molecular Biology, University of Wisconsin, Madison, Wisconsin 53705, USA.

出版信息

J Biol Chem. 2009 Jul 24;284(30):20111-20. doi: 10.1074/jbc.M109.022426. Epub 2009 Jun 1.

Abstract

The Mpz (myelin protein zero) gene codes for the principal component of myelin in the peripheral nervous system, and mutations in this gene cause human peripheral myelinopathies. Expression of the Mpz gene is controlled by two major transactivators that coordinate Schwann cell development: Egr2/Krox20 and Sox10. Our in vivo ChIP-chip analysis in myelinating peripheral nerve identified major sites of Egr2 interaction within the first intron of the Mpz gene and approximately 5 kb upstream of the transcription start site. In addition, the sites of Egr2 binding display many of the hallmarks associated with enhancer elements. Interestingly, the upstream Egr2 binding sites lie proximal to the divergently transcribed succinate dehydrogenase C gene, but Sdhc expression was not affected by the massive induction of Mpz mediated by Egr2. Mpz induction was greatly enhanced in the presence of the Egr2 binding sites, and removal of them markedly diminished transgenic expression of a construct derived from the Mpz locus. Sox10 was also found to be associated with the upstream region, and its binding was required for Egr2-mediated activation in this distal regulatory region. Our findings highlight that peripheral nerve-specific expression of Mpz is primarily regulated by both upstream and intron-associated regulatory elements. Overall, these results provide a locus-wide analysis of the role and activity of Egr2 in regulation of the Mpz gene within its native chromosomal context.

摘要

Mpz(髓鞘蛋白零)基因编码外周神经系统中髓鞘的主要成分,该基因的突变会导致人类外周髓鞘病。Mpz基因的表达受两种主要反式激活因子调控,这两种因子协调施万细胞的发育:Egr2/Krox20和Sox10。我们对有髓外周神经进行的体内染色质免疫沉淀芯片分析确定了Mpz基因第一内含子内以及转录起始位点上游约5 kb处Egr2相互作用的主要位点。此外,Egr2结合位点具有许多与增强子元件相关的特征。有趣的是,上游Egr2结合位点位于与琥珀酸脱氢酶C基因反向转录的近端,但Sdhc的表达不受Egr2介导的Mpz大量诱导的影响。在存在Egr2结合位点的情况下,Mpz的诱导大大增强,去除这些位点会显著降低源自Mpz基因座的构建体的转基因表达。还发现Sox10与上游区域相关,其结合是该远端调控区域中Egr2介导的激活所必需的。我们的研究结果突出表明,Mpz的外周神经特异性表达主要受上游和内含子相关调控元件的调节。总体而言,这些结果提供了在其天然染色体背景下对Egr2在Mpz基因调控中的作用和活性的全基因座分析。

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