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本文引用的文献

1
Regulation of low affinity neurotrophin receptor (p75(NTR)) by early growth response (Egr) transcriptional regulators.早期生长反应(Egr)转录调节因子对低亲和力神经营养因子受体(p75(NTR))的调节作用。
Mol Cell Neurosci. 2007 Dec;36(4):501-14. doi: 10.1016/j.mcn.2007.08.013. Epub 2007 Aug 24.
2
Hypomorphic Sox10 alleles reveal novel protein functions and unravel developmental differences in glial lineages.低表达的Sox10等位基因揭示了新的蛋白质功能,并揭示了神经胶质谱系中的发育差异。
Development. 2007 Sep;134(18):3271-81. doi: 10.1242/dev.003350. Epub 2007 Aug 15.
3
Neuropathy-associated Egr2 mutants disrupt cooperative activation of myelin protein zero by Egr2 and Sox10.与神经病变相关的Egr2突变体破坏了Egr2和Sox10对髓鞘蛋白零的协同激活作用。
Mol Cell Biol. 2007 May;27(9):3521-9. doi: 10.1128/MCB.01689-06. Epub 2007 Feb 26.
4
In vivo detection of Egr2 binding to target genes during peripheral nerve myelination.外周神经髓鞘形成过程中Egr2与靶基因结合的体内检测。
J Neurochem. 2006 Sep;98(5):1678-87. doi: 10.1111/j.1471-4159.2006.04069.x.
5
A double point mutation in the DNA-binding region of Egr2 switches its function from inhibition to induction of proliferation: A potential contribution to the development of congenital hypomyelinating neuropathy.Egr2的DNA结合区域中的双点突变将其功能从抑制增殖转变为诱导增殖:对先天性髓鞘形成不足性神经病发展的潜在作用。
Neurobiol Dis. 2006 Oct;24(1):159-69. doi: 10.1016/j.nbd.2006.06.006. Epub 2006 Jul 26.
6
Replacement of the Sox10 transcription factor by Sox8 reveals incomplete functional equivalence.用Sox8替代Sox10转录因子显示出功能不完全等同。
Development. 2006 Aug;133(15):2875-86. doi: 10.1242/dev.02477. Epub 2006 Jun 21.
7
The high-mobility-group domain of Sox proteins interacts with DNA-binding domains of many transcription factors.Sox蛋白的高迁移率族结构域与许多转录因子的DNA结合结构域相互作用。
Nucleic Acids Res. 2006 Mar 31;34(6):1735-44. doi: 10.1093/nar/gkl105. Print 2006.
8
In vitro and in vivo differentiation of boundary cap neural crest stem cells into mature Schwann cells.边界帽神经嵴干细胞在体外和体内分化为成熟施万细胞。
Exp Neurol. 2006 Apr;198(2):438-49. doi: 10.1016/j.expneurol.2005.12.015. Epub 2006 Jan 25.
9
Direct regulation of myelin protein zero expression by the Egr2 transactivator.Egr2反式激活因子对髓鞘蛋白零表达的直接调控。
J Biol Chem. 2006 Mar 3;281(9):5453-60. doi: 10.1074/jbc.M512159200. Epub 2005 Dec 22.
10
Functional organization of a Schwann cell enhancer.施万细胞增强子的功能组织
J Neurosci. 2005 Nov 30;25(48):11210-7. doi: 10.1523/JNEUROSCI.2596-05.2005.

Sox10与Egr2在髓鞘基因调控中的相互作用。

Interactions of Sox10 and Egr2 in myelin gene regulation.

作者信息

Jones Erin A, Jang Sung-Wook, Mager Gennifer M, Chang Li-Wei, Srinivasan Rajini, Gokey Nolan G, Ward Rebecca M, Nagarajan Rakesh, Svaren John

机构信息

Program in Cellular and Molecular Biology, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

Neuron Glia Biol. 2007 Nov;3(4):377-87. doi: 10.1017/S1740925X08000173.

DOI:10.1017/S1740925X08000173
PMID:18634568
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2605513/
Abstract

Myelination in the PNS is accompanied by a large induction of the myelin protein zero (Mpz) gene to produce the most abundant component in peripheral myelin. Analyses of knockout mice have shown that the EGR2/Krox20 and SOX10 transcription factors are required for Mpz expression. Our recent work has shown that the dominant EGR2 mutations associated with human peripheral neuropathies cause disruption of EGR2/SOX10 synergy at specific sites, including a conserved enhancer element in the first intron of the Mpz gene. Further investigation of Egr2/Sox10 interactions reveals that activation of the Mpz intron element by Egr2 requires both Sox10-binding sites. In addition, both Egr1 and Egr3 cooperate with Sox10 to activate this element, which indicates that this capacity is conserved among Egr family members. Finally, a conserved composite structure of Egr2/Sox10-binding sites in the genes encoding Mpz, myelin-associated glycoprotein and myelin basic protein genes was used to screen for similar modules in other myelin genes, revealing a potential regulatory element in the periaxin gene. Overall, these results elucidate a working model for developmental regulation of Mpz expression, several facets of which extend to regulation of other peripheral myelin genes.

摘要

周围神经系统中的髓鞘形成伴随着髓鞘蛋白零(Mpz)基因的大量诱导,以产生外周髓鞘中最丰富的成分。对基因敲除小鼠的分析表明,EGR2/Krox20和SOX10转录因子是Mpz表达所必需的。我们最近的研究表明,与人类周围神经病变相关的显性EGR2突变会在特定位点破坏EGR2/SOX10的协同作用,包括Mpz基因第一个内含子中的一个保守增强子元件。对Egr2/Sox10相互作用的进一步研究表明,Egr2对Mpz内含子元件的激活需要两个Sox10结合位点。此外,Egr1和Egr3都与Sox10协同激活该元件,这表明这种能力在Egr家族成员中是保守的。最后,利用Mpz、髓鞘相关糖蛋白和髓鞘碱性蛋白基因编码基因中Egr2/Sox10结合位点的保守复合结构,在其他髓鞘基因中筛选类似模块,揭示了periaxin基因中的一个潜在调控元件。总体而言,这些结果阐明了Mpz表达发育调控的工作模型,其中几个方面扩展到其他外周髓鞘基因的调控。