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Human developmental enhancers conserved between deuterostomes and protostomes.后生动物与原口动物之间保守的人类发育增强子。
PLoS Genet. 2012;8(8):e1002852. doi: 10.1371/journal.pgen.1002852. Epub 2012 Aug 2.
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Adhesion G protein-coupled receptors: signaling, pharmacology, and mechanisms of activation.黏附 G 蛋白偶联受体:信号转导、药理学和激活机制。
Mol Pharmacol. 2012 Nov;82(5):777-83. doi: 10.1124/mol.112.080309. Epub 2012 Jul 20.
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Neuronal Neuregulin 1 type III directs Schwann cell migration.神经元神经调节蛋白 1 型 III 指导施万细胞迁移。
Development. 2011 Nov;138(21):4639-48. doi: 10.1242/dev.068072. Epub 2011 Sep 28.
4
Functional dissection of the Oct6 Schwann cell enhancer reveals an essential role for dimeric Sox10 binding.功能解析 Oct6 雪旺细胞增强子揭示了二聚 Sox10 结合的重要作用。
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5
Gpr126 is essential for peripheral nerve development and myelination in mammals.Gpr126 对于哺乳动物周围神经的发育和髓鞘形成是必需的。
Development. 2011 Jul;138(13):2673-80. doi: 10.1242/dev.062224. Epub 2011 May 25.
6
Axonally derived neuregulin-1 is required for remyelination and regeneration after nerve injury in adulthood.轴突衍生的神经调节蛋白 1 是成年神经损伤后髓鞘再生和修复所必需的。
J Neurosci. 2011 Mar 2;31(9):3225-33. doi: 10.1523/JNEUROSCI.2568-10.2011.
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Mouse schwann cells need both NRG1 and cyclic AMP to myelinate.施万细胞需要 NRG1 和环 AMP 来髓鞘化。
Glia. 2011 May;59(5):720-33. doi: 10.1002/glia.21144. Epub 2011 Feb 14.
8
Schwann cells reposition a peripheral nerve to isolate it from postembryonic remodeling of its targets.施万细胞重新定位周围神经,使其与靶组织的胚胎后重塑隔离开来。
Development. 2010 Nov;137(21):3643-9. doi: 10.1242/dev.057521. Epub 2010 Sep 28.
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In vivo development of outer retinal synapses in the absence of glial contact.在没有神经胶质接触的情况下,外视网膜突触的体内发育。
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A systematic approach to identify functional motifs within vertebrate developmental enhancers.一种系统的方法,用于鉴定脊椎动物发育增强子中的功能基序。
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分析 Gpr126 的功能可以明确控制髓鞘起始和成熟的不同机制。

Analysis of Gpr126 function defines distinct mechanisms controlling the initiation and maturation of myelin.

机构信息

Department of Developmental Biology, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

Development. 2013 Aug;140(15):3167-75. doi: 10.1242/dev.093401. Epub 2013 Jun 26.

DOI:10.1242/dev.093401
PMID:23804499
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3931731/
Abstract

In peripheral nerves, Schwann cells form the myelin sheath, which allows the efficient propagation of action potentials along axons. The transcription factor Krox20 regulates the initiation of myelination in Schwann cells and is also required to maintain mature myelin. The adhesion G protein-coupled receptor (GPCR) Gpr126 is essential for Schwann cells to initiate myelination, but previous studies have not addressed the role of Gpr126 signaling in myelin maturation and maintenance. Through analysis of Gpr126 in zebrafish, we define two distinct mechanisms controlling the initiation and maturation of myelin. We show that gpr126 mutant Schwann cells elaborate mature myelin sheaths and maintain krox20 expression for months, provided that the early signaling defect is bypassed by transient elevation of cAMP. At the onset of myelination, Gpr126 and protein kinase A (PKA) function as a switch that allows Schwann cells to initiate krox20 expression and myelination. After myelination is initiated, krox20 expression is maintained and myelin maturation proceeds independently of Gpr126 signaling. Transgenic analysis indicates that the Krox20 cis-regulatory myelinating Schwann cell element (MSE) becomes active at the onset of myelination and that this activity is dependent on Gpr126 signaling. Activity of the MSE declines after initiation, suggesting that other elements are responsible for maintaining krox20 expression in mature nerves. We also show that elevated cAMP does not initiate myelination in the absence of functional Neuregulin 1 (Nrg1) signaling. These results indicate that the mechanisms regulating the initiation of myelination are distinct from those mediating the maturation and maintenance of myelin.

摘要

在周围神经中,施万细胞形成髓鞘,允许动作电位沿轴突有效传播。转录因子 Krox20 调节施万细胞髓鞘形成的起始,并且还需要维持成熟的髓鞘。黏附 G 蛋白偶联受体(GPCR)Gpr126 对于施万细胞启动髓鞘形成是必不可少的,但之前的研究尚未解决 Gpr126 信号在髓鞘成熟和维持中的作用。通过对斑马鱼中 Gpr126 的分析,我们定义了控制髓鞘起始和成熟的两种不同机制。我们表明,gpr126 突变的施万细胞形成成熟的髓鞘鞘,并在数月内维持 krox20 的表达,前提是通过短暂升高 cAMP 绕过早期信号缺陷。在髓鞘形成开始时,Gpr126 和蛋白激酶 A(PKA)作为一种开关起作用,使施万细胞能够开始表达 krox20 并进行髓鞘形成。髓鞘形成开始后,krox20 的表达得到维持,并且髓鞘成熟独立于 Gpr126 信号进行。转基因分析表明,Krox20 顺式调节的髓鞘形成施万细胞元件(MSE)在髓鞘形成开始时变得活跃,并且这种活性依赖于 Gpr126 信号。启动后 MSE 的活性下降,表明其他元件负责维持成熟神经中的 krox20 表达。我们还表明,在没有功能性神经调节蛋白 1(Nrg1)信号的情况下,升高的 cAMP 不会引发髓鞘形成。这些结果表明,调节髓鞘形成起始的机制与调节髓鞘成熟和维持的机制不同。