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在肠神经系统和黑素细胞发育过程中,Sox10、内皮素3(Edn3)和内皮素受体B(Ednrb)之间的相互作用。

Interactions between Sox10, Edn3 and Ednrb during enteric nervous system and melanocyte development.

作者信息

Stanchina Laure, Baral Viviane, Robert Fabienne, Pingault Veronique, Lemort Nicole, Pachnis Vassilis, Goossens Michel, Bondurand Nadege

机构信息

INSERM, U654, Bases moléculaires et cellulaires des maladies génétiques, Hôpital Henri Mondor, Creteil, F-94000, France; Université Paris 12, Faculté de Médecine, IFR10, Créteil, F-94000, France.

出版信息

Dev Biol. 2006 Jul 1;295(1):232-49. doi: 10.1016/j.ydbio.2006.03.031. Epub 2006 Apr 3.

Abstract

The requirement for SOX10 and endothelin-3/EDNRB signalling pathway during enteric nervous system (ENS) and melanocyte development, as well as their alterations in Waardenburg-Hirschsprung disease (hypopigmentation, deafness and absence of enteric ganglia) are well established. Here, we analysed the genetic interactions between these genes during ENS and melanocyte development. Through phenotype analysis of Sox10;Ednrb and Sox10;Edn3 double mutants, we show that a coordinate and balanced interaction between these molecules is required for normal ENS and melanocyte development. Indeed, double mutants present with a severe increase in white spotting, absence of melanocytes within the inner ear, and in the stria vascularis in particular, and more severe ENS defects. Moreover, we show that partial loss of Ednrb in Sox10 heterozygous mice impairs colonisation of the gut by enteric crest cells at all stages observed. However, compared to single mutants, we detected no apoptosis, cell proliferation or overall neuronal or glial differentiation defects in neural crest cells within the stomach of double mutants, but apoptosis was increased in vagal neural crest cells outside of the gut. These data will contribute to the understanding of the molecular basis of ENS, pigmentation and hearing defects observed in mouse mutants and patients carrying SOX10, EDN3 and EDNRB mutations.

摘要

在肠神经系统(ENS)和黑素细胞发育过程中对SOX10和内皮素-3/内皮素受体B(EDNRB)信号通路的需求,以及它们在瓦登伯革-希尔施普龙病(色素减退、耳聋和肠神经节缺失)中的改变已得到充分证实。在此,我们分析了这些基因在ENS和黑素细胞发育过程中的遗传相互作用。通过对Sox10;Ednrb和Sox10;Edn3双突变体的表型分析,我们表明这些分子之间的协同和平衡相互作用是正常ENS和黑素细胞发育所必需的。事实上,双突变体表现出白斑严重增加、内耳尤其是血管纹中黑素细胞缺失以及更严重的ENS缺陷。此外,我们表明在Sox10杂合小鼠中Ednrb的部分缺失会损害在所有观察阶段的肠神经嵴细胞对肠道的定植。然而,与单突变体相比,我们在双突变体胃内的神经嵴细胞中未检测到凋亡、细胞增殖或整体神经元或神经胶质细胞分化缺陷,但在肠道外的迷走神经嵴细胞中凋亡增加。这些数据将有助于理解在携带SOX10、EDN3和EDNRB突变的小鼠突变体和患者中观察到的ENS、色素沉着和听力缺陷的分子基础。

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