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一种脊椎动物类Bar同源框基因的促凋亡活性,通过限制表达脊索蛋白和音猬因子的细胞数量,在非洲爪蟾神经板的模式形成中起关键作用。

The pro-apoptotic activity of a vertebrate Bar-like homeobox gene plays a key role in patterning the Xenopus neural plate by limiting the number of chordin- and shh-expressing cells.

作者信息

Offner Nicolas, Duval Nathalie, Jamrich Milan, Durand Béatrice

机构信息

Unité Rétrovirus et Transfert Génétique, INSERM (U622). Institut Pasteur, Paris, France.

出版信息

Development. 2005 Apr;132(8):1807-18. doi: 10.1242/dev.01712. Epub 2005 Mar 16.

Abstract

Targeted disruption of effectors molecules of the apoptotic pathway have demonstrated the occurrence and magnitude of early programmed cell death (EPCD), a form of apoptosis that affects proliferating and newly differentiated cells in vertebrates, and most dramatically cells of the central nervous system (CNS). Little is known about the molecular pathways controlling apoptosis at these early developmental stages, as the roles of EPCD during patterning of the developing nervous system. We describe a new function, in Xenopus neurodevelopment, for a highly conserved homeodomain protein Barhl2. Barhl2 promotes apoptosis in the Xenopus neuroectoderm and mesoderm, acting as a transcriptional repressor, through a mechanism that cannot be attributed to an unspecific cellular stress response. We show that the pro-apoptotic activity of Barhl2 is essential during normal neural plate formation as it limits the number of chordin- and Xshh-expressing cells in the prospective notochord and floorplate, which act as organizing centers. Our findings show that Barhl2 is part of a pathway regulating EPCD. They also provide evidence that apoptosis plays an important role in regulating the size of organizing centers.

摘要

对凋亡途径效应分子的靶向破坏已证明早期程序性细胞死亡(EPCD)的发生及程度,EPCD是一种凋亡形式,影响脊椎动物中增殖和新分化的细胞,对中枢神经系统(CNS)细胞的影响最为显著。在这些早期发育阶段,关于控制凋亡的分子途径知之甚少,这是因为EPCD在发育中的神经系统模式形成过程中的作用。我们描述了一种高度保守的同源结构域蛋白Barhl2在非洲爪蟾神经发育中的新功能。Barhl2通过一种不能归因于非特异性细胞应激反应的机制,作为转录抑制因子,促进非洲爪蟾神经外胚层和中胚层的凋亡。我们表明,Barhl2的促凋亡活性在正常神经板形成过程中至关重要,因为它限制了表达脊索蛋白和Xshh的细胞数量,这些细胞位于未来的脊索和底板中,充当组织中心。我们的研究结果表明,Barhl2是调节EPCD途径的一部分。它们还提供了证据,证明凋亡在调节组织中心大小方面起着重要作用。

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