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cMeso-1是一种新型的bHLH转录因子,参与鸡胚体节的形成。

cMeso-1, a novel bHLH transcription factor, is involved in somite formation in chicken embryos.

作者信息

Buchberger A, Seidl K, Klein C, Eberhardt H, Arnold H H

机构信息

Department of Cell and Molecular Biology, Technical University of Braunschweig, Germany.

出版信息

Dev Biol. 1998 Jul 15;199(2):201-15. doi: 10.1006/dbio.1998.8919.

Abstract

The segmentation of somites from the paraxial mesoderm is a crucial event in vertebrate embryonic development; however, the mechanisms underlying this process are not well understood. In a yeast two-hybrid screen we have identified the novel basic-helix-loop-helix (bHLH) protein cMeso-1 which is expressed in the presomitic mesoderm of early chicken embryos. Initially the gene is activated in the epiblast and transcripts concentrate later in and around the primitive streak. When the segmental plate is laid down the cMeso-1 expression domain successively retracts toward the caudal end but a second domain appears in bilateral stripes in the anterior paraxial mesoderm. This highly dynamic domain of cMeso-1 transcripts demarcates the area immediately posterior to the next prospective pair of somites in cyclic waves which apparently correspond to the formation of new somites. Loss of cMeso-1 function by antisense RNA or oligonucleotides results in severe attenuation of somitogenesis suggesting that it plays an important role in setting up the segmentation process. The dynamic and periodically reiterated expression of cMeso-1 along the anteroposterior axis is not dependent on anterior structures or the propagation of a signal along the anteroposterior axis but seems to follow an intrinsic patterning program which is already set up in the segmental plate.

摘要

体节从轴旁中胚层的分割是脊椎动物胚胎发育中的一个关键事件;然而,这一过程背后的机制尚未得到充分理解。在一项酵母双杂交筛选中,我们鉴定出了新型的碱性螺旋-环-螺旋(bHLH)蛋白cMeso-1,它在早期鸡胚的前体节中胚层中表达。最初,该基因在胚盘上皮中被激活,转录本随后集中在原条及其周围。当体节板形成时,cMeso-1的表达域相继向尾端退缩,但在前轴旁中胚层的双侧条纹中出现了第二个表达域。cMeso-1转录本的这个高度动态的区域以周期性波动的形式划定了紧邻下一对预期体节后方的区域,这显然与新体节的形成相对应。通过反义RNA或寡核苷酸使cMeso-1功能丧失会导致体节发生严重减弱,这表明它在建立分割过程中起重要作用。cMeso-1沿前后轴的动态且周期性重复的表达不依赖于前部结构或信号沿前后轴的传播,而是似乎遵循已在体节板中建立的内在模式形成程序。

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