Suppr超能文献

激活素体外诱导非洲爪蟾肌肉中离子通道发育的时间进程。

Time course of ion channel development in Xenopus muscle induced in vitro by activin.

作者信息

Currie D A, Moody W J

机构信息

Department of Zoology, University of Washington, Seattle, Washington 98195, USA.

出版信息

Dev Biol. 1999 May 1;209(1):40-51. doi: 10.1006/dbio.1999.9225.

Abstract

During the process of mesoderm specification in Xenopus embryos, cells of the equatorial region are induced to form mesoderm in response to signals from the underlying endodermal cells. One mesodermal cell type resulting from this in vivo induction is skeletal muscle, which has a very specific and tightly regulated course of electrical and morphological development. Previously, electrical development could be analyzed only after neurulation, once myocytes could be morphologically identified. In vitro, activin triggers a cascade of events leading to the development of specific mesodermal tissues, including skeletal muscle; however, the precise role of activin in vivo is less clear. Much is now known about the mechanism and control of activin action, but very little is known about the subsequent time course of differentiation of activin-induced muscle. Such muscle is routinely identified by the presence of a small number of specific markers which, although they accurately confirm the presence of muscle, give little indication of the time course or quantitative aspects of muscle development. One of the most important functional aspects of muscle development is the acquisition of the complex electrical properties which allow it to function normally. Here we assess the ability of activin to drive in vitro the normal highly regulated sequence of electrical development in skeletal muscle. We find that in most, but not all, respects the normal time course of development of voltage-gated ion currents is well reproduced in activin-induced muscle. This characterization strengthens the case for activin as an agent capable of inducing the detailed developmental program of muscle and now allows for analysis of the regulation of electrical development prior to neurulation.

摘要

在非洲爪蟾胚胎中胚层特化过程中,赤道区域的细胞会响应来自下方内胚层细胞的信号而被诱导形成中胚层。这种体内诱导产生的一种中胚层细胞类型是骨骼肌,其具有非常特定且严格调控的电和形态发育过程。以前,只有在神经胚形成后,一旦可以从形态上识别出肌细胞,才能分析电发育情况。在体外,激活素会引发一系列事件,导致包括骨骼肌在内的特定中胚层组织的发育;然而,激活素在体内的确切作用尚不清楚。现在人们对激活素作用的机制和调控了解很多,但对激活素诱导的肌肉随后的分化时间进程了解甚少。这种肌肉通常通过少量特定标志物的存在来识别,这些标志物虽然能准确确认肌肉的存在,但几乎无法表明肌肉发育的时间进程或定量方面。肌肉发育最重要的功能方面之一是获得使其能够正常运作的复杂电特性。在这里,我们评估激活素在体外驱动骨骼肌正常高度调控的电发育序列的能力。我们发现,在大多数但并非所有方面,激活素诱导的肌肉中电压门控离子电流的正常发育时间进程都能得到很好的重现。这一特征强化了激活素作为一种能够诱导肌肉详细发育程序的因子的情况,并且现在允许在神经胚形成之前分析电发育的调控。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验