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非洲爪蟾外植体中驱动中侧插入的细胞运动

Cell motility driving mediolateral intercalation in explants of Xenopus laevis.

作者信息

Shih J, Keller R

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Development. 1992 Dec;116(4):901-14. doi: 10.1242/dev.116.4.901.

Abstract

In Xenopus, convergence and extension are produced by active intercalation of the deep mesodermal cells between one another along the mediolateral axis (mediolateral cell intercalation), to form a narrower, longer array. The cell motility driving this intercalation is poorly understood. A companion paper shows that the endodermal epithelium organizes the outermost mesodermal cells immediately beneath it to undergo convergence and extension, and other evidence suggests that these deep cells are the most active participants in mediolateral intercalation (Shih, J. and Keller, R. (1992) Development 116, 887-899). In this paper, we shave off the deeper layers of mesodermal cells, which allows us to observe the protrusive activity of the mesodermal cells next to the organizing epithelium with high resolution video microscopy. These mesodermal cells divide in the early gastrula and show rapid, randomly directed protrusive activity. At the early midgastrula stage, they begin to express a characteristic sequence of behaviors, called mediolateral intercalation behavior (MIB): (1) large, stable, filiform and lamelliform protrusions form in the lateral and medial directions, thus making the cells bipolar; (2) these protrusions are applied directly to adjacent cell surfaces and exert traction on them, without contact inhibition; (3) as a result, the cells elongate and align parallel to the mediolateral axis and perpendicular to the axis of extension; (4) the elongate, aligned cells intercalate between one another along the mediolateral axis, thus producing a longer, narrower array. Explants of essentially a single layer of deep mesodermal cells, made at stage 10.5, converge and extend by mediolateral intercalation. Thus by stage 10.5 (early midgastrula), expression of MIB among deep mesodermal cells is physiologically and mechanically independent of the organizing influence of the endodermal epithelium, described previously (Shih, J. and Keller, R. (1992) Development 116 887-899), and is the fundamental cell motility underlying mediolateral intercalation and convergence and extension of the body axis.

摘要

在非洲爪蟾中,汇聚和延伸是由深层中胚层细胞沿内外侧轴彼此之间的主动插入(内外侧细胞插入)产生的,从而形成一个更窄、更长的排列。驱动这种插入的细胞运动性目前了解甚少。一篇相关论文表明,内胚层上皮组织会使其下方紧邻的最外层中胚层细胞进行汇聚和延伸,并且其他证据表明这些深层细胞是内外侧插入中最活跃的参与者(施,J. 和凯勒,R.(1992年)《发育》116卷,887 - 899页)。在本文中,我们刮去了中胚层细胞的较深层,这使我们能够用高分辨率视频显微镜观察紧邻组织上皮的中胚层细胞的突出活动。这些中胚层细胞在原肠胚早期进行分裂,并表现出快速的、随机定向的突出活动。在原肠胚中早期阶段,它们开始表现出一系列特征性行为,称为内外侧插入行为(MIB):(1)在外侧和内侧方向形成大的、稳定的丝状和片状突出,从而使细胞呈双极状;(2)这些突出直接作用于相邻细胞表面并对其施加牵引力,不存在接触抑制;(3)结果,细胞伸长并与内外侧轴平行且与延伸轴垂直排列;(4)伸长且排列好的细胞沿内外侧轴彼此插入,从而产生一个更长、更窄的排列。在10.5期制备的基本上为单层深层中胚层细胞的外植体,通过内外侧插入进行汇聚和延伸。因此,到10.5期(原肠胚中早期),深层中胚层细胞中MIB的表达在生理和机械方面独立于先前描述的内胚层上皮组织的组织影响(施,J. 和凯勒,R.(1992年)《发育》116卷,887 - 899页),并且是内外侧插入以及体轴汇聚和延伸的基本细胞运动性。

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