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非洲爪蟾原肠胚中的细胞迁移。

Cell migration in the Xenopus gastrula.

作者信息

Huang Yunyun, Winklbauer Rudolf

机构信息

Department of Cell and Systems Biology, University of Toronto, Toronto, Ontario, Canada.

出版信息

Wiley Interdiscip Rev Dev Biol. 2018 Nov;7(6):e325. doi: 10.1002/wdev.325. Epub 2018 Jun 26.

Abstract

Xenopus gastrulation movements are in large part based on the rearrangement of cells by differential cell-on-cell migration within multilayered tissues. Different patterns of migration-based cell intercalation drive endoderm and mesoderm internalization and their positioning along their prospective body axes. C-cadherin, fibronectin, integrins, and focal contact components are expressed in all gastrula cells and play putative roles in cell-on-cell migration, but their actual functions in this respect are not yet understood. The gastrula can be subdivided into two motility domains, and in the vegetal, migratory domain, two modes of cell migration are discerned. Vegetal endoderm cells show ingression-type migration, a variant of amoeboid migration characterized by the lack of locomotory protrusions and by macropinocytosis as a mechanism of trailing edge resorption. Mesendoderm and prechordal mesoderm cells use lamellipodia in a mesenchymal mode of migration. Gastrula cell motility can be dissected into traits, such as cell polarity, adhesion, mobility, or protrusive activity, which are controlled separately yet in complex, combinatorial ways. Cells can instantaneously switch between different combinations of traits, showing plasticity as they respond to substratum properties. This article is categorized under: Early Embryonic Development > Gastrulation and Neurulation.

摘要

非洲爪蟾的原肠胚形成运动在很大程度上基于多层组织内细胞间差异迁移导致的细胞重排。基于迁移的不同细胞插入模式驱动内胚层和中胚层的内陷及其沿预期体轴的定位。C-钙黏蛋白、纤连蛋白、整合素和粘着斑成分在所有原肠胚细胞中均有表达,并在细胞间迁移中发挥假定作用,但它们在这方面的实际功能尚不清楚。原肠胚可分为两个运动域,在植物性迁移域中,可识别出两种细胞迁移模式。植物性内胚层细胞表现出内陷型迁移,这是一种变形虫样迁移的变体,其特征是缺乏运动性突起,并以巨胞饮作用作为后缘吸收的机制。中内胚层和前索中胚层细胞以间充质迁移模式使用片状伪足。原肠胚细胞的运动性可细分为细胞极性、黏附、迁移性或突出活性等特征,这些特征虽分别受到控制,但方式复杂且相互组合。细胞能够在不同的特征组合之间瞬间切换,在对基质特性做出反应时表现出可塑性。本文分类如下:早期胚胎发育>原肠胚形成和神经胚形成。

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