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细胞分裂的几何形状作为早期胚胎发育的中央组织者。

Cell division geometries as central organizers of early embryo development.

机构信息

Université de Paris, CNRS, Institut Jacques Monod, Paris, France; Equipe Labellisée LIGUE Contre le Cancer, France.

出版信息

Semin Cell Dev Biol. 2022 Oct;130:3-11. doi: 10.1016/j.semcdb.2021.08.004. Epub 2021 Aug 18.

Abstract

Early cellular patterning is a critical step of embryonic development that determines the proper progression of morphogenesis in all metazoans. It relies on a series of rapid reductive divisions occurring simultaneously with the specification of the fate of different subsets of cells. Multiple species developmental strategies emerged in the form of a unique cleavage pattern with stereotyped division geometries. Cleavage geometries have long been associated to the emergence of canonical developmental features such as cell cycle asynchrony, zygotic genome activation and fate specification. Yet, the direct causal role of division positioning on blastomere cell behavior remain partially understood. Oriented and/or asymmetric divisions define blastomere cell sizes, contacts and positions, with potential immediate impact on cellular decisions, lineage specification and morphogenesis. Division positions also instruct daughter cells polarity, mechanics and geometries, thereby influencing subsequent division events, in an emergent interplay that may pattern early embryos independently of firm deterministic genetic programs. We here review the recent literature which helped to delineate mechanisms and functions of division positioning in early embryos.

摘要

早期细胞模式形成是胚胎发育的关键步骤,决定了所有后生动物形态发生的正确进程。它依赖于一系列快速的减数分裂,同时伴随着不同细胞亚群命运的特化。多种物种的发育策略以独特的分裂模式和定型的分裂几何形状的形式出现。长期以来,分裂几何形状与细胞周期的异步性、合子基因组激活和命运特化等典型发育特征的出现有关。然而,分裂定位对胚胎细胞行为的直接因果作用仍部分未知。定向和/或不对称分裂决定了胚胎细胞的大小、接触和位置,这可能对细胞决策、谱系特化和形态发生产生直接影响。分裂位置还指导子细胞的极性、力学和几何形状,从而影响随后的分裂事件,在这种新兴的相互作用中,可能会独立于确定性的遗传程序来塑造早期胚胎。在这里,我们回顾了最近的文献,这些文献有助于描绘早期胚胎中分裂定位的机制和功能。

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