哺乳动物的早期细胞系形成:复杂性、物种多样性以及对影响胚胎活力的干扰的易感性。

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Keith E. Latham
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引用次数: 0

摘要

哺乳动物胚胎中最早细胞系的出现是一个复杂的过程,需要利用染色质调节因子、转录因子、细胞极性调节因子和细胞信号通路组成的广泛网络。在胚胎裂解、压实和形成囊胚的过程中,这些因子和通路会在很长一段时间内发挥作用。第一个细胞命运分化事件将多能内细胞团与滋养层细胞系分开。第二个过程将多能的上胚层与下胚层分离。本综述总结了 50 多年来对这些早期细胞系形成事件的研究,探讨了相互作用分子网络的复杂性、驱动这些事件的细胞功能和途径、种间差异,以及这些机制中可能导致它们极易被众多环境因素(如母体健康和饮食、环境毒素和其他压力因素)破坏的方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Early Cell Lineage Formation in Mammals: Complexity, Species Diversity, and Susceptibility to Disruptions Impacting Embryo Viability

Early Cell Lineage Formation in Mammals: Complexity, Species Diversity, and Susceptibility to Disruptions Impacting Embryo Viability

The emergence of the earliest cell lineages in mammalian embryos is a complex process that utilizes an extensive network of chromatin regulators, transcription factors, cell polarity regulators, and cellular signaling pathways. These factors and pathways operate over a protracted period of time as embryos cleave, undergo compaction, and form blastocysts. The first cell fate specification event separates the pluripotent inner cell mass from the trophectoderm lineage. The second event separates pluripotent epiblast from hypoblast. This review summarizes over 50 years of study of these early lineage forming events, addressing the complexity of the network of interacting molecules, cellular functions and pathways that drive them, interspecies differences, and aspects of these mechanisms that likely underlie their high susceptibility to disruption by numerous environmental factors that can compromise embryo viability, such as maternal health and diet, environmental toxins, and other stressors.

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来源期刊
CiteScore
5.20
自引率
0.00%
发文量
78
审稿时长
6-12 weeks
期刊介绍: Molecular Reproduction and Development takes an integrated, systems-biology approach to understand the dynamic continuum of cellular, reproductive, and developmental processes. This journal fosters dialogue among diverse disciplines through primary research communications and educational forums, with the philosophy that fundamental findings within the life sciences result from a convergence of disciplines. Increasingly, readers of the Journal need to be informed of diverse, yet integrated, topics impinging on their areas of interest. This requires an expansion in thinking towards non-traditional, interdisciplinary experimental design and data analysis.
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