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首页> 外文期刊>Wiley interdisciplinary reviews. Systems biology and medicine >Decoding pluripotency: Genetic screens to interrogate the acquisition, maintenance, and exit of pluripotency
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Decoding pluripotency: Genetic screens to interrogate the acquisition, maintenance, and exit of pluripotency

机译:解码多能性:遗传屏幕,用于询问多能性的获取,维护和退出

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摘要

Pluripotent stem cells have the ability to unlimitedly self-renew and differentiate to any somatic cell lineage. A number of systems biology approaches have been used to define this pluripotent state. Complementary to systems level characterization, genetic screens offer a unique avenue to functionally interrogate the pluripotent state and identify the key players in pluripotency acquisition and maintenance, exit of pluripotency, and lineage differentiation. Here we review how genetic screens have helped us decode pluripotency regulation. We will summarize results from RNA interference (RNAi) based screens, discuss recent advances in CRISPR/Cas-based genetic perturbation methods, and how these advances have made it possible to more comprehensively interrogate pluripotency and differentiation through genetic screens. Such investigations will not only provide a better understanding of this unique developmental state, but may enhance our ability to use pluripotent stem cells as an experimental model to study human development and disease progression. Functional interrogation of pluripotency also provides a valuable roadmap for utilizing genetic perturbation to gain systems level understanding of additional cellular states, from later stages of development to pathological disease states. This article is categorized under: Developmental Biology > Stem Cell Biology and Regeneration Developmental Biology > Developmental Processes in Health and Disease Biological Mechanisms > Cell Fates
机译:多能干细胞具有无限地自我更新和区分任何体细胞谱系的能力。已经使用了许多系统生物学方法来定义该多能状态。互动屏幕互补,基因屏幕提供了独特的途径,以便在功能上询问多能状态,并确定多能性获取和维护,多能程度退出的关键参与者,以及谱系分化。在这里,我们审查了遗传屏幕如何帮助我们解码多能性监管。我们将总结基于RNA干扰(RNAi)的屏幕的结果,讨论了基于CRISPR / CAS的遗传扰动方法的最新进展,以及这些进步如何通过遗传筛来更全面地询问多能性和分化。这种调查不仅可以更好地了解这种独特的发育状态,而且可以提高我们使用多能干细胞作为研究人类发展和疾病进展的实验模型的能力。多能性的功能询问还提供了有价值的路线图,用于利用遗传扰动来获得对额外细胞状态的额外细胞状态的系统级别了解,从后来的发育到病理疾病状态。本文分类为:发展生物学>干细胞生物学和再生发育生物学>健康和疾病生物机制的发育过程>细胞命运

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