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发育转变中的信号控制;利用斑马鱼基因组学解读染色质的作用。

Message control in developmental transitions; deciphering chromatin's role using zebrafish genomics.

作者信息

Stapel L Carine, Vastenhouw Nadine L

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, D-01307 Dresden, Germany.

出版信息

Brief Funct Genomics. 2014 Mar;13(2):106-20. doi: 10.1093/bfgp/elt045. Epub 2013 Oct 28.

Abstract

Now that the sequencing of genomes has become routine, understanding how a given genome is used in different ways to obtain cell type diversity in an organism is the next frontier. How specific transcription programs are established during vertebrate embryogenesis, however, remains poorly understood. Transcription is influenced by chromatin structure, which determines the accessibility of DNA-binding proteins to the genome. Although large-scale genomics approaches have uncovered specific features of chromatin structure that are diagnostic for different cell types and developmental stages, our functional understanding of chromatin in transcriptional regulation during development is very limited. In recent years, zebrafish embryogenesis has emerged as an excellent vertebrate model system to investigate the functional relationship between chromatin organization, gene regulation and development in a dynamic environment. Here, we review how studies in zebrafish have started to improve our understanding of the role of chromatin structure in genome activation and pluripotency and in the potential inheritance of transcriptional states from parent to progeny.

摘要

既然基因组测序已成为常规操作,那么了解一个给定的基因组如何以不同方式被用于在生物体中获得细胞类型多样性就是下一个前沿领域。然而,脊椎动物胚胎发育过程中特定转录程序是如何建立的,目前仍知之甚少。转录受染色质结构影响,染色质结构决定了DNA结合蛋白对基因组的可及性。尽管大规模基因组学方法已经揭示了染色质结构的特定特征,这些特征可用于诊断不同的细胞类型和发育阶段,但我们对发育过程中转录调控中染色质的功能理解非常有限。近年来,斑马鱼胚胎发育已成为一个优秀的脊椎动物模型系统,用于在动态环境中研究染色质组织、基因调控和发育之间的功能关系。在这里,我们回顾了斑马鱼研究如何开始增进我们对染色质结构在基因组激活和多能性以及转录状态从亲代到子代的潜在遗传中的作用的理解。

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