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Genome-Wide Views of Chromatin Structure

机译:染色质结构的全基因组观点

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摘要

Eukaryotic genomes are packaged into a nucleoprotein complex known as chromatin, which affects most processes that occur on DNA. Along with genetic and biochemical studies of resident chromatin proteins and their modifying enzymes, mapping of chromatin structure in vivo is one of the main pillars in our understanding of how chromatin relates to cellular processes. In this review, we discuss the use of genomic technologies to characterize chromatin structure in vivo, with a focus on data from budding yeast and humans. The picture emerging from these studies is the detailed chromatin structure of a typical gene, where the typical behavior gives insight into the mechanisms and deep rules that establish chromatin structure. Important deviation from the archetype is also observed, usually as a consequence of unique regulatory mechanisms at special genomic loci. Chromatin structure shows substantial conservation from yeast to humans, but mammalian chromatin has additional layers of complexity that likely relate to the requirements of multicellularity such as the need to establish faithful gene regulatory mechanisms for cell differentiation.
机译:真核基因组被包装到核蛋白复合物中,称为染色质,它会影响DNA上发生的大多数过程。除了驻留染色质蛋白及其修饰酶的遗传和生化研究之外,体内染色质结构的定位是我们对染色质如何与细胞过程相关的主要支柱之一。在这篇综述中,我们讨论了使用基因组技术表征体内染色质结构的方法,重点是来自发芽酵母和人类的数据。这些研究得出的图景是典型基因的详细染色质结构,其中典型行为可洞察建立染色质结构的机制和深层规则。通常由于特殊基因组位点独特的调节机制,也观察到与原型的重要偏离。染色质结构显示出从酵母到人类的大量保守性,但是哺乳动物染色质具有额外的复杂性,这可能与多细胞性的要求有关,例如需要建立可靠的细胞分化基因调控机制。

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