从染色质结构和核基质了解转录的表观遗传学。

Gene Therapy and Molecular Biology Pub Date : 2005-01-01
Rui Pires Martins, Stephen A Krawetz
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引用次数: 0

摘要

真核生物的细胞核容纳了大量的信息,这些信息被仔细排序,以确保基因在发育和分化过程中可以根据需要进行转录。基因组被划分为包含功能性转录单位的区域,为细胞选择性地激活一些区域提供了手段,同时保持基因组的其他区域沉默。在过去的25年里,染色质的结构及其如何受到表观遗传学的影响已经成为现代生物学的前沿。然而,到目前为止,它还未能确定单个基因或结构域被选择表达的机制。通过DNA和染色质蛋白的共价和结构修饰,表观遗传学维持了活跃和沉默的染色质状态。这是“其他”遗传密码,通常取代由核苷酸序列决定的遗传密码。核基质富含许多控制核过程的因素。它包括许多未知的因素,这些因素可能使我们第一次了解分化细胞遗传选择性的结构机制。这篇综述将考虑核基质作为表观遗传机制的一个组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards understanding the epigenetics of transcription by chromatin structure and the nuclear matrix.

The eukaryotic nucleus houses a significant amount of information that is carefully ordered to ensure that genes can be transcribed as needed throughout development and differentiation. The genome is partitioned into regions containing functional transcription units, providing the means for the cell to selectively activate some, while keeping other regions of the genome silent. Over the last quarter of a century the structure of chromatin and how it is influenced by epigenetics has come into the forefront of modern biology. However, it has thus far failed to identify the mechanism by which individual genes or domains are selected for expression. Through covalent and structural modification of the DNA and chromatin proteins, epigenetics maintains both active and silent chromatin states. This is the "other" genetic code, often superseding that dictated by the nucleotide sequence. The nuclear matrix is rich in many of the factors that govern nuclear processes. It includes a host of unknown factors that may provide our first insight into the structural mechanism responsible for the genetic selectivity of a differentiating cell. This review will consider the nuclear matrix as an integral component of the epigenetic mechanism.

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来源期刊
Gene Therapy and Molecular Biology
Gene Therapy and Molecular Biology 生物-生化与分子生物学
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