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染色质与转录

Chromatin and transcription.

作者信息

Edmondson D G, Roth S Y

机构信息

Department of Biochemistry and Molecular Biology, University of Texas M.D. Anderson Cancer Center, Houston 77030, USA.

出版信息

FASEB J. 1996 Aug;10(10):1173-82. doi: 10.1096/fasebj.10.10.8751719.

Abstract

The compaction of DNA into chromatin in the eukaryotic nucleus poses many obstacles to transcription. Individual nucleosomes as well as higher order structures limit access of cis-acting regulatory elements to trans-acting factors. The structural nature of this inhibition and the mechanisms by which chromatin is remodeled to facilitate the regulation of gene expression have remained puzzles for many years. Recent advances highlight the intimate and dynamic interplay between transcription proteins and components of chromatin, providing new clues to long-standing questions. A transcriptional adaptor complex has been discovered to house histone acetylase activity. A chromatin remodeling "machine" has been found to be part of the RNA polymerase II holoenzyme. Identification of new factors that affect the organization of functional chromatin domains in yeast, flies, and mammals provides new insights into the organization of higher order chromatin structures, as well as the nature of boundaries that restrict these domains. These compelling discoveries and others define a new and exciting threshold for our understanding of the many connections between chromatin and transcription.

摘要

在真核细胞核中,DNA压缩成染色质给转录带来了诸多障碍。单个核小体以及更高层次的结构限制了顺式作用调节元件与反式作用因子的接触。这种抑制的结构本质以及染色质重塑以促进基因表达调控的机制多年来一直是未解之谜。最近的进展突出了转录蛋白与染色质成分之间密切而动态的相互作用,为长期存在的问题提供了新线索。已发现一种转录衔接复合体具有组蛋白乙酰化酶活性。已发现一种染色质重塑“机器”是RNA聚合酶II全酶的一部分。在酵母、果蝇和哺乳动物中鉴定出影响功能性染色质结构域组织的新因子,为更高层次染色质结构的组织以及限制这些结构域的边界性质提供了新见解。这些引人注目的发现及其他发现为我们理解染色质与转录之间的诸多联系划定了一个新的、令人兴奋的起点。

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