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染色质结构以及由RNA聚合酶III转录的基因的表达独立于H2A.Z的沉积。

Chromatin structure and expression of a gene transcribed by RNA polymerase III are independent of H2A.Z deposition.

作者信息

Arimbasseri Aneeshkumar Gopalakrishnan, Bhargava Purnima

机构信息

Centre for Cellular and Molecular Biology, Uppal Road, Tarnaka, Hyderabad-500007, India.

出版信息

Mol Cell Biol. 2008 Apr;28(8):2598-607. doi: 10.1128/MCB.01953-07. Epub 2008 Feb 11.

Abstract

The genes transcribed by RNA polymerase III (Pol III) generally have intragenic promoter elements. One of them, the yeast U6 snRNA (SNR6) gene is activated in vitro by a positioned nucleosome between its intragenic box A and extragenic, downstream box B separated by approximately 200 bp. We demonstrate here that the in vivo chromatin structure of the gene region is characterized by the presence of an array of positioned nucleosomes, with only one of them in the 5' end of the gene having a regulatory role. A positioned nucleosome present between boxes A and B in vivo does not move when the gene is repressed due to nutritional deprivation. In contrast, the upstream nucleosome which covers the TATA box under repressed conditions is shifted approximately 50 bp further upstream by the ATP-dependent chromatin remodeler RSC upon activation. It is marked with the histone variant H2A.Z and H4K16 acetylation in active state. In the absence of H2A.Z, the chromatin structure of the gene does not change, suggesting that H2A.Z is not required for establishing the active chromatin structure. These results show that the chromatin structure directly participates in regulation of a Pol III-transcribed gene under different states of its activity in vivo.

摘要

由RNA聚合酶III(Pol III)转录的基因通常具有基因内启动子元件。其中之一,酵母U6小核仁RNA(SNR6)基因在体外被一个定位核小体激活,该核小体位于其基因内的A框与基因外下游的B框之间,两者相隔约200 bp。我们在此证明,该基因区域的体内染色质结构的特征是存在一系列定位核小体,其中只有位于基因5'端的一个核小体具有调控作用。当基因因营养剥夺而被抑制时,体内位于A框和B框之间的定位核小体不会移动。相反,在激活时,依赖ATP的染色质重塑复合物RSC会使在抑制条件下覆盖TATA框的上游核小体进一步向上游移动约50 bp。它在活跃状态下标记有组蛋白变体H2A.Z和H4K16乙酰化。在没有H2A.Z的情况下,该基因的染色质结构没有变化,这表明H2A.Z不是建立活跃染色质结构所必需的。这些结果表明,染色质结构在体内该基因不同活性状态下直接参与对Pol III转录基因的调控。

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