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Rsc4将染色质重塑因子RSC与RNA聚合酶连接起来。

Rsc4 connects the chromatin remodeler RSC to RNA polymerases.

作者信息

Soutourina Julie, Bordas-Le Floch Véronique, Gendrel Gabrielle, Flores Amando, Ducrot Cécile, Dumay-Odelot Hélène, Soularue Pascal, Navarro Francisco, Cairns Bradley R, Lefebvre Olivier, Werner Michel

机构信息

Service de Biochimie et Génétique Moléculaire, Bâtiment 144, CEA/Saclay, F-91191 Gif-sur-Yvette Cedex, France.

出版信息

Mol Cell Biol. 2006 Jul;26(13):4920-33. doi: 10.1128/MCB.00415-06.

Abstract

RSC is an essential, multisubunit chromatin remodeling complex. We show here that the Rsc4 subunit of RSC interacted via its C terminus with Rpb5, a conserved subunit shared by all three nuclear RNA polymerases (Pol). Furthermore, the RSC complex coimmunoprecipitated with all three RNA polymerases. Mutations in the C terminus of Rsc4 conferred a thermosensitive phenotype and the loss of interaction with Rpb5. Certain thermosensitive rpb5 mutations were lethal in combination with an rsc4 mutation, supporting the physiological significance of the interaction. Pol II transcription of ca. 12% of the yeast genome was increased or decreased twofold or more in a rsc4 C-terminal mutant. The transcription of the Pol III-transcribed genes SNR6 and RPR1 was also reduced, in agreement with the observed localization of RSC near many class III genes. Rsc4 C-terminal mutations did not alter the stability or assembly of the RSC complex, suggesting an impact on Rsc4 function. Strikingly, a C-terminal mutation of Rsc4 did not impair RSC recruitment to the RSC-responsive genes DUT1 and SMX3 but rather changed the chromatin accessibility of DNases to their promoter regions, suggesting that the altered transcription of DUT1 and SMX3 was the consequence of altered chromatin remodeling.

摘要

RSC是一种重要的多亚基染色质重塑复合体。我们在此表明,RSC的Rsc4亚基通过其C末端与Rpb5相互作用,Rpb5是所有三种核RNA聚合酶(Pol)共有的一个保守亚基。此外,RSC复合体与所有三种RNA聚合酶进行了共免疫沉淀。Rsc4 C末端的突变导致了温度敏感型表型以及与Rpb5相互作用的丧失。某些温度敏感型rpb5突变与rsc4突变结合时是致死的,这支持了这种相互作用的生理意义。在rsc4 C末端突变体中,约12%的酵母基因组的Pol II转录增加或减少了两倍或更多。由Pol III转录的基因SNR6和RPR1的转录也减少了,这与观察到的RSC在许多III类基因附近的定位一致。Rsc4 C末端突变并未改变RSC复合体的稳定性或组装,表明对Rsc4功能有影响。引人注目的是,Rsc4的C末端突变并未损害RSC被招募到RSC反应基因DUT1和SMX3,但却改变了DNase对其启动子区域的染色质可及性,这表明DUT1和SMX3转录的改变是染色质重塑改变的结果。

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