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酵母PDR1p的转录激活作用会因其与NGG1p/ADA3p的结合而受到抑制。

Transcriptional activation by yeast PDR1p is inhibited by its association with NGG1p/ADA3p.

作者信息

Martens J A, Genereaux J, Saleh A, Brandl C J

机构信息

Department of Biochemistry, University of Western Ontario, London, Ontario, Canada N6A 5C1.

出版信息

J Biol Chem. 1996 Jul 5;271(27):15884-90. doi: 10.1074/jbc.271.27.15884.

Abstract

NGG1p/ADA3p forms a coactivator/repressor complex (ADA complex) in association with at least two other yeast proteins, ADA2p and GCN5p, that is involved in regulating transcriptional activator proteins including GAL4p and GCN4p. Using a two-hybrid analysis, we found that the carboxyl-terminal transcriptional activation domain of PDR1p, the primary regulatory protein involved in yeast pleiotropic drug resistance, interacts with the amino-terminal 373 amino acids of NGG1p (NGG1p1-373). This interaction was confirmed by coimmunoprecipitation of epitope-tagged derivatives of NGG1p and PDR1p from crude extracts. An overlapping region of the related transcriptional activator PDR3p was also found to interact with NGG1p. Amino acids 274-307 of NGG1p were required for interaction with PDR1p. This same region is required for inhibition of transcriptional activation by GAL4p. The association between NGG1p1-373 and PDR1p may be indirect, possibly mediated by the ADA complex since the two-hybrid interaction required the presence of full-length NGG1. A partial requirement for ADA2 was also found. This suggests that an additional component of the ADA complex, regulated by ADA2p, may mediate the interaction. Transcriptional activation by a GAL4p DNA binding domain fusion of PDR1p was enhanced in ngg1 and ada2 disruption strains. Similar to its action on GAL4p, the ADA complex acts to inhibit the activation domain of PDR1p.

摘要

NGG1p/ADA3p与至少另外两种酵母蛋白ADA2p和GCN5p形成一种共激活因子/共抑制因子复合物(ADA复合物),该复合物参与调控包括GAL4p和GCN4p在内的转录激活蛋白。通过双杂交分析,我们发现酵母多药耐药主要调控蛋白PDR1p的羧基末端转录激活结构域与NGG1p的氨基末端373个氨基酸(NGG1p1 - 373)相互作用。从粗提物中对带有表位标签的NGG1p和PDR1p衍生物进行共免疫沉淀,证实了这种相互作用。还发现相关转录激活因子PDR3p的一个重叠区域也与NGG1p相互作用。NGG1p的274 - 307位氨基酸是与PDR1p相互作用所必需的。GAL4p抑制转录激活也需要这个相同区域。NGG1p1 - 373与PDR1p之间的关联可能是间接的,可能由ADA复合物介导,因为双杂交相互作用需要全长NGG1的存在。还发现对ADA2有部分需求。这表明由ADA2p调控的ADA复合物的另一个组分可能介导了这种相互作用。在ngg1和ada2缺失菌株中,PDR1p的GAL4p DNA结合结构域融合体的转录激活增强。与其对GAL4p的作用类似,ADA复合物抑制PDR1p的激活结构域。

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