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酵母HAP2和HAP3:异源复合物中的转录激活因子。

Yeast HAP2 and HAP3: transcriptional activators in a heteromeric complex.

作者信息

Hahn S, Guarente L

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Science. 1988 Apr 15;240(4850):317-21. doi: 10.1126/science.2832951.

Abstract

Transcription of the yeast C upsilon C1 gene (iso-1-cytochrome c) is regulated in part by the upstream activation site UAS2. Activity of UAS2 requires both the HAP2 and HAP3 activators, which bind to UAS2 in an interdependent manner. To distinguish whether these factors bound to UAS2 cooperatively or formed a complex in the absence of DNA, HAP2 and HAP3 were tagged by gene fusion to LexA and beta-galactosidase, respectively, and purified through four chromatographic steps. The copurification of LexA-HAP2, HAP3 beta-galactosidase, and UAS2 binding activity shows that HAP2 and HAP3 associate in the absence of DNA to form a multisubunit activation complex.

摘要

酵母C upsilon C1基因(同工型1 - 细胞色素c)的转录部分受上游激活位点UAS2调控。UAS2的活性需要HAP2和HAP3这两种激活因子,它们以相互依赖的方式结合到UAS2上。为了区分这些因子是在没有DNA的情况下协同结合到UAS2上还是形成了复合物,分别通过基因融合将HAP2和HAP3标记为LexA和β - 半乳糖苷酶,并经过四个色谱步骤进行纯化。LexA - HAP2、HAP3β - 半乳糖苷酶和UAS2结合活性的共纯化表明,HAP2和HAP3在没有DNA的情况下相互结合形成多亚基激活复合物。

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