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首页> 外文期刊>Nucleic acids research >Yeast transcriptional activator INO2 interacts as an Ino2p/Ino4p basic helix-loop-helix heteromeric complex with the inositol/choline-responsive element necessary for expression of phospholipid biosynthetic genes in Saccharomyces cerevisiae
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Yeast transcriptional activator INO2 interacts as an Ino2p/Ino4p basic helix-loop-helix heteromeric complex with the inositol/choline-responsive element necessary for expression of phospholipid biosynthetic genes in Saccharomyces cerevisiae

机译:酵母转录激活因子INO2作为Ino2p / Ino4p基本螺旋-环-螺旋异聚复合物与酿酒酵母中表达磷脂生物合成基因所必需的肌醇/胆碱响应元件相互作用

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Coordinate transcriptional control of yeast genes involved in phospholipid biosynthesis is mediated by the inositol/choline-responsive element (ICRE) contained in the respective promoter regions. Regulatory genes INO2 and INO4, both encoding basic helix-loop-helix (bHLH) proteins, are necessary for ICRE-dependent gene activation. By the use of size variants and by heterologous expression in E.coli we demonstrate that Ino2p and Ino4p are both necessary and sufficient for the formation of the previously described FAS binding factor 1, Fbf1, interacting with the ICRE. Formation of a heteromeric complex between Ino2p and Ino4p by means of the respective bHLH domains was demonstrated in vivo by the interaction of appropriate two-hybrid constructs and in vitro by Far-Western analyses. Neither Ino2p nor Ino4p binds to the ICRE as a homodimer. When fused to the DNA-binding domain of Gal4p, Ino2p but not Ino4p was able to activate a UASGAL-containing reporter gene even in the absence of the heterologous Fbf1 subunit. By deletion studies, two separate transcriptional activation domains were identified in the N-terminal part of Ino2p. Thus, the bHLH domains of Ino2p and Ino4p constitute the dimerization/DNA-binding module of Fbf1 mediating its interaction with the ICRE, while transcriptional activation is effected exclusively by Ino2p.
机译:参与磷脂生物合成的酵母基因的协调转录控制由各自启动子区域中的肌醇/胆碱应答元件(ICRE)介导。调节基因INO2和INO4均编码基本的螺旋-环-螺旋(bHLH)蛋白,对于ICRE依赖性基因激活是必需的。通过使用大小变异体和在大肠杆菌中进行异源表达,我们证明Ino2p和Ino4p对形成与ICRE相互作用的上述FAS结合因子1 Fbf1既必要又充分。通过相应的bHLH结构域在Ino2p和Ino4p之间形成异源复合物,这是通过体内适当的双杂交构建体之间的相互作用在体内证实的,而在体外则通过Far-Western分析进行了证明。 Ino2p和Ino4p都不以同型二聚体的形式与ICRE结合。当与Gal4p的DNA结合域融合时,即使在没有异源Fbf1亚基的情况下,Ino2p而不是Ino4p仍能够激活含UAS GAL 的报告基因。通过删除研究,在Ino2p的N端部分确定了两个单独的转录激活域。因此,Ino2p和Ino4p的bHLH结构域构成Fbf1的二聚化/ DNA结合模块,介导其与ICRE的相互作用,而转录激活仅由Ino2p进行。

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