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The Gal3p transducer of the GAL regulon interacts with the Gal80p repressor in its ligand-induced closed conformation

机译:GAL regulon的Gal3p换能器与Gal80p阻遏物相互作用以其配体诱导的闭合构象

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摘要

A wealth of genetic information and some biochemical analysis have made the GAL regulon of the yeast Saccharomyces cerevisiae a classic model system for studying transcriptional activation in eukaryotes. Galactose induces this transcriptional switch, which is regulated by three proteins: the transcriptional activator Gal4p, bound to DNA; the repressor Gal80p; and the transducer Gal3p. We showed previously that NADP appears to act as a trigger to kick the repressor off the activator. Sustained activation involves a complex of the transducer Gal3p and Gal80p mediated by galactose and ATP. We solved the crystal structure of the complex of Gal3p–Gal80p with α-D-galactose and ATP to 2.1 Å resolution. The interaction between the proteins occurs only when Gal3p is in a “closed” state induced by ligand binding. The structure of the complex provides a rationale for the phenotypes of several well-known Gal80p and Gal3p mutants as well as the lack of galactokinase activity of Gal3p.
机译:大量的遗传信息和一些生化分析已使酿酒酵母酵母的GAL regulon成为研究真核生物转录激活的经典模型系统。半乳糖诱导这种转录开关,该开关受三种蛋白质调节:与DNA结合的转录激活因子Gal4p;阻遏物Gal80p;和传感器Gal3p。先前我们已经证明,NADP似乎是触发将阻遏物从活化剂上踢下来的触发器。持续活化涉及由半乳糖和ATP介导的换能器Gal3p和Gal80p的复合物。我们将Gal3p–Gal80p与α-D-半乳糖和ATP的复合物的晶体结构解析为2.1Å分辨率。仅当Gal3p处于由配体结合诱导的“封闭”状态时,蛋白质之间才会发生相互作用。该复合物的结构为几种众所周知的Gal80p和Gal3p突变体的表型以及Gal3p的半乳糖激酶活性缺乏提供了理论依据。

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