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Gal3p and Gal1p interact with the transcriptional repressor Gal80p to form a complex of 1:1 stoichiometry.

机译:Gal3p和Gal1p与转录阻遏物Gal80p相互作用,形成化学计量比为1:1的复合物。

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摘要

The genes encoding the enzymes required for galactose metabolism in Saccharomyces cerevisiae are controlled at the level of transcription by a genetic switch consisting of three proteins: a transcriptional activator, Gal4p; a transcriptional repressor, Gal80p; and a ligand sensor, Gal3p. The switch is turned on in the presence of two small molecule ligands, galactose and ATP. Gal3p shows a high degree of sequence identity with Gal1p, the yeast galactokinase. We have mapped the interaction between Gal80p and Gal3p, which only occurs in the presence of both ligands, using protease protection experiments and have shown that this involves amino acid residue 331 of Gal80p. Gel-filtration experiments indicate that Gal3p, or the galactokinase Gal1p, interact directly with Gal80p to form a complex with 1:1 stoichiometry.
机译:酿酒酵母中半乳糖代谢所需的编码酶的基因通过由三种蛋白质组成的遗传开关被控制在转录水平上:转录激活因子Gal4p;和转录阻遏物Gal80p;还有配体传感器Gal3p在存在两个小分子配体(半乳糖和ATP)的情况下打开开关。 Gal3p与酵母半乳糖激酶Gal1p具有高度的序列同一性。我们已经使用蛋白酶保护实验绘制了Gal80p和Gal3p之间的相互作用,该相互作用仅在两个配体均存在的情况下发生,并表明这涉及Gal80p的氨基酸残基331。凝胶过滤实验表明,Gal3p或半乳糖激酶Gal1p直接与Gal80p相互作用,形成化学计量比为1:1的复合物。

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