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葡萄糖通过一条依赖SNF1和MIG1的途径抑制乳酸克鲁维酵母中的乳糖-半乳糖操纵子,该途径调节半乳糖激酶(GAL1)基因的表达。

Glucose represses the lactose-galactose regulon in Kluyveromyces lactis through a SNF1 and MIG1- dependent pathway that modulates galactokinase (GAL1) gene expression.

作者信息

Dong J, Dickson R C

机构信息

Department of Biochemistry and the L. P. Markey Cancer Center, University of Kentucky College of Medicine, Lexington, KY 40536-0084, USA.

出版信息

Nucleic Acids Res. 1997 Sep 15;25(18):3657-64. doi: 10.1093/nar/25.18.3657.

Abstract

Expression of the lactose-galactose regulon in Kluyveromyces lactis is induced by lactose or galactose and repressed by glucose. Some components of the induction and glucose repression pathways have been identified but many remain unknown. We examined the role of the SNF1 (KlSNF1) and MIG1 (KlMIG1) genes in the induction and repression pathways. Our data show that full induction of the regulon requires SNF1; partial induction occurs in a Klsnf1 -deleted strain, indicating that a KlSNF1 -independent pathway(s) also regulates induction. MIG1 is required for full glucose repression of the regulon, but there must be a KlMIG1 -independent repression pathway also. The KlMig1 protein appears to act downstream of the KlSnf1 protein in the glucose repression pathway. Most importantly, the KlSnf1-KIMig repression pathway operates by modulating KlGAL1 expression. Regulating KlGAL1 expression in this manner enables the cell to switch the regulon off in the presence of glucose. Overall, our data show that, while the Snf1 and Mig1 proteins play similar roles in regulating the galactose regulon in Saccharomyces cerevisiae and K.lactis , the way in which these proteins are integrated into the regulatory circuits are unique to each regulon, as is the degree to which each regulon is controlled by the two proteins.

摘要

乳酸克鲁维酵母中乳糖 - 半乳糖操纵子的表达由乳糖或半乳糖诱导,并受葡萄糖抑制。诱导途径和葡萄糖抑制途径的一些组分已被鉴定,但仍有许多未知。我们研究了SNF1(KlSNF1)和MIG1(KlMIG1)基因在诱导和抑制途径中的作用。我们的数据表明,操纵子的完全诱导需要SNF1;在缺失Klsnf1的菌株中发生部分诱导,这表明存在一条不依赖KlSNF1的途径也调节诱导。MIG1是操纵子完全葡萄糖抑制所必需的,但也必定存在一条不依赖KlMIG1的抑制途径。在葡萄糖抑制途径中,KlMig1蛋白似乎在KlSnf1蛋白的下游起作用。最重要的是,KlSnf1-KlMig抑制途径通过调节KlGAL1的表达来发挥作用。以这种方式调节KlGAL1的表达使细胞能够在有葡萄糖存在时关闭操纵子。总体而言,我们的数据表明,虽然Snf1和Mig1蛋白在调节酿酒酵母和乳酸克鲁维酵母中的半乳糖操纵子方面发挥相似的作用,但这些蛋白整合到调节回路中的方式对于每个操纵子来说是独特的,每个操纵子受这两种蛋白控制的程度也是如此。

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