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酿酒酵母MRG19的分子特征。对半乳糖和不可发酵碳源利用调控的影响。

Molecular characterization of MRG19 of Saccharomyces cerevisiae. Implication in the regulation of galactose and nonfermentable carbon source utilization.

作者信息

Khanday Firdous A, Saha Maitreyi, Bhat Paike Jayadeva

机构信息

Laboratory of Molecular Genetics, Biotechnology Center, Indian Institute of Technology, Powai, Mumbai, India.

出版信息

Eur J Biochem. 2002 Dec;269(23):5840-50. doi: 10.1046/j.1432-1033.2002.03303.x.

Abstract

We have reported previously that multiple copies of MRG19 suppress GAL genes in a wild-type but not in a gal80 strain of Saccharomyces cerevisiae. In this report we show that disruption of MRG19 leads to a decrease in GAL induction when S. cerevisiae is induced with 0.02% but not with 2.0% galactose. Disruption of MRG19 in a gal3 background (this strain shows long-term adaptation phenotype) further delays the GAL induction, supporting the notion that its function is important only under low inducing signals. As a corollary, disruption of MRG19 in a gal80 strain did not decrease the constitutive expression of GAL genes. These results suggest that MRG19 has a role in GAL regulation only when the induction signal is weak. Unlike the effect on GAL gene expression, disruption of MRG19 leads to de-repression of CYC1-driven beta-galactosidase activity. MRG19 disruptant also showed a twofold increase in the rate of oxygen uptake as compared with the wild-type strain. ADH2, CTA1, DLD1, and CYC7 promoters that are active during nonfermentative growth did not show any de-repression of beta-galactosidase activity in the MRG19 disruptant. Western blot analysis indicated that MRG19 is a glucose repressible gene and is expressed in galactose and glycerol plus lactate. Experiments using green fluorescent protein fusion constructs indicate that Mrg19p is localized in the nucleus consistent with the presence of a consensus nuclear localization signal sequence. Based on the above results, we propose that Mrg19p is a regulator of galactose and nonfermentable carbon utilization.

摘要

我们之前报道过,MRG19的多个拷贝在酿酒酵母的野生型菌株中会抑制GAL基因,但在gal80菌株中则不会。在本报告中,我们表明,当酿酒酵母用0.02%而非2.0%的半乳糖诱导时,MRG19的破坏会导致GAL诱导的减少。在gal3背景(该菌株表现出长期适应表型)中破坏MRG19会进一步延迟GAL诱导,支持了其功能仅在低诱导信号下才重要的观点。作为推论,在gal80菌株中破坏MRG19不会降低GAL基因的组成型表达。这些结果表明,MRG19仅在诱导信号较弱时在GAL调节中起作用。与对GAL基因表达的影响不同,MRG19的破坏导致CYC1驱动的β-半乳糖苷酶活性的去抑制。与野生型菌株相比,MRG19破坏株的氧气摄取速率也增加了两倍。在非发酵生长期间活跃的ADH2、CTA1、DLD1和CYC7启动子在MRG19破坏株中未显示出β-半乳糖苷酶活性的任何去抑制。蛋白质免疫印迹分析表明,MRG19是一个可被葡萄糖抑制的基因,在半乳糖以及甘油加乳酸中表达。使用绿色荧光蛋白融合构建体的实验表明,Mrg19p定位于细胞核,这与存在共有核定位信号序列一致。基于上述结果,我们提出Mrg19p是半乳糖和不可发酵碳利用的调节因子。

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