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用于控制氨基酸生物合成的转录因子GCN4也调节硫辛酰胺脱氢酶基因的表达。

Transcription factor GCN4 for control of amino acid biosynthesis also regulates the expression of the gene for lipoamide dehydrogenase.

作者信息

Zaman Z, Bowman S B, Kornfeld G D, Brown A J, Dawes I W

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, King's Buildings, Edinburgh EH9 3JR, UK.

出版信息

Biochem J. 1999 Jun 15;340 ( Pt 3)(Pt 3):855-62.

Abstract

The yeast LPD1 gene encoding lipoamide dehydrogenase is subject to the general control of amino acid biosynthesis mediated by the GCN4 transcription factor. This is striking in that it demonstrates that GCN4-mediated regulation extends much farther upstream than simply to the direct pathways for amino acid and purine biosynthesis. In yeast, lipoamide dehydrogenase functions in at least three multienzyme complexes: pyruvate dehydrogenase and 2-oxoglutarate dehydrogenase (which function in the entry of pyruvate into, and metabolism via, the citric acid cycle) and glycine decarboxylase. When wild-type cells were shifted from growth on amino acid-rich to amino acid-deficient medium, the expression of lipoamide dehydrogenase was induced approx. 2-fold. In a similar experiment no such induction was observed in isogenic gcn4 mutant cells. Northern analysis indicated that amino acid starvation affected levels of the LPD1 transcript. In the upstream region of LPD1 are three matches to the consensus for control mediated by GCN4. Directed mutagenesis of each site, and of all combinations of sites, suggests that only one site might be important for the general control response under the conditions tested. Gel-retardation analysis with GCN4 protein synthesized in vitro has indicated that GCN4 can bind in vitro to at least two of the consensus motifs.

摘要

编码硫辛酰胺脱氢酶的酵母LPD1基因受GCN4转录因子介导的氨基酸生物合成的一般调控。这一点很引人注目,因为它表明GCN4介导的调控比简单地延伸到氨基酸和嘌呤生物合成的直接途径要上游得多。在酵母中,硫辛酰胺脱氢酶至少在三种多酶复合物中起作用:丙酮酸脱氢酶和2-氧代戊二酸脱氢酶(它们在丙酮酸进入柠檬酸循环并通过其代谢过程中起作用)以及甘氨酸脱羧酶。当野生型细胞从富含氨基酸的培养基转移到缺乏氨基酸的培养基上生长时,硫辛酰胺脱氢酶的表达被诱导了约2倍。在类似的实验中,在同基因的gcn4突变细胞中未观察到这种诱导。Northern分析表明氨基酸饥饿影响LPD1转录本的水平。在LPD1的上游区域有三个与GCN4介导的调控一致序列的匹配。对每个位点以及所有位点组合进行定向诱变表明,在所测试的条件下,可能只有一个位点对一般调控反应很重要。用体外合成的GCN4蛋白进行凝胶阻滞分析表明,GCN4可以在体外与至少两个一致基序结合。

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