首页> 美国卫生研究院文献>Journal of Bacteriology >Extragenic suppressors of yeast glucose derepression mutants leading to constitutive synthesis of several glucose-repressible enzymes.
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Extragenic suppressors of yeast glucose derepression mutants leading to constitutive synthesis of several glucose-repressible enzymes.

机译:酵母葡萄糖减阻突变体的外源抑制因子导致几种葡萄糖可抑制酶的组成合成。

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摘要

Saccharomyces cerevisiae regulatory genes CAT1 and CAT3 constitute a positive control circuit necessary for derepression of gluconeogenic and disaccharide-utilizing enzymes. Mutations within these genes are epistatic to hxk2 and hex2, which cause defects in glucose repression. cat1 and cat3 mutants are unable to grow in the presence of nonfermentable carbon sources or maltose. Stable gene disruptions were constructed inside these genes, and the resulting growth deficiencies were used for selecting epistatic mutations. The revertants obtained were tested for glucose repression, and those showing altered regulatory properties were further investigated. Most revertants belonged to a single complementation group called cat4. This recessive mutation caused a defect in glucose repression of invertase, maltase, and iso-1-cytochrome c. Additionally, hexokinase activity was increased. Gluconeogenic enzymes are still normally repressible in cat4 mutants. The occurrence of recombination of cat1::HIS3 and cat3::LEU2 with some cat4 alleles allowed significant growth in the presence of ethanol, which could be attributed to a partial derepression of gluconeogenic enzymes. The cat4 complementation group was tested for allelism with hxk2, hex2, cat80, cid1, cyc8, and tup1 mutations, which were previously described as affecting glucose repression. Allelism tests and tetrad analysis clearly proved that the cat4 complementation group is a new class of mutant alleles affecting carbon source-dependent gene expression.
机译:酿酒酵母调节基因CAT1和CAT3构成了抑制生糖酶和利用二糖的酶所必需的阳性控制电路。这些基因中的突变对hxk2和hex2具有上位性,从而导致葡萄糖阻遏缺陷。在不可发酵的碳源或麦芽糖的存在下,cat1和cat3突变体无法生长。在这些基因内部构建了稳定的基因破坏,并且将由此产生的生长缺陷用于选择上位性突变。测试所获得的还原剂的葡萄糖抑制,并进一步研究那些显示出改变的调节特性的还原剂。大多数回复子属于称为cat4的单个互补组。这种隐性突变导致转化酶,麦芽糖酶和异-1-细胞色素c的葡萄糖阻遏缺陷。另外,己糖激酶活性增加。葡萄糖生成酶通常在cat4突变体中仍可被抑制。 cat1 :: HIS3和cat3 :: LEU2与一些cat4等位基因的重组发生使乙醇存在下可显着生长,这可能归因于糖原异生酶的部分抑制。测试了cat4互补组与hxk2,hex2,cat80,cid1,cyc8和tup1突变的等位基因,这些突变先前被描述为影响葡萄糖抑制。等位基因测试和tetrad分析清楚地证明,cat4互补基团是一类影响碳源依赖性基因表达的新型突变等位基因。

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