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CAT8, a new zinc cluster-encoding gene necessary for derepression of gluconeogenic enzymes in the yeast Saccharomyces cerevisiae.

机译:CAT8,一种新的锌簇编码基因,对酿酒酵母中糖原异生酶的抑制是必需的。

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摘要

The expression of gluconeogenic fructose-1,6-bisphosphatase (encoded by the FBP1 gene) depends on the carbon source. Analysis of the FBP1 promoter revealed two upstream activating elements, UAS1FBP1 and UAS2FBP1, which confer carbon source-dependent regulation on a heterologous reporter gene. On glucose media neither element was activated, whereas after transfer to ethanol a 100-fold derepression was observed. This gene activation depended on the previously identified derepression genes CAT1 (SNF1) (encoding a protein kinase) and CAT3 (SNF4) (probably encoding a subunit of Cat1p [Snf1p]). Screening for mutations specifically involved in UAS1FBP1 derepression revealed the new recessive derepression mutation cat8. The cat8 mutants also failed to derepress UAS2FBP1, and these mutants were unable to grow on nonfermentable carbon sources. The CAT8 gene encodes a zinc cluster protein related to Saccharomyces cerevisiae Gal4p. Deletion of CAT8 caused a defect in glucose derepression which affected all key gluconeogenic enzymes. Derepression of glucose-repressible invertase and maltase was still normally regulated. A CAT8-lacZ promoter fusion revealed that the CAT8 gene itself is repressed by Cat4p (Mig1p). These results suggest that gluconeogenic genes are derepressed upon binding of Cat8p, whose synthesis depends on the release of Cat4p (Mig1p) from the CAT8 promoter. However, gluconeogenic promoters are still glucose repressed in cat4 mutants, which indicates that in addition to its transcription, the Cat8p protein needs further activation. The observation that multicopy expression of CAT8 reverses the inability of cat1 and cat3 mutants to grow on ethanol indicates that Cat8p might be the substrate of the Cat1p/Cat3p protein kinase.
机译:糖异生果糖-1,6-双磷酸酶(由FBP1基因编码)的表达取决于碳源。 FBP1启动子的分析揭示了两个上游激活元件,UAS1FBP1和UAS2FBP1,它们赋予异源报道基因碳源依赖性调控。在葡萄糖培养基上,两种元素均未激活,而在转移至乙醇后,观察到100倍的抑制。该基因激活取决于先前鉴定的解阻基因CAT1(SNF1)(编码蛋白激酶)和CAT3(SNF4)(可能编码Cat1p [Snf1p]的亚基)。筛选特别涉及UAS1FBP1抑制的突变揭示了新的隐性抑制抑制突变cat8。 cat8突变体也未能抑制UAS2FBP1的抑制,并且这些突变体无法在不可发酵的碳源上生长。 CAT8基因编码与啤酒酵母Gal4p相关的锌簇蛋白。 CAT8的缺失引起葡萄糖阻抑的缺陷,其影响了所有关键的糖异生酶。葡萄糖可抑制的转化酶和麦芽糖酶的抑制仍然是正常调节的。 CAT8-lacZ启动子融合显示,CAT8基因本身被Cat4p(Mig1p)抑制。这些结果表明,与Cat8p结合后,糖异生基因被抑制,Cat8p的合成取决于从CAT8启动子释放Cat4p(Mig1p)。但是,糖原异生启动子在cat4突变体中仍受葡萄糖抑制,这表明除了转录外,Cat8p蛋白还需要进一步激活。 CAT8的多拷贝表达逆转了cat1和cat3突变体无法在乙醇上生长的观察结果,表明Cat8p可能是Cat1p / Cat3p蛋白激酶的底物。

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