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酵母线粒体NAD特异性和NADP特异性异柠檬酸脱氢酶的功能与表达

Function and expression of yeast mitochondrial NAD- and NADP-specific isocitrate dehydrogenases.

作者信息

Haselbeck R J, McAlister-Henn L

机构信息

Department of Biological Chemistry, School of Medicine, University of California, Irvine 92717.

出版信息

J Biol Chem. 1993 Jun 5;268(16):12116-22.

PMID:8099357
Abstract

The three isozymes of isocitrate dehydrogenase in Saccharomyces cerevisiae differ in subunit structure, subcellular location, and cofactor specificity. The two mitochondrial isozymes, IDH and IDP1, are NAD- and NADP-specific, respectively. Several lines of evidence presented here confirm the importance of IDH to respiratory processes. Expression of IDH RNA and protein is low with growth on glucose and is elevated with growth on non-fermentable carbon sources, a pattern of expression similar to that seen for other tricarboxylic acid cycle enzymes. In addition, a disruption mutant lacking IDH activity exhibits reduced growth rates on non-fermentable carbon sources, and mitochondria isolated from this mutant are incapable of respiration with added citrate. In contrast, IDP1 expression levels appear to be unresponsive to carbon source, and an IDP1 disruption mutant is not significantly impaired for growth or mitochondrial respiration. These results strongly suggest that IDP1 is incapable of participating in tricarboxylic acid cycle-based respiration despite its mitochondrial location. Analysis of the IDP1 and IDH disruption mutants for glutamate auxotrophy showed that either enzyme can contribute alpha-ketoglutarate for endogenous glutamate synthesis. IDH expression levels were found to be repressed in response to added glutamate during growth on glucose, while IDP1 expression levels remained unchanged. A double mutant lacking both IDP1 and IDH activities proved to be auxotrophic for glutamate during growth on glucose, but was capable of growth independent of added glutamate on non-fermentable carbon sources. These results suggest that the cytosolic NADP-specific IDP2 isozyme may provide alpha-ketoglutarate both for tricarboxylic acid cycle carbon flux and for cytosolic glutamate synthesis during growth on non-fermentable carbon sources in the absence of mitochondrial isocitrate dehydrogenase activity.

摘要

酿酒酵母中的异柠檬酸脱氢酶的三种同工酶在亚基结构、亚细胞定位和辅因子特异性方面存在差异。两种线粒体同工酶,IDH和IDP1,分别对NAD和NADP具有特异性。本文提供的几条证据证实了IDH对呼吸过程的重要性。IDH RNA和蛋白质的表达在以葡萄糖生长时较低,而在以不可发酵碳源生长时升高,这种表达模式与其他三羧酸循环酶相似。此外,缺乏IDH活性的破坏突变体在不可发酵碳源上的生长速率降低,从该突变体中分离出的线粒体在添加柠檬酸盐时无法进行呼吸作用。相比之下,IDP1的表达水平似乎对碳源无反应,并且IDP1破坏突变体在生长或线粒体呼吸方面没有明显受损。这些结果强烈表明,尽管IDP1位于线粒体中,但它无法参与基于三羧酸循环的呼吸作用。对IDP1和IDH破坏突变体的谷氨酸营养缺陷型分析表明,这两种酶都可以为内源性谷氨酸合成提供α-酮戊二酸。发现在以葡萄糖生长期间添加谷氨酸会抑制IDH的表达水平,而IDP1的表达水平保持不变。一个同时缺乏IDP1和IDH活性的双突变体在以葡萄糖生长时被证明是谷氨酸营养缺陷型,但在不可发酵碳源上能够在不添加谷氨酸的情况下生长。这些结果表明,在缺乏线粒体异柠檬酸脱氢酶活性的情况下,胞质NADP特异性IDP2同工酶可能为三羧酸循环碳通量和在以不可发酵碳源生长期间的胞质谷氨酸合成提供α-酮戊二酸。

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