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异柠檬酸脱氢酶磷酸化循环。主要限速步骤的鉴定。

The isocitrate dehydrogenase phosphorylation cycle. Identification of the primary rate-limiting step.

作者信息

Stueland C S, Gorden K, LaPorte D C

机构信息

Department of Biochemistry, University of Minnesota, Minneapolis 55455.

出版信息

J Biol Chem. 1988 Dec 25;263(36):19475-9.

PMID:3058700
Abstract

In Escherichia coli, the branch point between the Krebs cycle and the glyoxylate bypass is regulated by the phosphorylation of isocitrate dehydrogenase (IDH). Phosphorylation inactivates IDH, forcing isocitrate through the bypass. This bypass is essential for growth on acetate but does not serve a useful function when alternative carbon sources, such as glucose or pyruvate, are also present. When pyruvate or glucose is added to a culture growing on acetate, the cells responded by dephosphorylating IDH and thus inhibiting the flow of isocitrate through the glyoxylate bypass. In an effort to identify the primary rate-limiting step in the response of IDH phosphorylation to alternative carbon sources, we have examined the response rates of congenic strains of E. coli which express different levels of IDH kinase/phosphatase, the bifunctional protein which catalyzes this phosphorylation cycle. The rate of the pyruvate-induced dephosphorylation of IDH was proportional to the level of IDH kinase/phosphatase, indicating that IDH kinase/phosphatase was primarily rate-limiting for dephosphorylation. However, the identity of the primary rate-limiting step appears to depend on the stimulus, since the rate of dephosphorylation of IDH in response to glucose was independent of the level of IDH kinase/phosphatase.

摘要

在大肠杆菌中,三羧酸循环与乙醛酸旁路之间的分支点由异柠檬酸脱氢酶(IDH)的磷酸化作用调控。磷酸化使IDH失活,促使异柠檬酸通过旁路代谢。该旁路对于利用乙酸盐生长至关重要,但当存在葡萄糖或丙酮酸等替代碳源时则无此作用。当向以乙酸盐为碳源生长的培养物中添加丙酮酸或葡萄糖时,细胞会通过使IDH去磷酸化做出反应,从而抑制异柠檬酸通过乙醛酸旁路的流动。为了确定IDH磷酸化对替代碳源做出反应的主要限速步骤,我们检测了表达不同水平IDH激酶/磷酸酶的同基因大肠杆菌菌株的反应速率,该双功能蛋白催化这一磷酸化循环。丙酮酸诱导的IDH去磷酸化速率与IDH激酶/磷酸酶水平成正比,表明IDH激酶/磷酸酶是去磷酸化的主要限速因素。然而,主要限速步骤的特性似乎取决于刺激因素,因为IDH对葡萄糖反应的去磷酸化速率与IDH激酶/磷酸酶水平无关。

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