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类异戊二烯生物合成的抑制及前体p21的翻译后修饰

Inhibition of isoprenoid biosynthesis and the post-translational modification of pro-p21.

作者信息

Leonard S, Beck L, Sinensky M

机构信息

Eleanor Roosevelt Institute for Cancer Research, Denver, Colorado 80206.

出版信息

J Biol Chem. 1990 Mar 25;265(9):5157-60.

PMID:2180959
Abstract

It has recently been reported that a precursor of p21ras (pro-p21ras) becomes modified by a metabolite of mevalonic acid prior to conversion to mature p21ras. We have examined the effect of blocking isoprenoid biosynthesis on this process. Fluoromevalonate, which inhibits the conversion of pyrophosphomevalonate to isopentenyl pyrophosphate, blocks the incorporation of radioactive mevalonate into pro-p21ras, demonstrating the mevalonate must be converted to an isoprenoid prior to such incorporation. Starvation of CHO-K1 cells for mevalonic acid by treatment with mevinolin, an inhibitor of 3-hydroxy-3-methylglutaryl (HMG)-CoA reductase, or mevalonate deprivation in a mevalonate auxotroph defective in HMG-CoA synthase activity results in the accumulation of pro-p21ras. The precursor, accumulated due to either of these treatments, is converted through an intermediate form to the mature p21ras by incubation of cells with mevalonate. Incubation of cells with 25-hydroxycholesterol, the pleiotropic transcriptional down-regulator of cholesterol biosynthesis does not, however, result in the accumulation of pro-p21ras. This result indicates that in contrast to the regulation of cholesterol biosynthesis in mammalian cells, important regulatory control other than at the level of HMG-CoA reductase is involved in the isoprenoid biosynthesis required for protein isoprenylation.

摘要

最近有报道称,p21ras的前体(pro-p21ras)在转化为成熟p21ras之前会被甲羟戊酸的一种代谢产物修饰。我们研究了阻断类异戊二烯生物合成对这一过程的影响。氟甲羟戊酸可抑制焦磷酸甲羟戊酸向异戊烯基焦磷酸的转化,它能阻断放射性甲羟戊酸掺入pro-p21ras,这表明甲羟戊酸在掺入之前必须先转化为类异戊二烯。用3-羟基-3-甲基戊二酰(HMG)-CoA还原酶抑制剂美伐他汀处理CHO-K1细胞使其缺乏甲羟戊酸,或在HMG-CoA合酶活性有缺陷的甲羟戊酸营养缺陷型细胞中剥夺甲羟戊酸,都会导致pro-p21ras的积累。通过这两种处理方式积累的前体,在细胞与甲羟戊酸一起孵育时会通过一种中间形式转化为成熟的p21ras。然而,用25-羟基胆固醇(胆固醇生物合成的多效性转录下调因子)孵育细胞并不会导致pro-p21ras的积累。这一结果表明,与哺乳动物细胞中胆固醇生物合成的调控不同,蛋白质异戊烯化所需的类异戊二烯生物合成涉及除HMG-CoA还原酶水平之外的重要调控控制。

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