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酿酒酵母中异戊二烯化蛋白的成熟。多种活性在体外催化从法尼基化底物上切割三个羧基末端氨基酸。

Maturation of isoprenylated proteins in Saccharomyces cerevisiae. Multiple activities catalyze the cleavage of the three carboxyl-terminal amino acids from farnesylated substrates in vitro.

作者信息

Hrycyna C A, Clarke S

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles 90024-1569.

出版信息

J Biol Chem. 1992 May 25;267(15):10457-64.

PMID:1587828
Abstract

Eukaryotic polypeptides containing COOH-terminal-CXXX sequences can be posttranslationally modified by isoprenylation of the cysteine residue via a thioether linkage, proteolytic removal of the three terminal amino acids, and alpha-carboxyl methylation of the cysteine residue. Through the development of an indirect coupled assay, we have identified three in vitro activities in the yeast Saccharomyces cerevisiae that can catalyze the proteolytic cleavage of the three COOH-terminal amino acids of the synthetic peptide substrate N-acetyl-KSKTK[S-farnesyl-Cys]VIM. One of these is the vacuolar protease carboxypeptidase Y. Using a mutant strain deficient in this enzyme, we find evidence for an additional soluble activity as well as for a membrane-associated activity. These latter activities are candidates for roles in the physiological processing of isoprenylated protein precursors. They are both insensitive to inhibitors of serine and aspartyl proteinases but are sensitive to sulfhydryl reagents and 0.5 mM ZnCl2. The soluble activity appears to be a metalloenzyme, inhibitable by 2 mM o-phenanthroline but not by 1 mM N-ethylmaleimide, whereas the membrane-associated enzyme is inhibitable by 1 mM N-ethylmaleimide but not 2 mM o-phenanthroline. We show that the membrane-bound protease is not an activity of the membrane-bound methyltransferase, because protease activity is observed in membrane preparations that lack the STE14-encoded methyltransferase. The soluble activity appears to be a novel carboxypeptidase of approximately 110 kDa that catalyzes a processive removal of amino acids from the COOH terminus from both the farnesylated and non-farnesylated substrate, but not from three other unrelated peptides. Finally, we find no evidence for non-vacuolar membrane or soluble activities that catalyze the ester hydrolysis of N-acetyl-S-farnesyl-L-cysteine methyl ester.

摘要

含有COOH末端-CXXX序列的真核生物多肽可在翻译后通过半胱氨酸残基的异戊二烯化(经由硫醚键)、蛋白水解去除三个末端氨基酸以及半胱氨酸残基的α-羧甲基化进行修饰。通过开发一种间接偶联测定法,我们在酿酒酵母中鉴定出三种体外活性,它们可催化合成肽底物N-乙酰-KSKTK[S-法尼基半胱氨酸]VIM的三个COOH末端氨基酸的蛋白水解切割。其中之一是液泡蛋白酶羧肽酶Y。使用缺乏该酶的突变菌株,我们发现了另外一种可溶性活性以及一种膜相关活性的证据。后两种活性可能参与异戊二烯化蛋白前体的生理加工过程。它们对丝氨酸和天冬氨酸蛋白酶抑制剂均不敏感,但对巯基试剂和0.5 mM ZnCl2敏感。可溶性活性似乎是一种金属酶,可被2 mM邻菲啰啉抑制,但不被1 mM N-乙基马来酰亚胺抑制,而膜相关酶可被1 mM N-乙基马来酰亚胺抑制,但不被2 mM邻菲啰啉抑制。我们表明膜结合蛋白酶不是膜结合甲基转移酶的活性,因为在缺乏STE14编码的甲基转移酶的膜制剂中观察到了蛋白酶活性。可溶性活性似乎是一种约110 kDa的新型羧肽酶,它可催化从法尼基化和非法尼基化底物的COOH末端进行连续的氨基酸去除,但不能从其他三种不相关的肽中去除。最后,我们没有发现催化N-乙酰-S-法尼基-L-半胱氨酸甲酯酯水解的非液泡膜或可溶性活性的证据。

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