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翻译后修饰的精氨酰化与细胞内蛋白水解作用

Post-translational arginylation and intracellular proteolysis.

作者信息

Bohley P, Kopitz J, Adam G, Rist B, von Appen F, Urban S

机构信息

Physiologisch-chemisches Institut, Eberhard-Karls-Universität, Tübingen, Germany.

出版信息

Biomed Biochim Acta. 1991;50(4-6):343-6.

PMID:1801699
Abstract

Cellular proteins may be designated to fast degradation by their N-terminal amino acids, and especially a N-terminal arginine residue should have an extremely destabilizing effect on cytosol proteins. We investigated the post-translational arginylation of cytosol proteins and especially of ornithine decarboxylase (ODC) by the cytosolic enzyme arginyl transferase by incubation with radioactive L-arginyl-tRNA and isolation of ODC with our monoclonal antibody. Arginylated ODC had a specific radioactivity 8600 times that of the bulk of cytosolic proteins and Edman-degradation of this ODC showed that the post-translational arginylation occurred only at the L-amino-end of the enzyme. The inhibitor of arginyltransferase, L-Glutamyl-L-Valyl-L-Phenylalanine, increased the half-life of ODC in cultured hepatocytes from 39 min to more than 90 min. This post-translational arginylation of ODC and also of other cytosol proteins is reversible. At least 25 different cytosol proteins in addition to ODC can be arginylated in hepatocytes, and at least 15 different proteins can be arginylated in Dictyostelium discoideum. The arginylated proteins are much more rapidly degraded by cellular proteinases, especially by calpains, than those cytosolic proteins which are not arginylated.

摘要

细胞蛋白质可能因其N端氨基酸而被指定快速降解,尤其是N端精氨酸残基对胞质蛋白具有极强的不稳定作用。我们通过与放射性L-精氨酰-tRNA孵育并用我们的单克隆抗体分离鸟氨酸脱羧酶(ODC),研究了胞质酶精氨酰转移酶对胞质蛋白尤其是ODC的翻译后精氨酰化作用。精氨酰化的ODC的比放射性是大部分胞质蛋白的8600倍,对该ODC进行埃德曼降解表明,翻译后精氨酰化仅发生在该酶的L-氨基末端。精氨酰转移酶抑制剂L-谷氨酰-L-缬氨酰-L-苯丙氨酸将培养的肝细胞中ODC的半衰期从39分钟延长至90分钟以上。ODC以及其他胞质蛋白的这种翻译后精氨酰化是可逆的。除ODC外,肝细胞中至少有25种不同的胞质蛋白可被精氨酰化,在盘基网柄菌中至少有15种不同的蛋白可被精氨酰化。与未被精氨酰化的胞质蛋白相比,被精氨酰化的蛋白被细胞蛋白酶,尤其是钙蛋白酶降解得更快。

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