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通过C端甲基化反应对真核信号蛋白进行修饰。

Modification of eukaryotic signaling proteins by C-terminal methylation reactions.

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

Pharmacol Ther. 1993 Sep;59(3):281-300. doi: 10.1016/0163-7258(93)90071-k.

Abstract

Eukaryotic polypeptides that are initially synthesized with the C-terminal sequence -Cys-Xaa-Xaa-Xaa, including a variety of signal-transducing proteins, such as small G-proteins, large G-proteins and cGMP phosphodiesterases, can be targeted for a series of sequential post-translational modifications. This processing pathway includes the isoprenylation of the cysteine residue with a farnesyl or geranylgeranyl moiety, followed by proteolysis of the three terminal residues and alpha-carboxyl methyl esterification of the cysteine residue. The potential reversibility of the last step suggests that it may be involved in modulating the function of these proteins. Firstly, methylation may play a role in the activation of cellular peptides or proteins. Secondly, this modification may aid in the membrane attachment of cytosolic precursor proteins. Thirdly, methylation may protect the polypeptide from C-terminal proteolytic degradation once the three terminal amino acid residues are removed. Finally, reversible methylation may directly regulate the function of its target proteins. Therapeutically, inhibitors of C-terminal isoprenylcysteine methylation or demethylation reactions may prove to be useful pharmacological tools as anti-cancer and anti-inflammatory agents.

摘要

最初以C端序列-Cys-Xaa-Xaa-Xaa合成的真核生物多肽,包括多种信号转导蛋白,如小G蛋白、大G蛋白和cGMP磷酸二酯酶,可进行一系列连续的翻译后修饰。该加工途径包括用法尼基或香叶基香叶基部分对半胱氨酸残基进行异戊二烯化,随后对三个末端残基进行蛋白水解,并对半胱氨酸残基进行α-羧基甲基酯化。最后一步的潜在可逆性表明它可能参与调节这些蛋白质的功能。首先,甲基化可能在细胞肽或蛋白质的激活中起作用。其次,这种修饰可能有助于胞质前体蛋白附着于膜上。第三,一旦去除三个末端氨基酸残基,甲基化可能保护多肽免受C端蛋白水解降解。最后,可逆甲基化可能直接调节其靶蛋白的功能。在治疗方面,C端异戊烯基半胱氨酸甲基化或去甲基化反应的抑制剂可能被证明是有用的药理工具,可作为抗癌和抗炎药物。

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