焦磷酸戊烯基对PKCgamma与RACK1结合的影响。

Yu-Hsun Chen, Han-Chung Wang, Ching-Yu Lin, Nin-Nin Chuang
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引用次数: 8

摘要

活化C激酶受体(rack)是一组PKC结合蛋白,已被证明介导PKC的异构体选择功能,并且在PKC同工酶活化时的易位和随后的功能中至关重要。利用同源克隆技术从日本对虾(Penaeus japonicus)中分离到RACK1 cDNA。该虾的肝胰脏cDNA编码318个残基的多肽,其预测氨基酸序列与人类G(β 2)样蛋白同源性为91%。对虾RACK1基因cDNA在体外表达得到一个45 kda的多肽,该多肽对哺乳动物RACK1单克隆抗体具有阳性反应性。对虾RACK1进行生物素化处理,比较香叶香叶基焦磷酸和法尼基焦磷酸对其在抗生物素- igg沉淀中与pkcγ结合的影响。从虾眼和小鼠脑中分离到pkgamma。两种酶制剂均能抑制紫杉醇诱导的微管蛋白聚合。有趣的是,当香叶基焦磷酸或法尼基焦磷酸降低到亚微克水平时,纯化PKCgamma的RACK1募集活性显著增加。对不同物种的RACK1和PKCgamma的激活尤为显著。这一观察结果表明,戊烯基焦磷酸的缺失可能是RACK1将结合从PKC的传统同工酶(cPKC)切换到PKC的新型同工酶(nPKC)的信号。通过与日本虾geranylgeranyl transferase I蛋白的戊烯酰化,进一步揭示了RACK1中一个geranylgeranyl焦磷酸的疏水结合袋。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of prenyl pyrophosphates on the binding of PKCgamma with RACK1.

Receptors for activated C kinase (RACKs) are a group of PKC binding proteins that have been shown to mediate isoform-selective functions of PKC and to be crucial in the translocation and subsequent functioning of the PKC isoenzymes on activation. RACK1 cDNA from the shrimp Penaeus japonicus was isolated by homology cloning. The hepatopancreas cDNA from this shrimp was found to encode a 318-residue polypeptide whose predicted amino acid sequence shared 91% homology with human G(beta2)-like proteins. Expression of the cDNA of shrimp RACK1 in vitro yielded a 45-kDa polypeptide with positive reactivity toward the monoclonal antibodies against RACK1 of mammals. The shrimp RACK1 was biotinylated and used to compare the effects of geranylgeranyl pyrophosphate and farnesyl pyrophosphate on its binding with PKCgamma in anti-biotin-IgG precipitates. PKCgammas were isolated from shrimp eyes and mouse brains. Both enzyme preparations were able to inhibit taxol-induced tubulin polymerization. Interestingly, when either geranylgeranyl pyrophosphate or farnesyl pyrophosphate was reduced to the submicrogram level, the recruitment activity of RACK1 with purified PKCgamma was found to increase dramatically. The activation is especially significant for RACK1 and PKCgamma from different species. The observation implies that the deprivation of prenyl pyrophosphate might function as a signal for RACK1 to switch the binding from the conventional isoenzymes of PKC (cPKC) to the novel isoenzymes of PKC (nPKC). A hydrophobic binding pocket for geranylgeranyl pyrophosphate in RACK1 is further revealed via prenylation with protein geranylgeranyl transferase I of shrimp P. japonicus.

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