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HIV-1 Nef的SH3结构域结合功能是与一种PAK相关激酶结合所必需的。

SH3-Domain binding function of HIV-1 Nef is required for association with a PAK-related kinase.

作者信息

Manninen A, Hiipakka M, Vihinen M, Lu W, Mayer B J, Saksela K

机构信息

Institute of Medical Technology, University of Tampere, Tampere, FIN-33101, Finland.

出版信息

Virology. 1998 Oct 25;250(2):273-82. doi: 10.1006/viro.1998.9381.

Abstract

HIV-1 Nef has previously been shown to bind to Src homology-3 (SH3) domains of a subset of Src family tyrosine kinases. In addition, Nef has been reported to coprecipitate with a serine/threonine kinase activity termed NAK (for Nef-associated kinase). The identity of NAK remains uncertain, but it has been suggested to represent a novel member of the p21-activated kinase (PAK) family. We report here that NAK autophosphorylation is increased not only by an activated form of the p21-family GTPase cdc42 but also by a plasma membrane-targeted fragment of the adapter protein Nck, thus providing further evidence that NAK is related to PAKs. A detailed structure-based mutational analysis of Nef revealed that all amino acid changes that inhibited the Nef/Hck-SH3 interaction, as measured by surface-plasmon resonance, also abolished coprecipitation of NAK. As PAK family proteins do not contain SH3 domains, these observations are best explained by a protein complex in which Nef, NAK, and an SH3-protein all contact each other. In addition, a number of conserved amino acids in Nef that are not involved in SH3 binding were also found to be crucial for association with NAK. Molecular modeling suggests that these residues are involved in formation of an adjacent binding surface for NAK or another critical component of the NAK/Nef complex.

摘要

此前已有研究表明,HIV-1 Nef可与Src家族酪氨酸激酶亚群的Src同源3(SH3)结构域结合。此外,有报道称Nef可与一种名为NAK(Nef相关激酶)的丝氨酸/苏氨酸激酶活性共同沉淀。NAK的身份仍不确定,但有人认为它是p21激活激酶(PAK)家族的一个新成员。我们在此报告,NAK的自磷酸化不仅会被p21家族GTP酶cdc42的激活形式增加,还会被衔接蛋白Nck的质膜靶向片段增加,从而进一步证明NAK与PAK相关。基于结构的Nef详细突变分析表明,通过表面等离子体共振测量,所有抑制Nef/Hck-SH3相互作用的氨基酸变化也消除了NAK的共同沉淀。由于PAK家族蛋白不包含SH3结构域,这些观察结果最好用一种蛋白复合物来解释,其中Nef、NAK和一种SH3蛋白相互接触。此外,还发现Nef中一些不参与SH3结合的保守氨基酸对于与NAK的结合也至关重要。分子模型表明,这些残基参与形成NAK或NAK/Nef复合物另一个关键成分的相邻结合表面。

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