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对Arf1*GTP/Arf GAP界面的突变分析揭示了一种选择性影响Arf GAP ASAP1的Arf1突变体。

Mutational analysis of the Arf1*GTP/Arf GAP interface reveals an Arf1 mutant that selectively affects the Arf GAP ASAP1.

作者信息

Luo Ruibai, Jacques Kerry, Ahvazi Bijan, Stauffer Stacey, Premont Richard T, Randazzo Paul A

机构信息

Laboratory of Cellular Oncology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Curr Biol. 2005 Dec 6;15(23):2164-9. doi: 10.1016/j.cub.2005.10.065.

Abstract

Arf1 is a GTP binding protein that functions at a number of cellular sites to control membrane traffic and actin remodeling. Arf1 is regulated by site-specific GTPase-activating proteins (GAPs). The combined results of crystallographic and biochemical studies have led to the proposal that Arf1 GAPs differ in the specific interface formed with Arf1. To test this hypothesis, we have used mutagenesis to examine the interaction of three Arf GAPs (ASAP1, AGAP1, and ArfGAP1) with switch 1, switch 2, and alpha helix3 of Arf1. The GAPs were similar in being affected by mutations in switch 1 and 2. However, effects of a mutation within alpha helix3 and specific mutations within switch 1 and 2 differed among the GAPs. The largest differences were observed with a change of isoleucine 46 to aspartate ([I46D]Arf1), which reduced ASAP1-induced catalysis by approximately 10,000-fold but had a 3-fold effect on AGAP1. The reduction was due to an isolated effect on the catalytic rate, k(cat). In vivo [I46D]Arf1 had no detectable effect on the Golgi apparatus but, instead, functioned as a constitutively active mutant in the cell periphery, affecting the localization of ASAP1 and paxillin. Based on our results, we conclude that the contribution of specific residues within switch 1 of Arf to binding and achieving a transition state toward GTP hydrolysis differs among Arf GAPs.

摘要

Arf1是一种GTP结合蛋白,在多个细胞位点发挥作用,以控制膜运输和肌动蛋白重塑。Arf1受位点特异性GTP酶激活蛋白(GAPs)的调节。晶体学和生化研究的综合结果表明,Arf1 GAPs与Arf1形成的特定界面不同。为了验证这一假设,我们利用诱变技术研究了三种Arf GAPs(ASAP1、AGAP1和ArfGAP1)与Arf1的开关1、开关2和α螺旋3的相互作用。这些GAPs在受开关1和2突变的影响方面相似。然而,α螺旋3内的一个突变以及开关1和2内的特定突变对不同GAPs的影响有所不同。异亮氨酸46突变为天冬氨酸([I46D]Arf1)时观察到最大差异,这使ASAP1诱导的催化作用降低了约10000倍,但对AGAP1的影响为3倍。这种降低是由于对催化速率k(cat)的单独影响。在体内,[I46D]Arf1对高尔基体没有可检测到的影响,相反,它在细胞周边作为一种组成型活性突变体发挥作用,影响ASAP1和桩蛋白的定位。根据我们的结果,我们得出结论,Arf开关1内特定残基对结合以及实现向GTP水解过渡态的贡献在不同Arf GAPs之间存在差异。

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