Hart M J, Shinjo K, Hall A, Evans T, Cerione R A
Department of Biochemistry, Cellular and Molecular Biology, Cornell University, Ithaca, New York 14853.
J Biol Chem. 1991 Nov 5;266(31):20840-8.
The CDC42Hs protein appears to be an isoform of the ras-related GTP-binding protein G25K and is an apparent human homolog of the Saccharomyces cerevisiae cell-division-cycle protein, CDC42Sc. In this study, we report the identification of a GTPase-activating protein (GAP) for CDC42Hs from human platelets (designated from here on as CDC42Hs-GAP). The CDC42Hs-GAP activity was solubilized from platelet membranes, recovered through successive chromatography steps (the final step being Mono-Q chromatography), and purified approximately 3500-fold. The CDC42Hs-GAP activity appeared to correspond to a polypeptide with an apparent Mr of approximately 25,000. The GTPase activities of the purified human platelet CDC42Hs, the Escherichia coli-recombinant CDC42Hs, and the Spodoptera frugiperda-recombinant GTP-binding proteins are all stimulated by the CDC42Hs-GAP to identical extents, which indicates that the recombinant CDC42Hs proteins are as effective as the native human platelet protein in coupling to the GAP. However, a mutant form of the E. coli-recombinant CDC42Hs which contains a valine residue at position 12 (CDC42HsVal-12) has a significantly reduced intrinsic GTPase activity (relative to the wild type CDC42HsGly-12) which is not stimulated by the CDC42Hs-GAP. The CDC42Hs-GAP also does not stimulate the GTPase activities of the ras or rap GTP-binding proteins; however, it is capable of a weak stimulation of the GTPase activity of mammalian rho. Based on the apparent similarities in the molecular size of the CDC42Hs- and rho-GAPs (i.e. 25-30 kDa), and the cross-reactivity of rho with the CDC42Hs-GAP, it seems likely that the CDC42Hs- and rho-GAPs will constitute a specific subclass of the ras-related GAP superfamily.
CDC42Hs蛋白似乎是与ras相关的GTP结合蛋白G25K的一种同工型,并且明显是酿酒酵母细胞分裂周期蛋白CDC42Sc的人类同源物。在本研究中,我们报告了从人血小板中鉴定出一种针对CDC42Hs的GTP酶激活蛋白(GAP)(从这里起称为CDC42Hs-GAP)。CDC42Hs-GAP活性从血小板膜中溶解出来,通过连续的色谱步骤(最后一步是Mono-Q色谱)回收,并纯化了约3500倍。CDC42Hs-GAP活性似乎对应于一种表观分子量约为25,000的多肽。纯化的人血小板CDC42Hs、大肠杆菌重组CDC42Hs和草地贪夜蛾重组GTP结合蛋白的GTP酶活性均受到CDC42Hs-GAP相同程度的刺激,这表明重组CDC42Hs蛋白在与GAP偶联方面与天然人血小板蛋白一样有效。然而,在大肠杆菌重组CDC42Hs的第12位含有缬氨酸残基的突变形式(CDC42HsVal-12)具有显著降低的内在GTP酶活性(相对于野生型CDC42HsGly-12),且不受CDC42Hs-GAP刺激。CDC42Hs-GAP也不刺激ras或rap GTP结合蛋白的GTP酶活性;然而,它能够对哺乳动物rho的GTP酶活性产生微弱刺激。基于CDC42Hs-GAP和rho-GAP在分子大小上的明显相似性(即25 - 30 kDa)以及rho与CDC42Hs-GAP的交叉反应性,CDC42Hs-GAP和rho-GAP似乎有可能构成ras相关GAP超家族的一个特定亚类。