Rittinger K, Walker P A, Eccleston J F, Nurmahomed K, Owen D, Laue E, Gamblin S J, Smerdon S J
National Institute for Medical Research, London, UK.
Nature. 1997 Aug 14;388(6643):693-7. doi: 10.1038/41805.
Small G proteins transduce signals from plasma-membrane receptors to control a wide range of cellular functions. These proteins are clustered into distinct families but all act as molecular switches, active in their GTP-bound form but inactive when GDP-bound. The Rho family of G proteins, which includes Cdc42Hs, activate effectors involved in the regulation of cytoskeleton formation, cell proliferation and the JNK signalling pathway. G proteins generally have a low intrinsic GTPase hydrolytic activity but there are family-specific groups of GTPase-activating proteins (GAPs) that enhance the rate of GTP hydrolysis by up to 10(5) times. We report here the crystal structure of Cdc42Hs, with the non-hydrolysable GTP analogue GMPPNP, in complex with the GAP domain of p50rhoGAP at 2.7A resolution. In the complex Cdc42Hs interacts, mainly through its switch I and II regions, with a shallow pocket on rhoGAP which is lined with conserved residues. Arg 85 of rhoGAP interacts with the P-loop of Cdc42Hs, but from biochemical data and by analogy with the G-protein subunit G(i alpha1), we propose that it adopts a different conformation during the catalytic cycle which enables it to stabilize the transition state of the GTP-hydrolysis reaction.
小G蛋白将来自质膜受体的信号进行转导,以控制广泛的细胞功能。这些蛋白被分为不同的家族,但都作为分子开关发挥作用,以其结合GTP的形式处于激活状态,而结合GDP时则无活性。G蛋白的Rho家族,包括Cdc42Hs,激活参与细胞骨架形成调控、细胞增殖和JNK信号通路的效应器。G蛋白通常具有较低的内在GTPase水解活性,但存在家族特异性的GTPase激活蛋白(GAPs)组,其可将GTP水解速率提高多达10^5倍。我们在此报告了Cdc42Hs与不可水解的GTP类似物GMPPNP结合,并与p50rhoGAP的GAP结构域形成复合物的晶体结构,分辨率为2.7埃。在复合物中,Cdc42Hs主要通过其开关I和II区域,与rhoGAP上一个由保守残基构成的浅口袋相互作用。rhoGAP的精氨酸85与Cdc42Hs的P环相互作用,但根据生化数据并与G蛋白亚基G(i alpha1)进行类比,我们提出它在催化循环过程中采用不同的构象,这使其能够稳定GTP水解反应的过渡态。