Verrotti A C, Créchet J B, Di Blasi F, Seidita G, Mirisola M G, Kavounis C, Nastopoulos V, Burderi E, De Vendittis E, Parmeggiani A
Differentiation Programme, European Molecular Biology Laboratory, Heidelberg, Germany.
EMBO J. 1992 Aug;11(8):2855-62. doi: 10.1002/j.1460-2075.1992.tb05353.x.
We have previously shown that a conserved glycine at position 82 of the yeast RAS2 protein is involved in the conversion of RAS proteins from the GDP- to the GTP-bound form. We have now investigated the role of glycine 82 and neighbouring amino acids of the distal switch II region in the physiological mechanism of activation of RAS. We have introduced single and double amino acid substitutions at positions 80-83 of the RAS2 gene, and we have investigated the interaction of the corresponding proteins with a yeast GDP dissociation stimulator (SDC25 C-domain). Using purified RAS proteins, we have found that the SDC25-stimulated conversion of RAS from the GDP-bound inactive state to the GTP-bound active state was severely impaired by amino acid substitutions at positions 80-81. However, the rate and the extent of conversion from the GDP- to the GTP-bound form in the absence of dissociation factor was unaffected. The insensitivity of the mutated proteins to the dissociation factor in vitro was paralleled by an inhibitory effect on growth in vivo. The mutations did not significantly affect the interaction of RAS with adenylyl cyclase. These findings point to residues 80-82 as important determinants of the response of RAS to GDP dissociation factors. This suggests a molecular model for the enhancement of nucleotide release from RAS by such factors.
我们之前已经表明,酵母RAS2蛋白第82位的保守甘氨酸参与了RAS蛋白从结合GDP形式向结合GTP形式的转变。我们现在研究了甘氨酸82以及远端开关II区域相邻氨基酸在RAS激活生理机制中的作用。我们在RAS2基因的第80 - 83位引入了单氨基酸和双氨基酸替换,并研究了相应蛋白质与酵母GDP解离刺激因子(SDC25 C结构域)的相互作用。使用纯化的RAS蛋白,我们发现第80 - 81位的氨基酸替换严重损害了SDC25刺激的RAS从结合GDP的无活性状态向结合GTP的活性状态的转变。然而,在没有解离因子的情况下,从结合GDP形式向结合GTP形式的转变速率和程度不受影响。体外突变蛋白对解离因子的不敏感性与体内对生长的抑制作用平行。这些突变并没有显著影响RAS与腺苷酸环化酶的相互作用。这些发现表明第80 - 82位残基是RAS对GDP解离因子反应的重要决定因素。这提示了一个关于此类因子增强RAS核苷酸释放的分子模型。