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Ha-ras proteins exhibit GTPase activity: point mutations that activate Ha-ras gene products result in decreased GTPase activity.

机译:Ha-ras蛋白表现出GTPase活性:激活Ha-ras基因产物的点突变导致GTPase活性降低。

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摘要

Several ras genes have been expressed at high levels in Escherichia coli and the resultant ras proteins were shown to be functional with respect to their well-known specific, high-affinity, GDP/GTP binding. We were able to detect a weak GTPase activity associated with the purified proteins. The normal cellular ras protein (p21N) exhibits approximately equal to 10 times higher GTPase activity than the "activated" proteins. Even though the turnover rate of the reaction is very low (0.02 mol of GTP hydrolyzed per mol of p21N protein per minute), the reaction appears to be catalytic; one molecule of p21N hydrolyzes more than one molecule of GTP. The GTPase and the GDP binding activities both have been recovered from a Mr 23,000 protein eluted following NaDodSO4/polyacrylamide gel electrophoresis, suggesting that these two activities are associated with the same protein. Mg2+ ions and dithiothreitol are required for GTPase activity and the optimal pH is between 7 and 8. Guanidine X HCl, which is required for solubilizing bacterially expressed ras protein, is strongly inhibitory to GTPase activity at concentrations higher than 0.5 M.
机译:几种ras基因已在大肠杆菌中高水平表达,并且所产生的ras蛋白在其众所周知的特异性,高亲和性GDP / GTP结合方面具有功能。我们能够检测到与纯化蛋白相关的弱GTPase活性。正常细胞ras蛋白(p21N)的GTPase活性约为“活化”蛋白的10倍。即使反应的周转率非常低(每摩尔p21N蛋白每分钟可水解0.02摩尔GTP),该反应仍具有催化作用。一分子的p21N水解多于一分子的GTP。 GTPase和GDP结合活性均已从NaDodSO4 /聚丙烯酰胺凝胶电泳后洗脱的23,000先生蛋白中回收,表明这两种活性与同一蛋白相关。 Mg2 +离子和二硫苏糖醇是GTPase活性所必需的,最佳pH在7至8之间。溶解细菌表达的ras蛋白所需的胍X HCl在浓度高于0.5 M时强烈抑制GTPase活性。

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