Sweet R W, Yokoyama S, Kamata T, Feramisco J R, Rosenberg M, Gross M
Nature. 1984;311(5983):273-5. doi: 10.1038/311273a0.
Ha-ras is a member of a multigene family in man which encode highly related proteins of 189 amino acids (p21). In vitro, ras proteins bind GTP, and p21 mutants with treonine at position 59 autophosphorylate at that residue. Mutation (at amino acids 12 or 61) and elevated expression of ras genes result in cell transformation in culture, and are also observed in many types of human tumours. Normal and mutant transforming ras proteins show no differences in localization, lipidation or GTP binding. However, mutations at position 12 in recombinant (Thr 59) p21 molecules were observed to affect autophosphorylation. We have expressed the full-length normal and T24 transforming (Gly----Val at position 12) Ha-ras proteins in Escherichia coli and have purified them to homogeneity (ref. 19 and M.G. et al., in preparation); these proteins bound GTP with approximately molar stoichiometry and with an affinity comparable to partially purified mammalian proteins. Microinjection of the T24 protein into quiescent rodent fibroblasts resulted in a rapid alteration in cell morphology, stimulation of DNA synthesis and cell division; in contrast, little response was observed with the normal protein. We now report that the normal ras protein has an intrinsic GTPase activity, yielding GDP and Pi. In contrast, the T24 transforming protein is reduced 10-fold in this activity. We suggest that this deficiency in GTPase is the probable cause for the transforming phenotype of the T24 protein.
Ha-ras是人类多基因家族的成员,该家族编码由189个氨基酸组成的高度相关的蛋白质(p21)。在体外,ras蛋白结合GTP,并且第59位苏氨酸的p21突变体在该残基处发生自磷酸化。ras基因的突变(第12或61位氨基酸)和表达升高会导致培养中的细胞转化,在许多类型的人类肿瘤中也有观察到。正常和突变的转化型ras蛋白在定位、脂化或GTP结合方面没有差异。然而,观察到重组(苏氨酸59)p21分子中第12位的突变会影响自磷酸化。我们已经在大肠杆菌中表达了全长正常和T24转化型(第12位甘氨酸突变为缬氨酸)Ha-ras蛋白,并将它们纯化至同质状态(参考文献19以及M.G.等人,正在准备中);这些蛋白以近似摩尔化学计量比结合GTP,亲和力与部分纯化的哺乳动物蛋白相当。将T24蛋白显微注射到静止的啮齿动物成纤维细胞中会导致细胞形态迅速改变、刺激DNA合成和细胞分裂;相比之下,正常蛋白几乎没有反应。我们现在报告正常的ras蛋白具有内在的GTP酶活性,产生GDP和Pi。相比之下,T24转化蛋白的这种活性降低了10倍。我们认为这种GTP酶的缺陷可能是T24蛋白转化表型的原因。