Willumsen B M, Papageorge A G, Kung H F, Bekesi E, Robins T, Johnsen M, Vass W C, Lowy D R
Mol Cell Biol. 1986 Jul;6(7):2646-54. doi: 10.1128/mcb.6.7.2646-2654.1986.
We used linker insertion-deletion mutagenesis to study the catalytic domain of the Harvey murine sarcoma virus v-rasH transforming protein, which is closely related to the cellular rasH protein. The mutants displayed a wide range of in vitro biological activity, from those that induced focal transformation of NIH 3T3 cells with approximately the same efficiency as the wild-type v-rasH gene to those that failed to induce any detectable morphologic changes. Correlation of transforming activity with the location of the mutations enabled us to identify three nonoverlapping segments within the catalytic domain that were dispensable for transformation and six other segments that were required for transformation. Segments that were necessary for guanosine nucleotide (GDP) binding corresponded to three of the segments that were essential for transformation; two of the three segments share strong sequence homology with other purine nucleotide-binding proteins. Loss of GDP binding was associated with apparent instability of the protein. Lesions in two of the three other required regions significantly reduced GDP binding, while small lesions in the last required region did not impair GDP binding or membrane localization. We speculate that this latter region interacts with the putative cellular target of ras. The results suggest that transforming ras proteins require membrane localization, guanosine nucleotide binding, and an additional undefined function that may represent interaction with their target.
我们利用接头插入-缺失诱变技术研究了哈维鼠肉瘤病毒v-rasH转化蛋白的催化结构域,该蛋白与细胞rasH蛋白密切相关。这些突变体表现出广泛的体外生物学活性,从那些诱导NIH 3T3细胞灶性转化的效率与野生型v-rasH基因大致相同的突变体,到那些未能诱导任何可检测到的形态变化的突变体。将转化活性与突变位置相关联,使我们能够在催化结构域内鉴定出三个对转化可有可无的不重叠片段,以及其他六个对转化必需的片段。与鸟苷核苷酸(GDP)结合所必需的片段对应于对转化至关重要的三个片段中的三个;这三个片段中的两个与其他嘌呤核苷酸结合蛋白具有很强的序列同源性。GDP结合的丧失与蛋白质的明显不稳定性相关。其他三个必需区域中的两个区域的损伤显著降低了GDP结合,而最后一个必需区域中的小损伤并未损害GDP结合或膜定位。我们推测后一个区域与ras假定的细胞靶点相互作用。结果表明,转化型ras蛋白需要膜定位、鸟苷核苷酸结合以及一种可能代表与它们的靶点相互作用的额外未定义功能。