Ricketts M H, Durrheim G A, North H M, van der Merwe M J, Levinson A D
Department of Psychiatry, UMDNJ, Robert Wood Johnson Medical School, Piscataway 08854, USA.
Mol Biol Rep. 1996;23(2):109-17. doi: 10.1007/BF00424436.
Conserved amino-acids of H-ras from residues 25 to 34 were mutated in human H-ras cDNA with a pre-existing valine-12 activating mutation ([V12]p21), and built into SV40-driven expression vectors. The influence of the introduced mutations was initially screened by transfection of Rat-1 cells to score foci of transformed cells. Non-conservative mutations of amino-acids 25 (tryptophan for glutamine), 27 (asparagine for histidine) and 34 (alanine for proline) did not abrogate the transforming potential of [V12]p21. The conservative mutation of phenylalanine-28 to tryptophan ([V12W28]p21) was also still transforming. Significantly, in the absence of the valine-12 activating mutation, tryptophan-28-ras ([W28]p21) was weakly transforming while, in contrast, [V12D28]p21 was unable to transform Rat-1 cells and retarded cell growth. Analysis of the binding and dissociation of GTP and GDP to normal and mutated p21 expressed in Escherichia coli showed that [V12D28]p21 and [D28]p21 do not bind GTP. The dissociation rate of both GTP and GDP bound to [W28]p21 is increased, suggesting a mechanism for its transforming potential in Rat-1 cells. These studies illustrate the importance of phenylalanine-28 in guanine nucleotide binding by p21H-ras. The mutations described could be valuable tools in investigations of cellular signal transduction involving small GTP-binding proteins.
在具有预先存在的缬氨酸 - 12激活突变([V12] p21)的人H - ras cDNA中,对H - ras第25至34位残基的保守氨基酸进行了突变,并构建到SV40驱动的表达载体中。通过转染Rat - 1细胞以对转化细胞的集落进行评分,初步筛选引入突变的影响。第25位氨基酸(谷氨酰胺替换色氨酸)、第27位氨基酸(组氨酸替换天冬酰胺)和第34位氨基酸(脯氨酸替换丙氨酸)的非保守突变并未消除[V12] p21的转化潜能。苯丙氨酸 - 28突变为色氨酸([V12W28] p21)的保守突变也仍具有转化能力。值得注意的是,在没有缬氨酸 - 12激活突变的情况下,色氨酸 - 28 - ras([W28] p21)的转化能力较弱,而相比之下,[V12D28] p21无法转化Rat - 1细胞并抑制细胞生长。对在大肠杆菌中表达的正常和突变型p21与GTP和GDP的结合和解离分析表明,[V12D28] p21和[D28] p21不结合GTP。与[W28] p21结合的GTP和GDP的解离速率均增加,这表明了其在Rat - 1细胞中具有转化潜能的一种机制。这些研究说明了苯丙氨酸 - 28在p21H - ras鸟嘌呤核苷酸结合中的重要性。所描述的这些突变可能是研究涉及小GTP结合蛋白的细胞信号转导的有价值工具。