Stang S, Bottorff D, Stone J C
Department of Biochemistry, University of Alberta, Edmonton, Canada.
Mol Cell Biol. 1997 Jun;17(6):3047-55. doi: 10.1128/MCB.17.6.3047.
v-H-ras effector mutants have been assessed for transforming activity and for the ability of the encoded proteins to interact with Raf-1-, B-Raf-, byr2-, ralGDS-, and CDC25-encoded proteins in the yeast two-hybrid system. Transformation was assessed in rat2 cells as well as in a mutant cell line, rv68BUR, that affords a more sensitive transformation assay. Selected mutant Ras proteins were also examined for their ability to interact with an amino-terminal fragment of Raf-1 in vitro. Finally, possible cooperation between different v-H-ras effector mutants and between effector mutants and overexpressed Raf-1 was assessed. Ras transforming activity was shown to correlate best with the ability of the encoded protein to interact with Raf-1. No evidence for cooperation between v-H-ras effector mutants was found. Signaling through the Raf1-MEK-mitogen-activated protein kinase cascade may be the only effector pathway contributing to RAS transformation in these cells.
已在酵母双杂交系统中评估了v-H-ras效应突变体的转化活性以及编码蛋白与Raf-1、B-Raf、byr2、ralGDS和CDC25编码蛋白相互作用的能力。在大鼠2细胞以及一种突变细胞系rv68BUR中评估了转化情况,后者提供了更灵敏的转化检测方法。还在体外检测了选定的突变Ras蛋白与Raf-1氨基末端片段相互作用的能力。最后,评估了不同v-H-ras效应突变体之间以及效应突变体与过表达的Raf-1之间可能存在的协同作用。结果表明,Ras转化活性与编码蛋白与Raf-1相互作用的能力最相关。未发现v-H-ras效应突变体之间存在协同作用的证据。通过Raf1-MEK-丝裂原活化蛋白激酶级联进行的信号传导可能是这些细胞中促成RAS转化的唯一效应途径。