Tong L A, de Vos A M, Milburn M V, Kim S H
Department of Chemistry, University of California, Berkeley 94720.
J Mol Biol. 1991 Feb 5;217(3):503-16. doi: 10.1016/0022-2836(91)90753-s.
The biological functions of ras proteins are controlled by the bound guanine nucleotide GDP or GTP. The GTP-bound conformation is biologically active, and is rapidly deactivated to the GDP-bound conformation through interaction with GAP (GTPase Activating Protein). Most transforming mutants of ras proteins have drastically reduced GTP hydrolysis rates even in the presence of GAP. The crystal structures of the GDP complexes of ras proteins at 2.2 A resolution reveal the detailed interaction between the ras proteins and the GDP molecule. All the currently known transforming mutation positions are clustered around the bound guanine nucleotide molecule. The presumed "effector" region and the GAP recognition region are both highly exposed. No significant structural differences were found between the GDP complexes of normal ras protein and the oncogenic mutant with valine at position 12, except the side-chain of the valine residue. However, comparison with GTP-analog complexes of ras proteins suggests that the valine side-chain may inhibit GTP hydrolysis in two possible ways: (1) interacting directly with the gamma-phosphate and altering its orientation or the conformation of protein residues around the phosphates; and/or (2) preventing either the departure of gamma-phosphate on GTP hydrolysis or the entrance of a nucleophilic group to attack the gamma-phosphate. The structural similarity between ras protein and the bacterial elongation factor Tu suggests that their common structural motif might be conserved for other guanine nucleotide binding proteins.
Ras蛋白的生物学功能受结合的鸟嘌呤核苷酸GDP或GTP的控制。结合GTP的构象具有生物活性,并通过与GAP(GTP酶激活蛋白)相互作用迅速失活为结合GDP的构象。即使在存在GAP的情况下,大多数Ras蛋白的转化突变体的GTP水解速率也大幅降低。Ras蛋白的GDP复合物的晶体结构在2.2埃分辨率下揭示了Ras蛋白与GDP分子之间的详细相互作用。所有目前已知的转化突变位置都聚集在结合的鸟嘌呤核苷酸分子周围。推测的“效应器”区域和GAP识别区域都高度暴露。正常Ras蛋白的GDP复合物与第12位为缬氨酸的致癌突变体之间,除了缬氨酸残基的侧链外,未发现明显的结构差异。然而,与Ras蛋白的GTP类似物复合物的比较表明,缬氨酸侧链可能以两种可能的方式抑制GTP水解:(1)直接与γ-磷酸相互作用并改变其方向或磷酸周围蛋白质残基的构象;和/或(2)阻止γ-磷酸在GTP水解时离去或亲核基团进入攻击γ-磷酸。Ras蛋白与细菌延伸因子Tu之间的结构相似性表明,它们共同的结构基序可能对其他鸟嘌呤核苷酸结合蛋白是保守的。