首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Critical Roles of Interactions among Switch I-preceding Residues and between Switch II and Its Neighboring α-Helix in Conformational Dynamics of the GTP-bound Ras Family Small GTPases
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Critical Roles of Interactions among Switch I-preceding Residues and between Switch II and Its Neighboring α-Helix in Conformational Dynamics of the GTP-bound Ras Family Small GTPases

机译:在开关I之前的残基之间以及开关II及其附近的α-螺旋之间的相互作用在GTP结合的Ras家族小GTP酶的构象动力学中的关键作用

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摘要

GTP-bound forms of Ras family small GTPases exhibit dynamic equilibrium between two interconverting conformations, “inactive” state 1 and “active” state 2. A great variation exists in their state distribution; H-Ras mainly adopts state 2, whereas M-Ras predominantly adopts state 1. Our previous studies based on comparison of crystal structures representing state 1 and state 2 revealed the importance of the hydrogen-bonding interactions of two flexible effector-interacting regions, switch I and switch II, with the γ-phosphate of GTP in establishing state 2 conformation. However, failure to obtain both state structures from a single protein hampered further analysis of state transition mechanisms. Here, we succeed in solving two crystal structures corresponding to state 1 and state 2 from a single Ras polypeptide, M-RasD41E, carrying an H-Ras-type substitution in residue 41, immediately preceding switch I, in complex with guanosine 5′-(β,γ-imido)triphosphate. Comparison among the two structures and other state 1 and state 2 structures of H-Ras/M-Ras reveal two new structural features playing critical roles in state dynamics; interaction of residues 31/41 (H-Ras/M-Ras) with residues 29/39 and 30/40, which induces a conformational change of switch I favoring its interaction with the γ-phosphate, and the hydrogen-bonding interaction of switch II with its neighboring α-helix, α3-helix, which induces a conformational change of switch II favoring its interaction with the γ-phosphate. The importance of the latter interaction is proved by mutational analyses of the residues involved in hydrogen bonding. These results define the two novel functional regions playing critical roles during state transition.
机译:Ras家族小GTP酶的GTP结合形式在两个相互转化的构象(“非活性”状态1和“活性”状态2)之间表现出动态平衡。 H-Ras主要采用状态2,而M-Ras主要采用状态1。我们先前基于代表状态1和状态2的晶体结构比较的研究表明,两个柔性效应子相互作用区域氢键相互作用的重要性,即开关I和开关II,其中GTP的γ-磷酸盐处于状态2构象。然而,无法从单一蛋白质获得两种状态结构阻碍了状态转换机制的进一步分析。在这里,我们成功地从单一Ras多肽M-RasD41E解析了与状态1和状态2相对应的两个晶体结构,该M-RasD41E在紧邻开关I的残基41中带有H-Ras型取代,与鸟苷5'- (β,γ-亚氨基)三磷酸酯。 H-Ras / M-Ras的两个结构以及其他状态1和状态2结构之间的比较揭示了两个新的结构特征,它们在状态动力学中起着至关重要的作用。残基31/41(H-Ras / M-Ras)与残基29/39和30/40的相互作用,诱导开关I的构象变化,促进其与γ-磷酸的相互作用,以及开关的氢键相互作用II具有与其相邻的α-螺旋α3-螺旋,可诱导开关II的构象变化,有利于其与γ-磷酸盐的相互作用。后一种相互作用的重要性已通过对参与氢键键合的残基进行突变分析而得到证明。这些结果定义了两个新的功能区域,在状态转换过程中起着至关重要的作用。

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