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Kinetic analysis by fluorescence of the interaction between Ras and the catalytic domain of the guanine nucleotide exchange factor Cdc25(Mm)

机译:通过荧光动力学分析Ras与鸟嘌呤核苷酸交换因子Cdc25(Mm)催化域之间的相互作用

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Guanine nucleotide exchange factors (GEFs) activate Ras proteins by stimulating the exchange of GTP for GDP in a multistep mechanism which involves binary and ternary complexes between Ras, guanine nucleotide, and GEF. We present fluorescence measurements to define the kinetic constants that characterize the interactions between Ras, GEF, and nucleotides, similar to the characterization of the action of RCC1 on Ran [Klebe et al. (1995) Biochemistry 34, 12543-12552]. The dissociation constant for the binary complex between nucleotide free Ras and the catalytic domain of mouse Cdc25, Cdc25(Mm285), was 4.6 nM, i.e., a 500-fold lower affinity than the Ras GDP interaction. The affinities defining the ternary complex Ras . nucleotide . Cdc25(Mm285) are several orders of magnitude lower. The maximum acceleration by CdC25(Mm285) of the GDP dissociation from Ras was more than 10(5)-fold. Kinetic measurements of the association of nucleotide to nucleotide-free Ras and to the binary complex Ras CdC25(Mm285) show that these reactions an practically identical: a fast binding step is followed by a reaction of the first order which becomes rate limiting at high nucleotide concentrations. The second reaction is thought to be a conformational change from a low-to a high-affinity nucleotide binding conformation in Ras. Taking into consideration all experimental data, the reverse isomerization reaction from a high-to a low-affinity binding conformation in the ternary complex Ras . GDP . Cdc25(Mm285) is postulated to be the rate-limiting step of the GEF-catalyzed exchange. Furthermore, we demonstrate that the disruption of the Mg2+-binding site is not the only factor in the mechanism of GEF-catalyzed nucleotide exchange on Ras. [References: 66]
机译:鸟嘌呤核苷酸交换因子(GEF)通过刺激GTP与GDP的交换以多步机制激活Ras蛋白,该机制涉及Ras,鸟嘌呤核苷酸和GEF之间的二元和三元复合物。我们提出了荧光测量来定义表征Ras,GEF和核苷酸之间相互作用的动力学常数,类似于RCC1对Ran的作用表征[Klebe等。 (1995)Biochemistry 34,12543-12552]。无核苷酸的Ras与小鼠Cdc25的催化结构域Cdc25(Mm285)之间的二元复合物的解离常数为4.6 nM,即比Ras GDP相互作用低500倍的亲和力。定义三元复数Ras的相似性。核苷酸。 Cdc25(Mm285)低几个数量级。 CdC25(Mm285)对Ras产生的GDP解离的最大加速度是10(5)倍以上。核苷酸与无核苷酸的Ras以及与二元复合物Ras CdC25(Mm285)缔合的动力学测量结果表明,这些反应实际上是相同的:快速结合步骤后是一级反应,该反应在高核苷酸下成为速率限制浓度。第二反应被认为是Ras中从低亲和力至高亲和力的核苷酸结合构象的构象变化。考虑到所有实验数据,三元络合物Ras中从高亲和力至低亲和力结合构象的反向异构化反应。 GDP。假定Cdc25(Mm285)是GEF催化交换的限速步骤。此外,我们证明,Mg2 +结合位点的破坏不是GES催化Ras上核苷酸交换机制的唯一因素。 [参考:66]

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