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与鸟苷三磷酸类似物GTPγS复合的鸟嘌呤核苷酸结合蛋白Ras的缓慢构象动力学。

Slow conformational dynamics of the guanine nucleotide-binding protein Ras complexed with the GTP analogue GTPgammaS.

作者信息

Spoerner Michael, Nuehs Andrea, Herrmann Christian, Steiner Guido, Kalbitzer Hans Robert

机构信息

Universität Regensburg, Institut für Biophysik und physikalische Biochemie, Universitätsstrasse 31, Regensburg D-93040, Germany.

出版信息

FEBS J. 2007 Mar;274(6):1419-33. doi: 10.1111/j.1742-4658.2007.05681.x.

Abstract

The guanine nucleotide-binding protein Ras occurs in solution in two different conformational states, state 1 and state 2 with an equilibrium constant K(12) of 2.0, when the GTP analogue guanosine-5'-(beta,gamma-imido)triphosphate or guanosine-5'-(beta,gamma-methyleno)triphosphate is bound to the active centre. State 2 is assumed to represent a strong binding state for effectors with a conformation similar to that found for Ras complexed to effectors. In the other state (state 1), the switch regions of Ras are most probably dynamically disordered. Ras variants that exist predominantly in state 1 show a drastically reduced affinity to effectors. In contrast, Ras(wt) bound to the GTP analogue guanosine-5'-O-(3-thiotriphosphate) (GTPgammaS) leads to (31)P NMR spectra that indicate the prevalence of only one conformational state with K(12) > 10. Titration with the Ras-binding domain of Raf-kinase (Raf-RBD) shows that this state corresponds to effector binding state 2. In the GTPgammaS complex of the effector loop mutants Ras(T35S) and Ras(T35A) two conformational states different to state 2 are detected, which interconvert over a millisecond time scale. Binding studies with Raf-RBD suggest that both mutants exist mainly in low-affinity states 1a and 1b. From line-shape analysis of the spectra measured at various temperatures an activation energy DeltaH(|) (1a1b) of 61 kJ.mol(-1) and an activation entropy DeltaS(|) (1a1b) of 65 J.K(-1).mol(-1) are derived. Isothermal titration calorimetry on Ras bound to the different GTP-analogues shows that the effective affinity K(A) for the Raf-RBD to Ras(T35S) is reduced by a factor of about 20 compared to the wild-type with the strongest reduction observed for the GTPgammaS complex.

摘要

当鸟嘌呤核苷酸结合蛋白Ras与鸟苷-5'-(β,γ-亚氨基)三磷酸或鸟苷-5'-(β,γ-亚甲基)三磷酸等GTP类似物结合到活性中心时,它在溶液中以两种不同的构象状态存在,即状态1和状态2,平衡常数K(12)为2.0。状态2被认为代表效应器的强结合状态,其构象类似于与效应器复合的Ras的构象。在另一种状态(状态1)下,Ras的开关区域很可能是动态无序的。主要以状态1存在的Ras变体对效应器的亲和力大幅降低。相比之下,与鸟苷-5'-O-(3-硫代三磷酸)(GTPγS)结合的Ras(wt)产生的(31)P NMR光谱表明,只有一种构象状态占主导,K(12) > 10。用Raf激酶的Ras结合结构域(Raf-RBD)进行滴定表明,这种状态对应于效应器结合状态2。在效应器环突变体Ras(T35S)和Ras(T35A)的GTPγS复合物中,检测到两种不同于状态2的构象状态,它们在毫秒时间尺度上相互转换。与Raf-RBD的结合研究表明,这两种突变体主要以低亲和力状态1a和1b存在。通过对在不同温度下测量的光谱进行线形分析,得出活化能ΔH(|) (1a1b)为61 kJ·mol(-1),活化熵ΔS(|) (1a1b)为65 J·K(-1)·mol(-1)。对与不同GTP类似物结合的Ras进行等温滴定量热法研究表明,与野生型相比,Raf-RBD对Ras(T35S)的有效亲和力K(A)降低了约20倍,在GTPγS复合物中观察到的降低最为明显。

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