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首页> 外文期刊>Journal of Protein Chemistry >Biochemical characteristics of guanine nucleotide binding protein alpha-subunit recombinant protein and three mutants: investigation of a domain motion involved in GDP-GTP exchange.
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Biochemical characteristics of guanine nucleotide binding protein alpha-subunit recombinant protein and three mutants: investigation of a domain motion involved in GDP-GTP exchange.

机译:鸟嘌呤核苷酸结合蛋白α-亚基重组蛋白和三个突变体的生化特征:参与GDP-GTP交换的域运动的研究。

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摘要

Our previous studies using molecular dynamics have shown a hinge bending motion between the helical and the GTPase domains of GalphaT (Mello et al., 1998). The hypothesis that this motion is allowed by residues Gly56 and Gly179 and that this motion may affect the ligand exchange was tested in this work. Mutations of Gly 56 were carried out and the mutant proteins were expressed in Sf9 cells using the Baculovirus expression system. The recombinant proteins were purified using Ni-NTA affinity chromatography. The results for the (GDP/GTP) exchange assays showed that G56S and double mutants (D55G/G56S) proteins differ significantly from the wild type and D55G mutant forms. The Kd values for GTPgammaS binding of those mutants have decreased by approximately 10-fold. No difference in the GTPase activity was detected for the mutants. Thus, the biochemical results obtained support the conclusions of the computational studies.
机译:我们以前使用分子动力学进行的研究表明,GalphaT的螺旋结构域和GTPase结构域之间存在铰链弯曲运动(Mello等,1998)。在这项工作中测试了以下假设:残基Gly56和Gly179允许该运动,并且该运动可能影响配体交换。使用杆状病毒表达系统进行Gly 56突变,并在Sf9细胞中表达突变蛋白。使用Ni-NTA亲和层析纯化重组蛋白。 (GDP / GTP)交换分析的结果表明,G56S和双重突变体(D55G / G56S)蛋白与野生型和D55G突变体形式存在显着差异。这些突变体与GTPgammaS结合的Kd值降低了约10倍。对于突变体,未检测到GTP酶活性的差异。因此,获得的生化结果支持了计算研究的结论。

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