Garcia-Saez Isabel, Tcherniuk Sergey, Kozielski Frank
Laboratoire des Moteurs Moléculaires (LMM), Institut de Biologie Structurale (CEA-CNRS-UJF), 41 Rue Jules Horowitz, 38027 Grenoble CEDEX 01, France.
Acta Crystallogr D Biol Crystallogr. 2006 Jul;62(Pt 7):725-33. doi: 10.1107/S0907444906015319. Epub 2006 Jun 20.
The Rab small G-protein family plays important roles in eukaryotes as regulators of vesicle traffic. In Rab proteins, the hydrolysis of GTP to GDP is coupled with association with and dissociation from membranes. Conformational changes related to their different nucleotide states determine their effector specificity. The crystal structure of human neuronal Rab6B was solved in its 'inactive' (with bound MgGDP) and 'active' (MgGTPgammaS-bound) forms to 2.3 and 1.8 A, respectively. Both crystallized in space group P2(1)2(1)2(1), with similar unit-cell parameters, allowing the comparison of both structures without packing artifacts. Conformational changes between the inactive GDP and active GTP-like state are observed mainly in the switch I and switch II regions, confirming their role as a molecular switch. Compared with other Rab proteins, additional changes are observed in the Rab6 subfamily-specific RabSF3 region that might contribute to the specificity of Rab6 for its different effector proteins.
Rab小G蛋白家族作为囊泡运输的调节因子,在真核生物中发挥着重要作用。在Rab蛋白中,GTP水解为GDP与膜的结合和解离相关联。与其不同核苷酸状态相关的构象变化决定了它们的效应器特异性。人神经元Rab6B的晶体结构分别以其“无活性”(结合MgGDP)和“活性”(结合MgGTPγS)形式解析,分辨率分别为2.3 Å和1.8 Å。两者均结晶于空间群P2(1)2(1)2(1),具有相似的晶胞参数,使得两种结构能够在没有堆积假象的情况下进行比较。无活性GDP状态和活性GTP样状态之间的构象变化主要在开关I和开关II区域观察到,证实了它们作为分子开关的作用。与其他Rab蛋白相比,在Rab6亚家族特异性的RabSF3区域观察到额外的变化,这可能有助于Rab6对其不同效应蛋白的特异性。