Fenwick R Bryn, Prasannan Sunil, Campbell Louise J, Nietlispach Daniel, Evetts Katrina A, Camonis Jacques, Mott Helen R, Owen Darerca
Department of Biochemistry, University of Cambridge, UK.
Biochemistry. 2009 Mar 17;48(10):2192-206. doi: 10.1021/bi802129d.
The small G proteins RalA/B have a crucial function in the regulatory network that couples extracellular signals with appropriate cellular responses. RalA/B are an important component of the Ras signaling pathway and, in addition to their role in membrane trafficking, are implicated in the initiation and maintenance of tumorigenic transformation of human cells. RalA and RalB share 85% sequence identity and collaborate in supporting cancer cell proliferation but have markedly different effects. RalA is important in mediating proliferation, while depletion of RalB results in transformed cells undergoing apoptosis. Crystal structures of RalA in the free form and in complex with its effectors, Sec5 and Exo84, have been solved. Here we have determined the solution structure of free RalB bound to the GTP analogue GMPPNP to an RMSD of 0.6 A. We show that, while the overall architecture of RalB is very similar to the crystal structure of RalA, differences exist in the switch regions, which are sensitive to the bound nucleotide. Backbone 15N dynamics suggest that there are four regions of disorder in RalB: the P-loop, switch I, switch II, and the loop comprising residues 116-121, which has a single residue insertion compared to RalA. 31P NMR data and the structure of RalB.GMPPNP show that the switch regions predominantly adopt state 1 (Ras nomenclature) in the unbound form, which in Ras is not competent to bind effectors. In contrast, 31P NMR analysis of RalB.GTP reveals that conformations corresponding to states 1 and 2 are both sampled in solution and that addition of an effector protein only partially stabilizes state 2.
小G蛋白RalA/B在将细胞外信号与适当细胞反应相偶联的调节网络中发挥着关键作用。RalA/B是Ras信号通路的重要组成部分,除了在膜运输中的作用外,还与人细胞致瘤转化的起始和维持有关。RalA和RalB具有85%的序列同一性,并协同支持癌细胞增殖,但具有明显不同的作用。RalA在介导增殖中很重要,而RalB的缺失会导致转化细胞发生凋亡。已经解析了游离形式的RalA及其与效应器Sec5和Exo84复合物的晶体结构。在这里,我们确定了与GTP类似物GMPPNP结合的游离RalB的溶液结构,其均方根偏差为0.6埃。我们表明,虽然RalB的整体结构与RalA的晶体结构非常相似,但在对结合核苷酸敏感的开关区域存在差异。主链15N动力学表明RalB中有四个无序区域:P环、开关I、开关II以及包含残基116 - 121的环,与RalA相比,该环有一个单残基插入。31P NMR数据和RalB.GMPPNP的结构表明,开关区域在未结合形式下主要采用状态1(Ras命名法),在Ras中这种状态无法结合效应器。相比之下,RalB.GTP的31P NMR分析表明,对应于状态1和状态2的构象在溶液中都有采样,并且添加效应器蛋白仅部分稳定状态2。