Mott Helen R, Nietlispach Daniel, Hopkins Louise J, Mirey Gladys, Camonis Jacques H, Owen Darerca
Department of Biochemistry, University of Cambridge, 80, Tennis Court Road, Cambridge CB2 1GA, United Kingdom.
J Biol Chem. 2003 May 9;278(19):17053-9. doi: 10.1074/jbc.M300155200. Epub 2003 Mar 6.
The exocyst complex is involved in the final stages of exocytosis, when vesicles are targeted to the plasma membrane and dock. The regulation of exocytosis is vital for a number of processes, for example, cell polarity, embryogenesis, and neuronal growth formation. Regulation of the exocyst complex in mammals was recently shown to be dependent upon binding of the small G protein, Ral, to Sec5, a central component of the exocyst. This interaction is thought to be necessary for anchoring the exocyst to secretory vesicles. We have determined the structure of the Ral-binding domain of Sec5 and shown that it adopts a fold that has not been observed in a G protein effector before. This fold belongs to the immunoglobulin superfamily in a subclass known as IPT domains. We have mapped the Ral binding site on this domain and found that it overlaps with protein-protein interaction sites on other IPT domains but that it is completely different from the G protein-geranyl-geranyl interaction face of the Ig-like domain of the Rho guanine nucleotide dissociation inhibitor. This mapping, along with available site-directed mutagenesis data, allows us to predict how Ral and Sec5 may interact.
外排体复合物参与胞吐作用的最后阶段,即囊泡靶向质膜并对接时。胞吐作用的调节对于许多过程至关重要,例如细胞极性、胚胎发生和神经元生长形成。最近发现,哺乳动物中外排体复合物的调节依赖于小G蛋白Ral与外排体的核心成分Sec5的结合。这种相互作用被认为是将外排体锚定到分泌囊泡所必需的。我们已经确定了Sec5的Ral结合结构域的结构,并表明它采用了一种以前在G蛋白效应器中未观察到的折叠方式。这种折叠属于免疫球蛋白超家族中一个称为IPT结构域的亚类。我们已经在该结构域上绘制了Ral结合位点,发现它与其他IPT结构域上的蛋白质-蛋白质相互作用位点重叠,但与Rho鸟嘌呤核苷酸解离抑制剂的Ig样结构域的G蛋白-香叶基香叶基相互作用面完全不同。这种定位以及现有的定点诱变数据使我们能够预测Ral和Sec5可能的相互作用方式。