Erickson Jon W, Cerione Richard A
Department of Chemistry and Chemical Biology, Veterinary Medical Center, Cornell University, Ithaca, New York 14853, USA.
Biochemistry. 2004 Feb 3;43(4):837-42. doi: 10.1021/bi036026v.
Rho GTPases act as key regulators of cellular biochemistry by determining the timing, direction, and amplitude of signal transduction in a number of important pathways. The rate of activation of a GTPase-controlled reaction is limited by the rate of GTP binding to the Rho protein, and this, in turn, depends on the rate that GDP dissociates from the GTPase. The latter is controlled by the action of guanine nucleotide exchange factors (GEFs) that catalyze GDP-GTP exchange by increasing the rate of GDP dissociation. Here, the recently reported structural information for Rho GTPase-GEF complexes and the molecular basis for the specificity of their interactions are discussed. Underscoring the importance of regulating the Rho GTPase activation pathway, genetically unrelated proteins have evolved which complement or mimic the Dbl homology-Pleckstrin homology (DH-PH) domain-containing family of proteins in their ability to catalyze GDP-GTP exchange. In particular, the structure of the mammalian Cdc42 protein bound to the SopE protein from Salmonella typhimurium illustrates how two unrelated protein folds are able to carry out guanine nucleotide exchange by a remarkably similar mechanism. It will be interesting to see if this conservation of mechanism extends to a newly recognized class of GEFs related to the DOCK180 family.
Rho GTPases通过确定许多重要信号通路中信号转导的时间、方向和幅度,充当细胞生物化学的关键调节因子。GTPase控制反应的激活速率受GTP与Rho蛋白结合速率的限制,而这又取决于GDP从GTPase上解离的速率。后者受鸟嘌呤核苷酸交换因子(GEF)的作用控制,GEF通过提高GDP解离速率来催化GDP-GTP交换。本文讨论了最近报道的Rho GTPase-GEF复合物的结构信息及其相互作用特异性的分子基础。强调调节Rho GTPase激活途径的重要性,一些遗传上不相关的蛋白质已经进化出来,它们在催化GDP-GTP交换的能力上补充或模拟了含Dbl同源-Pleckstrin同源(DH-PH)结构域的蛋白质家族。特别是,与鼠伤寒沙门氏菌的SopE蛋白结合的哺乳动物Cdc42蛋白的结构说明了两个不相关的蛋白质折叠如何能够通过非常相似的机制进行鸟嘌呤核苷酸交换。看看这种机制的保守性是否扩展到与DOCK180家族相关的新发现的一类GEF中将是很有趣的。