Chou J H, Jahn R
Howard Hughes Medical Institute and Departments of Cell Biology and Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06510, USA.
J Biol Chem. 2000 Mar 31;275(13):9433-40. doi: 10.1074/jbc.275.13.9433.
Prenylated Rab GTPases cycle between membrane-bound and soluble forms. Membrane-bound GDP-Rabs interact with GDP dissociation inhibitor (GDI), resulting in the dissociation of a Rab.GDI complex, which in turn serves as a precursor for the membrane re-association of Rabs. We have now characterized the binding of Rab3A to synaptic vesicles in vitro using either purified complexes or rat brain cytosol as source for GDI.Rab3A. Binding of Rab3A results in the immediate release of GDI from the membrane. Furthermore, binding does not require the presence of additional guanine nucleotides (GDP or GTP) or of cytosolic factors. Although nucleotide exchange follows binding, binding is initially reversible, suggesting that binding of GDP-Rab3A and nucleotide exchange are separate and independent events. Comparison with the binding of Rab1B revealed that both Rab proteins bind preferentially to their respective resident membranes although some promiscuity was observable. Binding is saturable and involves a protease-sensitive binding site that is tightly associated with the vesicle membrane.
异戊二烯化的Rab GTP酶在膜结合形式和可溶形式之间循环。膜结合的GDP-Rab与GDP解离抑制剂(GDI)相互作用,导致Rab·GDI复合物解离,这反过来又成为Rab重新与膜结合的前体。我们现在使用纯化的复合物或大鼠脑细胞质作为GDI·Rab3A的来源,在体外表征了Rab3A与突触小泡的结合。Rab3A的结合导致GDI立即从膜上释放。此外,结合不需要额外的鸟嘌呤核苷酸(GDP或GTP)或胞质因子的存在。虽然核苷酸交换在结合之后发生,但结合最初是可逆的,这表明GDP-Rab3A的结合和核苷酸交换是分开且独立的事件。与Rab1B结合的比较表明,尽管可以观察到一些混杂情况,但两种Rab蛋白都优先结合各自的驻留膜。结合是饱和的,涉及一个与囊泡膜紧密相关的蛋白酶敏感结合位点。