Thomä N H, Iakovenko A, Goody R S, Alexandrov K
Department of Physical Biochemistry, Max-Planck-Institute for Molecular Physiology, Otto-Hahn-Strasse 11, 44227 Dortmund, Germany.
J Biol Chem. 2001 Dec 28;276(52):48637-43. doi: 10.1074/jbc.M108241200. Epub 2001 Oct 23.
Rab geranylgeranyltransferase (RabGGTase or GGTase-II) catalyzes the post-translational prenylation of Rab proteins. Rab proteins are recognized as substrates only when they are complexed to Rab Escort Protein (REP). The classical model of prenylation complex assembly assumes initial formation of the Rab.REP binary complex, which subsequently binds to RabGGTase loaded with the isoprenoid donor geranylgeranyl pyrophosphate (GGpp). We demonstrate here that REP-1 can also associate with RabGGTase in the absence of Rab protein and that this interaction is dramatically strengthened by the presence of phosphoisoprenoids such as GGpp. The GGpp-dependent interaction between RabGGTase and REP-1 was observed using affinity precipitations and gel filtration and was quantitated on the basis of fluorescence assays. In the presence of GGpp, REP-1 binds to RabGGTase with a K(d) value of approximately 10 nm, while in its absence the affinity between the two proteins is in the micromolar range. We further demonstrate that binding of Rab7 to the RabGGTase.GGpp.REP-1 complex occurs without prior dissociation of REP-1. Analysis of binding and prenylation rate constants indicate that the RabGGTase.GGpp.REP-1 complex can function as a kinetically competent intermediate of the prenylation reaction. We conclude that, depending on the prevailing concentrations, binding of REP-1 to RabGGTase in the presence of GGpp may serve as an alternative pathway for the assembly of the prenylation machinery in vivo. Implications of these findings for the role of REP-1 in the prenylation reaction are discussed.
Rab geranylgeranyl转移酶(RabGGTase或GGTase-II)催化Rab蛋白的翻译后异戊二烯化修饰。Rab蛋白只有在与Rab护送蛋白(REP)形成复合物时才被识别为底物。异戊二烯化复合物组装的经典模型假定首先形成Rab.REP二元复合物,随后该复合物与负载有类异戊二烯供体香叶基香叶基焦磷酸(GGpp)的RabGGTase结合。我们在此证明,在没有Rab蛋白的情况下,REP-1也能与RabGGTase结合,并且磷酸类异戊二烯如GGpp的存在会显著增强这种相互作用。通过亲和沉淀和凝胶过滤观察到RabGGTase与REP-1之间依赖于GGpp的相互作用,并基于荧光测定对其进行了定量。在有GGpp存在的情况下,REP-1以约10 nM的K(d)值与RabGGTase结合,而在没有GGpp的情况下,这两种蛋白之间的亲和力处于微摩尔范围。我们进一步证明,Rab7与RabGGTase.GGpp.REP-1复合物的结合在REP-1没有预先解离的情况下即可发生。结合速率常数和异戊二烯化速率常数的分析表明,RabGGTase.GGpp.REP-1复合物可作为异戊二烯化反应的动力学活性中间体发挥作用。我们得出结论,根据当时的浓度,在GGpp存在的情况下REP-1与RabGGTase的结合可能是体内异戊二烯化机制组装的另一条途径。讨论了这些发现对REP-1在异戊二烯化反应中作用的影响。