Overmeyer J H, Wilson A L, Erdman R A, Maltese W A
Weis Center for Research, Pennsylvania State University College of Medicine, Danville 17822-2616, USA.
Mol Biol Cell. 1998 Jan;9(1):223-35. doi: 10.1091/mbc.9.1.223.
Posttranslational modification of Rab proteins by geranylgeranyltransferase type II requires that they first bind to Rab escort protein (REP). Following prenylation, REP is postulated to accompany the modified GTPase to its specific target membrane. REP binds preferentially to Rab proteins that are in the GDP state, but the specific structural domains involved in this interaction have not been defined. In p21 Ras, the alpha2 helix of the Switch 2 domain undergoes a major conformational change upon GTP hydrolysis. Therefore, we hypothesized that the corresponding region in Rab1B might play a key role in the interaction with REP. Introduction of amino acid substitutions (I73N, Y78D, and A81D) into the putative alpha2 helix of Myc-tagged Rab1B prevented prenylation of the recombinant protein in cell-free assays, whereas mutations in the alpha3 and alpha4 helices did not. Additionally, upon transient expression in transfected HEK-293 cells, the Myc-Rab1B alpha2 helix mutants were not efficiently prenylated as determined by incorporation of [3H]mevalonate. Metabolic labeling studies using [32P]orthophosphate indicated that the poor prenylation of the Rab1B alpha2 helix mutants was not directly correlated with major disruptions in guanine nucleotide binding or intrinsic GTPase activity. Finally, gel filtration analysis of cytosolic fractions from 293 cells that were coexpressing T7 epitope-tagged REP with various Myc-Rab1B constructs revealed that mutations in the alpha2 helix of Rab1B prevented the association of nascent (i.e., nonprenylated) Rab1B with REP. These data indicate that the Switch 2 domain of Rab1B is a key structural determinant for REP interaction and that nucleotide-dependent conformational changes in this region are largely responsible for the selective interaction of REP with the GDP-bound form of the Rab substrate.
II型香叶基香叶基转移酶对Rab蛋白的翻译后修饰要求它们首先与Rab护送蛋白(REP)结合。异戊二烯化后,推测REP会陪伴修饰后的GTP酶到达其特定的靶膜。REP优先结合处于GDP状态的Rab蛋白,但尚未确定参与这种相互作用的特定结构域。在p21 Ras中,开关2结构域的α2螺旋在GTP水解时会发生重大构象变化。因此,我们假设Rab1B中的相应区域可能在与REP的相互作用中起关键作用。在Myc标签的Rab1B的假定α2螺旋中引入氨基酸取代(I73N、Y78D和A81D)可在无细胞试验中阻止重组蛋白的异戊二烯化,而α3和α4螺旋中的突变则不会。此外,在转染的HEK-293细胞中瞬时表达时,通过[3H]甲羟戊酸的掺入测定,Myc-Rab1B α2螺旋突变体没有有效地进行异戊二烯化。使用[32P]正磷酸盐的代谢标记研究表明,Rab1B α2螺旋突变体的异戊二烯化不良与鸟嘌呤核苷酸结合或内在GTP酶活性的重大破坏没有直接相关性。最后,对共表达T7表位标签的REP与各种Myc-Rab1B构建体的293细胞胞质部分进行凝胶过滤分析,结果显示Rab1B α2螺旋中的突变阻止了新生(即未异戊二烯化)Rab1B与REP结合。这些数据表明,Rab1B的开关2结构域是REP相互作用的关键结构决定因素,并且该区域中依赖核苷酸的构象变化在很大程度上决定了REP与Rab底物的GDP结合形式的选择性相互作用。