Gracheva Elena O, Hadwiger Gayla, Nonet Michael L, Richmond Janet E
Department of Biological Sciences, University of Illinois at Chicago, 840 West Taylor St., Chicago, IL 60607, United States.
Neurosci Lett. 2008 Oct 24;444(2):137-42. doi: 10.1016/j.neulet.2008.08.026. Epub 2008 Aug 14.
Rim is a multi-domain, active zone protein that regulates exocytosis and is implicated in vesicle priming and presynaptic plasticity. We recently demonstrated that synaptic defects associated with loss of Caenorhabditis elegans Rim (termed UNC-10) are accompanied by a reduction in docked vesicles adjacent to the presynaptic density. Since Rim is known to interact with the vesicle-associated GTPase Rab3A, here we asked whether UNC-10-dependent recruitment of synaptic vesicles to the presynaptic density was through an UNC-10/Rab-3 interaction. We first established that C. elegans Rab3 (termed RAB-3) in its GTP but not GDP-bound state interacts with UNC-10. We then demonstrated by EM analysis that rab-3 mutant synapses exhibit the same vesicle-targeting defect as unc-10 mutants. Furthermore, unc-10;rab-3 double mutants phenocopy the targeting defects of the single mutants, suggesting UNC-10 and RAB-3 act in the same pathway to target vesicles at the presynaptic density. Endogenous release of unc-10;rab-3 double mutants was similar to that of unc-10 single mutants, but more severe than rab-3 mutants, suggesting the common targeting defects are reflected by the milder rab-3 release defect. Rim has recently been shown to positively regulate calcium influx through direct interactions with calcium channels. Consistent with this notion we found UNC-10 colocalized with the calcium channel, UNC-2 at C. elegans presynaptic densities and synaptic release in unc-10 and rab-3 mutants exhibit reduced calcium-sensitivity. Together these results suggest that vesicles targeted to the presynaptic density by RAB-3/UNC-10 interactions are ideally positioned for efficient calcium-dependent release.
Rim是一种多结构域的活性区蛋白,可调节胞吐作用,并与囊泡引发和突触前可塑性有关。我们最近证明,与秀丽隐杆线虫Rim(称为UNC-10)缺失相关的突触缺陷伴随着突触前致密区附近停靠囊泡的减少。由于已知Rim与囊泡相关的GTP酶Rab3A相互作用,因此我们在此询问UNC-10依赖性的突触囊泡募集到突触前致密区是否通过UNC-10/Rab-3相互作用。我们首先确定,处于GTP结合而非GDP结合状态的秀丽隐杆线虫Rab3(称为RAB-3)与UNC-10相互作用。然后,我们通过电子显微镜分析证明,rab-3突变体突触表现出与unc-10突变体相同的囊泡靶向缺陷。此外,unc-10;rab-3双突变体表型模拟单突变体的靶向缺陷,表明UNC-10和RAB-3在同一途径中发挥作用,以在突触前致密区靶向囊泡。unc-10;rab-3双突变体的内源性释放与unc-10单突变体相似,但比rab-3突变体更严重,这表明较轻的rab-3释放缺陷反映了共同的靶向缺陷。最近的研究表明,Rim通过与钙通道的直接相互作用正向调节钙内流。与此观点一致,我们发现UNC-10与钙通道UNC-2在秀丽隐杆线虫突触前致密区共定位,并且unc-10和rab-3突变体中的突触释放表现出钙敏感性降低。这些结果共同表明,通过RAB-3/UNC-10相互作用靶向到突触前致密区的囊泡处于理想位置,以实现有效的钙依赖性释放。