Star Erin N, Newton A Jamila, Murthy Venkatesh N
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
J Physiol. 2005 Nov 15;569(Pt 1):103-17. doi: 10.1113/jphysiol.2005.092528. Epub 2005 Sep 1.
We investigated the roles of two Rab-family proteins, Rab3a and Rab5a, in hippocampal synaptic transmission using real-time fluorescence imaging. During synaptic activity, Rab3a dissociated from synaptic vesicles and dispersed into neighbouring axonal regions. Dispersion required calcium-dependent exocytosis and was complete before the entire vesicle pool turned over. In contrast, even prolonged synaptic activity produced limited dispersion of Rab5a. A GTPase-deficient mutant, Rab3a (Q81L), dispersed more slowly than wild-type Rab3a, and decreased the rate of exocytosis and the size of the recycling pool of vesicles. While overexpression of Rab3a did not affect vesicle recycling, overexpression of Rab5a reduced the recycling pool size by 50%. We propose that while Rab3a preferentially associates with recycling synaptic vesicles and modulates their trafficking, Rab5a is largely excluded from recycling vesicles.
我们利用实时荧光成像技术研究了两种Rab家族蛋白Rab3a和Rab5a在海马体突触传递中的作用。在突触活动期间,Rab3a从突触小泡上解离并扩散到邻近的轴突区域。这种扩散需要钙依赖性胞吐作用,并且在整个小泡池周转之前就已完成。相比之下,即使是长时间的突触活动也只会使Rab5a产生有限的扩散。一种GTP酶缺陷型突变体Rab3a(Q81L)的扩散速度比野生型Rab3a慢,并且降低了胞吐作用的速率以及小泡循环池的大小。虽然Rab3a的过表达不影响小泡循环,但Rab5a的过表达使循环池大小减少了50%。我们提出,Rab3a优先与循环突触小泡结合并调节其运输,而Rab5a在很大程度上被排除在循环小泡之外。