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Rim is a putative Rab3 effector in regulating synaptic-vesicle fusion

机译:Rim是调节突触-囊泡融合的假定的Rab3效应子。

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Rab3 is a neuronal GTP-binding protein that regulates fusion of synaptic vesicles and is essential for long-term potentiation of hippocampal mossy fibre synapses. More than thirty Rab GTP-binding proteins are known to function in diverse membrane transport pathways, although their mechanisms of action are unclear. We have now identified a putative Rab3-effector protein called Rim. Rim is composed of an amino-terminal zinc-finger motif and carboxy-terminal PDZ and C2 domains. It binds only to GTP (but not to GDP)-complexed Rab3, and interacts with no other Rab protein tested. There is enrichment of Rab3 and Rim in neurons, where they have complementary distributions. Rab3 is found only on synaptic vesicles, whereas Rim is localized to presynaptic active zones in conventional synapses, and to presynaptic ribbons in ribbon synapses. Transfection of PC12 cells with the amino-terminal domains of Rim greatly enhances regulated exocytosis in a Rab3-dependent manner. We propose that Rim serves as a Rab3-dependent regulator of synaptic-vesicle fusion by forming a GTP-dependent complex between synaptic plasma membranes and docked synaptic vesicles.
机译:Rab3是一种神经元GTP结合蛋白,可调节突触小泡的融合,对于海马苔藓纤维突触的长期增强至关重要。尽管尚不清楚它们的作用机理,但已有三十多种Rab GTP结合蛋白在多种膜运输途径中起作用。现在我们已经确定了一种称为Rim的推定Rab3效应蛋白。 Rim由氨基末端的锌指基序和羧基末端的PDZ和C2域组成。它仅与GTP复合(而不与GDP)复合的Rab3结合,并且不与其他经过测试的Rab蛋白相互作用。 Rab3和Rim在神经元中富集,它们具有互补的分布。 Rab3仅在突触小泡上发现,而Rim定位于常规突触中的突触前活性区和带状突触中的突触前带。用Rim的氨基末端结构域转染PC12细胞以Rab3依赖性方式大大增强了调控的胞吐作用。我们建议Rim通过形成突触质膜和停靠的突触囊泡之间的GTP依赖复合体作为突触囊泡融合的Rab3依赖性调节剂。

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