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小鼠光感受器带状突触处RIM表达与功能分析

Analysis of RIM Expression and Function at Mouse Photoreceptor Ribbon Synapses.

作者信息

Löhner Martina, Babai Norbert, Müller Tanja, Gierke Kaspar, Atorf Jenny, Joachimsthaler Anneka, Peukert Angela, Martens Henrik, Feigenspan Andreas, Kremers Jan, Schoch Susanne, Brandstätter Johann Helmut, Regus-Leidig Hanna

机构信息

Department of Biology, Animal Physiology, Friedrich Alexander University Erlangen-Nürnberg, 91058 Erlangen, Germany.

Department of Ophthalmology, University Hospital Erlangen, 91058 Erlangen, Germany.

出版信息

J Neurosci. 2017 Aug 16;37(33):7848-7863. doi: 10.1523/JNEUROSCI.2795-16.2017. Epub 2017 Jul 12.

Abstract

RAB3A-interacting molecule (RIM) proteins are important regulators of transmitter release from active zones. At conventional chemical synapses, RIMs contribute substantially to vesicle priming and docking and their loss reduces the readily releasable pool of synaptic vesicles by up to 75%. The priming function of RIMs is mediated via the formation of a tripartite complex with Munc13 and RAB3A, which brings synaptic vesicles in close proximity to Ca channels and the fusion site and activates Munc13. We reported previously that, at mouse photoreceptor ribbon synapses, vesicle priming is Munc13 independent. In this study, we examined RIM expression, distribution, and function at male and female mouse photoreceptor ribbon synapses. We provide evidence that RIM1α and RIM1β are highly likely absent from mouse photoreceptors and that RIM2α is the major large RIM isoform present at photoreceptor ribbon synapses. We show that mouse photoreceptors predominantly express RIM2 variants that lack the interaction domain for Munc13. Loss of full-length RIM2α in a RIM2α mutant mouse only marginally perturbs photoreceptor synaptic transmission. Our findings therefore strongly argue for a priming mechanism at the photoreceptor ribbon synapse that is independent of the formation of a RIM-Munc13-RAB3A complex and thus provide further evidence for a fundamental difference between photoreceptor ribbon synapses and conventional chemical synapses in synaptic vesicle exocytosis. RAB3A-interacting molecules 1 and 2 (RIM1/2) are essential regulators of exocytosis. At conventional chemical synapses, their function involves Ca channel clustering and synaptic vesicle priming and docking through interactions with Munc13 and RAB3A, respectively. Examining wild-type and RIM2 mutant mice, we show here that the sensory photoreceptor ribbon synapses most likely lack RIM1 and predominantly express RIM2 variants that lack the interaction domain for Munc13. Our findings demonstrate that the photoreceptor-specific RIM variants are not essential for synaptic vesicle priming at photoreceptor ribbon synapses, which represents a fundamental difference between photoreceptor ribbon synapses and conventional chemical synapses with respect to synaptic vesicle priming mechanisms.

摘要

RAB3A相互作用分子(RIM)蛋白是活性区神经递质释放的重要调节因子。在传统化学突触中,RIM对囊泡的预激活和对接起着重要作用,其缺失会使突触囊泡的易释放池减少多达75%。RIM的预激活功能是通过与Munc13和RAB3A形成三方复合物来介导的,该复合物使突触囊泡靠近钙通道和融合位点并激活Munc13。我们之前报道过,在小鼠光感受器带状突触中,囊泡预激活不依赖于Munc13。在本研究中,我们检测了雄性和雌性小鼠光感受器带状突触中RIM的表达、分布和功能。我们提供的证据表明,小鼠光感受器极有可能不存在RIM1α和RIM1β,而RIM2α是光感受器带状突触中存在的主要大型RIM异构体。我们发现小鼠光感受器主要表达缺乏与Munc13相互作用结构域的RIM2变体。在RIM2α突变小鼠中全长RIM2α的缺失仅轻微扰乱光感受器突触传递。因此,我们的研究结果有力地支持了光感受器带状突触中存在一种独立于RIM-Munc13-RAB3A复合物形成的预激活机制,从而为光感受器带状突触和传统化学突触在突触囊泡胞吐作用方面的根本差异提供了进一步证据。RAB3A相互作用分子1和2(RIM1/2)是胞吐作用的重要调节因子。在传统化学突触中,它们的功能分别涉及钙通道聚集以及通过与Munc13和RAB3A相互作用实现突触囊泡的预激活和对接。通过检测野生型和RIM2突变小鼠,我们在此表明感觉光感受器带状突触极有可能缺乏RIM1,并且主要表达缺乏与Munc13相互作用结构域的RIM2变体。我们的研究结果表明,光感受器特异性RIM变体对于光感受器带状突触处的突触囊泡预激活并非必不可少,这代表了光感受器带状突触和传统化学突触在突触囊泡预激活机制方面的根本差异。

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Analysis of RIM Expression and Function at Mouse Photoreceptor Ribbon Synapses.小鼠光感受器带状突触处RIM表达与功能分析
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