Schoch Susanne, Castillo Pablo E, Jo Tobias, Mukherjee Konark, Geppert Martin, Wang Yun, Schmitz Frank, Malenka Robert C, Südhof Thomas C
The Center for Basic Neuroscience and Department of Molecular Genetics, Howard Hughes Medical Institute, The University of Texas Southwestern Medical Center, Dallas, Texas 75390-9111, USA.
Nature. 2002 Jan 17;415(6869):321-6. doi: 10.1038/415321a.
Neurotransmitters are released by synaptic vesicle fusion at the active zone. The active zone of a synapse mediates Ca2+-triggered neurotransmitter release, and integrates presynaptic signals in regulating this release. Much is known about the structure of active zones and synaptic vesicles, but the functional relation between their components is poorly understood. Here we show that RIM1alpha, an active zone protein that was identified as a putative effector for the synaptic vesicle protein Rab3A, interacts with several active zone molecules, including Munc13-1 (ref. 6) and alpha-liprins, to form a protein scaffold in the presynaptic nerve terminal. Abolishing the expression of RIM1alpha in mice shows that RIM1alpha is essential for maintaining normal probability of neurotransmitter release, and for regulating release during short-term synaptic plasticity. These data indicate that RIM1alpha has a central function in integrating active zone proteins and synaptic vesicles into a molecular scaffold that controls neurotransmitter release.
神经递质通过突触小泡在活性区融合而释放。突触的活性区介导Ca2+触发的神经递质释放,并在调节这种释放过程中整合突触前信号。关于活性区和突触小泡的结构已有很多了解,但对其组成成分之间的功能关系却知之甚少。在这里我们表明,RIM1α,一种被鉴定为突触小泡蛋白Rab3A假定效应器的活性区蛋白,与几种活性区分子相互作用,包括Munc13-1(参考文献6)和α-脂锚蛋白,在突触前神经末梢形成一个蛋白质支架。消除小鼠中RIM1α的表达表明,RIM1α对于维持神经递质释放的正常概率以及在短期突触可塑性过程中调节释放至关重要。这些数据表明,RIM1α在将活性区蛋白和突触小泡整合到控制神经递质释放的分子支架中具有核心功能。