Nicholson-Tomishima Karin, Ryan Timothy A
Department of Biochemistry, Weill Medical College of Cornell University, 1300 York Avenue, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 2004 Nov 23;101(47):16648-52. doi: 10.1073/pnas.0406968101. Epub 2004 Oct 18.
At nerve terminals, synaptic vesicle components are retrieved from the cell surface and recycled for local reuse soon after exocytosis. The kinetics of this coupling is critical for the proper functioning of synapses during repetitive action potential firing, because deficiencies in this process lead to abnormal depletion of the releasable vesicle pool. Although the molecular basis of this coupling is poorly understood, numerous biochemical data point to a role for synaptotagmin I (SytI), an essential synaptic vesicle protein required for fast calcium-dependent exocytosis. Here, using synapto-pHluorin in an approach that allows the dissection of endocytosis and exocytosis into separate components during periods of stimulation, we examined exocytic-endocytic coupling in synapses from SytI knockout mice and their WT littermates. We show that endocytosis is significantly impaired in the absence of SytI with the relative rates of endocytosis compared with exocytosis reduced approximately 3-fold with respect to WT. Thus, in addition to regulating exocytosis, SytI also controls the kinetic efficiency of endocytosis at nerve terminals.
在神经末梢,突触囊泡成分在胞吐作用后很快从细胞表面被回收并循环用于局部再利用。这种偶联的动力学对于重复动作电位发放期间突触的正常功能至关重要,因为该过程中的缺陷会导致可释放囊泡池的异常耗竭。尽管这种偶联的分子基础尚不清楚,但大量生化数据表明突触结合蛋白I(SytI)发挥了作用,它是快速钙依赖性胞吐作用所需的一种必需的突触囊泡蛋白。在此,我们使用突触pH荧光蛋白,采用一种在刺激期间可将内吞作用和胞吐作用解析为单独成分的方法,研究了SytI基因敲除小鼠及其野生型同窝小鼠突触中的胞吐 - 内吞偶联。我们发现,在没有SytI的情况下,内吞作用显著受损,与胞吐作用相比,内吞作用的相对速率相对于野生型降低了约3倍。因此,除了调节胞吐作用外,SytI还控制神经末梢内吞作用的动力学效率。