Ruiz R, Casañas J J, Südhof T C, Tabares L
Department of Medical Physiology and Biophysics, School of Medicine, University of Seville, Avda. Sanchez Pizjuan 4, 41009 Seville, Spain.
Eur J Neurosci. 2008 Jun;27(12):3118-31. doi: 10.1111/j.1460-9568.2008.06301.x.
Cysteine string protein (CSPalpha) is a synaptic vesicle protein present in most central and peripheral nervous system synapses. Previous studies demonstrated that the deletion of CSPalpha results in postnatal sensorial and motor impairment and premature lethality. To understand the participation of CSPalpha in neural function in vertebrates, we have studied the properties of synaptic transmission of motor terminals in wild-type and CSPalpha knockout mice. Our results demonstrate that, in the absence of CSPalpha, fast Ca2+-triggered release was not affected at postnatal day (P)14 but was dramatically reduced at P18 and P30 without a change in release kinetics. Although mutant terminals also exhibited a reduction in functional vesicle pool size by P30, further analysis showed that neurotransmission could be 'rescued' by high extracellular [Ca2+] or by the presence of a phorbol ester, suggesting that an impairment in the fusion machinery, or in vesicle recycling, was not the primary cause of the dysfunction of this synapse. The specific shift to the right of the Ca2+ dependence of synchronous release, and the lineal dependence of secretion on extracellular [Ca2+] in mutant terminals after P18, suggests that CSPalpha is indispensable for a normal Ca2+ sensitivity of exocytosis in vertebrate mature synapses.
半胱氨酸串珠蛋白(CSPα)是一种存在于大多数中枢和外周神经系统突触中的突触囊泡蛋白。先前的研究表明,CSPα的缺失会导致出生后感觉和运动功能障碍以及过早死亡。为了了解CSPα在脊椎动物神经功能中的作用,我们研究了野生型和CSPα基因敲除小鼠运动终末的突触传递特性。我们的结果表明,在缺乏CSPα的情况下,出生后第14天(P14)快速Ca2+触发的释放不受影响,但在P18和P30时显著减少,而释放动力学没有变化。尽管到P30时突变终末的功能性囊泡池大小也有所减少,但进一步分析表明,高细胞外[Ca2+]或佛波酯的存在可以“挽救”神经传递,这表明融合机制或囊泡再循环的损伤不是该突触功能障碍的主要原因。P18后突变终末同步释放的Ca2+依赖性特异性右移以及分泌对细胞外[Ca2+]的线性依赖性表明,CSPα对于脊椎动物成熟突触中正常的胞吐作用Ca2+敏感性是不可或缺的。