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突触素I的表达与神经肌肉突触的成熟相关。

Expression of synapsin I correlates with maturation of the neuromuscular synapse.

作者信息

Lu B, Czernik A J, Popov S, Wang T, Poo M M, Greengard P

机构信息

Laboratory of Molecular and Cellular Neuroscience, Rockefeller University, New York 10021-6399, USA.

出版信息

Neuroscience. 1996 Oct;74(4):1087-97. doi: 10.1016/0306-4522(96)00187-x.

Abstract

Synapsins are a family of neuron-specific phosphoproteins that are localized within the presynaptic terminals in adult brain. Previous work has demonstrated that introduction of exogenous synapsins I(a + b) or IIa into Xenopus spinal neurons promoted maturation of the neuromuscular synapse in a nerve-muscle co-culture system. We have now studied the expression of endogenous Xenopus synapsin I during synaptic maturation in vivo and in culture, using a polyclonal antibody raised against Xenopus synapsin I. Immunoprecipitation experiments indicated that synapsin I was not detectable during the early phase of synaptogenesis in vivo, and exhibited a marked increase during the period of synaptic maturation. In contrast, the expression of synaptophysin, another synaptic vesicle protein, was detected at the start of nervous system formation, and remained at a high level thereafter. Similar expression profiles for the two proteins were also observed in immunocytochemical studies of Xenopus spinal neurons in culture: intense staining of synaptophysin was found on the first day, while synapsin I was not detected until after three days in culture. The expression of synapsin I correlated very well with the appearance of a bell-shaped amplitude distribution of spontaneous synaptic currents, a physiological parameter which reflects functional maturation of the neuromuscular synapse. In one-day-old cultures grown in the absence of laminin, an extracellular matrix protein known to be present at the neuromuscular junction, the amplitude distribution of virtually all synapses was skewed towards smaller values. In contrast, when laminin was used as a culture substrate, many synapses exhibited a bell-shaped amplitude distribution. Laminin treatment also induced synapsin I expression in one-day-old cultures. These results suggest that the expression of endogenous synapsin I may regulate maturation at neuromuscular synapses.

摘要

突触结合蛋白是一类神经元特异性磷蛋白,定位于成体大脑的突触前终末。先前的研究表明,将外源性突触结合蛋白I(a + b)或IIa导入非洲爪蟾脊髓神经元可促进神经肌肉共培养系统中神经肌肉突触的成熟。我们现在利用针对非洲爪蟾突触结合蛋白I制备的多克隆抗体,研究了体内和体外突触成熟过程中内源性非洲爪蟾突触结合蛋白I的表达。免疫沉淀实验表明,在体内突触发生的早期阶段无法检测到突触结合蛋白I,而在突触成熟期间其表达显著增加。相比之下,另一种突触小泡蛋白突触素的表达在神经系统形成开始时即可检测到,此后一直维持在较高水平。在对培养的非洲爪蟾脊髓神经元进行的免疫细胞化学研究中也观察到了这两种蛋白类似的表达模式:培养第一天即可发现突触素的强烈染色,而突触结合蛋白I直到培养三天后才能检测到。突触结合蛋白I的表达与自发突触电流呈钟形幅度分布的出现密切相关,自发突触电流是反映神经肌肉突触功能成熟的一个生理参数。在缺乏层粘连蛋白(一种已知存在于神经肌肉接头处的细胞外基质蛋白)的条件下培养的1日龄培养物中,几乎所有突触的幅度分布都偏向较小值。相比之下,当使用层粘连蛋白作为培养底物时,许多突触呈现出钟形幅度分布。层粘连蛋白处理还可诱导1日龄培养物中突触结合蛋白I的表达。这些结果表明,内源性突触结合蛋白I的表达可能调节神经肌肉突触的成熟。

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