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破伤风毒素抑制大鼠皮层突触体中去极化刺激的蛋白质磷酸化:对突触素I磷酸化和转位的影响。

Tetanus toxin inhibits depolarization-stimulated protein phosphorylation in rat cortical synaptosomes: effect on synapsin I phosphorylation and translocation.

作者信息

Presek P, Jessen S, Dreyer F, Jarvie P E, Findik D, Dunkley P R

机构信息

Rudolf-Buchheim-Institut für Pharmakologie, Justus-Liebig-Universität, Giessen, F.R.G.

出版信息

J Neurochem. 1992 Oct;59(4):1336-43. doi: 10.1111/j.1471-4159.1992.tb08445.x.

DOI:10.1111/j.1471-4159.1992.tb08445.x
PMID:1328520
Abstract

Synapsin I, a prominent phosphoprotein in nerve terminals, is proposed to modulate exocytosis by interaction with the cytoplasmic surface of small synaptic vesicles and cytoskeletal elements in a phosphorylation-dependent manner. Tetanus toxin (TeTx), a potent inhibitor of neurotransmitter release, attenuated the depolarization-stimulated increase in synapsin I phosphorylation in rat cortical particles and in synaptosomes. TeTx also markedly decreased the translocation of synapsin I from the small synaptic vesicles and the cytoskeleton into the cytosol, on depolarization of synaptosomes. The effect of TeTx on synapsin I phosphorylation was both time and TeTx concentration dependent and required active toxin. One- and two-dimensional peptide maps of synapsin I with V8 proteinase and trypsin, respectively, showed no differences in the relative phosphorylation of peptides for the control and TeTx-treated synaptosomes, suggesting that both the calmodulin- and the cyclic AMP-dependent kinases that label this protein are equally affected. Phosphorylation of synapsin IIb and the B-50 protein (GAP43), a known substrate of protein kinase C, was also inhibited by TeTx. TeTx affected only a limited number of phosphoproteins and the calcium-dependent decrease in dephosphin phosphorylation remained unaffected. In vitro phosphorylation of proteins in lysed synaptosomes was not influenced by prior TeTx treatment of the intact synaptosomes or by the addition of TeTx to lysates, suggesting that the effect of TeTx on protein phosphorylation was indirect. Our data demonstrate that TeTx inhibits neurotransmitter release, the phosphorylation of a select group of phosphoproteins in nerve terminals, and the translocation of synapsin I. These findings contribute to our understanding of the basic mechanism of TeTx action.

摘要

突触素I是神经末梢中一种重要的磷蛋白,有人提出它通过与小突触囊泡的细胞质表面和细胞骨架成分以磷酸化依赖的方式相互作用来调节胞吐作用。破伤风毒素(TeTx)是一种有效的神经递质释放抑制剂,它减弱了大鼠皮层颗粒和突触体中去极化刺激引起的突触素I磷酸化增加。在突触体去极化时,TeTx还显著降低了突触素I从小突触囊泡和细胞骨架向细胞质溶胶的转位。TeTx对突触素I磷酸化的影响具有时间和TeTx浓度依赖性,且需要活性毒素。分别用V8蛋白酶和胰蛋白酶对突触素I进行的一维和二维肽图分析表明,对照和TeTx处理的突触体中肽的相对磷酸化没有差异,这表明标记该蛋白的钙调蛋白依赖性激酶和环磷酸腺苷依赖性激酶均受到同等影响。突触素IIb和B-50蛋白(GAP43)(蛋白激酶C的已知底物)的磷酸化也受到TeTx的抑制。TeTx仅影响有限数量的磷蛋白,去磷酸化蛋白的钙依赖性减少不受影响。完整突触体预先用TeTx处理或向裂解物中添加TeTx对裂解突触体中蛋白质的体外磷酸化没有影响,这表明TeTx对蛋白质磷酸化的作用是间接的。我们的数据表明,TeTx抑制神经递质释放、神经末梢中一组选定磷蛋白的磷酸化以及突触素I的转位。这些发现有助于我们理解TeTx作用的基本机制。

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