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Synaptotagmin: A multifunctional protein in the synaptic vesicle cycle.

机译:Synaptotagmin:突触小泡循环中的多功能蛋白。

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摘要

Synaptotagmin is a synaptic vesicle protein whose cytosolic domain contains two C2 domains, C2A and C2B. Synaptotagmin is critical for synaptic transmission, and is implicated in synaptic vesicle docking, priming, Ca2+-sensing to trigger fusion and endocytosis. To further define synaptotagmin's role in the synaptic vesicle cycle, I examined three Drosophila synaptotagmin mutants: (1) a synaptotagmin null (sytnull) mutant, (2) a C2B Ca2+-binding motif mutant, and (3) a C2B polylysine motif mutant.; Although synaptic transmission is nearly abolished in syt null mutants, the mutation does not cause gross morphological changes. Indeed, sytnull mutants can survive to adulthood. However, synaptic vesicles, including docked vesicles, are decreased at sytnull active zones. syt null terminals also accumulate large, membranous structures. These experiments support a role for synaptotagmin in maintaining a population of synaptic vesicles in the nerve terminal, synaptic vesicle docking, Ca 2+-sensing to trigger fusion, and endocytosis.; Synaptic transmission is more severely disrupted in C2B Ca 2+-binding motif mutants than it is in sytnull mutants. However, unlike sytnull mutants, synaptic ultrastructure is normal in Ca2+-binding motif mutants. Thus, this motif is not involved in maintaining synaptic vesicles at nerve terminals, synaptic vesicle docking or endocytosis. Instead, the near elimination of synaptic transmission recorded in these mutants is likely because the protein cannot bind Ca2+ by its C2B domain, strongly supporting a role for synaptotagmin in Ca2+-sensing.; The polylysine motif in synaptotagmin's C2B domain is also critical for synaptic transmission. In vitro, this motif interacts with numerous presynaptic proteins. Thus, the synaptic transmission defect in these mutants may be due to a disruption of any of these interactions. Here I present data implicating this motif in synaptic vesicle recycling. I demonstrate that the motif is not involved in endocytosis, but does play a role prior to vesicle fusion. Furthermore, the polylysine motif mutants have a decreased release probability. These results are consistent with the hypothesis that the polylysine motif is involved in synaptic vesicle priming.; These studies demonstrate that synaptotagmin is a multifunctional protein in the synaptic vesicle cycle, playing important roles in vesicle docking, priming, Ca2+-sensing and endocytosis via distinct molecular interactions mediated by its various motifs.
机译:突触标签蛋白是一种突触小泡蛋白,其胞质结构域包含两个C2结构域C2A和C2B。突触标记素对于突触传递至关重要,并与突触小泡对接,引发,Ca2 +感应触发融合和胞吞作用有关。为了进一步定义突触突触素在突触囊泡周期中的作用,我检查了三个果蝇突触突触素突变体:(1)突触突触素无效(sytnull)突变体,(2)C2B Ca2 +结合基序突变体,和(3)C2B聚赖氨酸基序突变体。 ;尽管在syt null突变体中突触传递几乎被消除,但该突变不会引起总体形态变化。确实,sytnull突变体可以存活到成年。但是,突触小泡,包括停泊的小泡,减少了在sytnull活动区。 syt空终端也积累了大型的膜状结构。这些实验支持突触标记素在维持神经末梢的突触囊泡群,突触囊泡对接,Ca 2+感应以触发融合和胞吞作用中的作用。相比于sytnull突变体,C2B Ca 2+结合基序突变体对突触传递的破坏更为严重。但是,与sytnull突变体不同,突触超微结构在​​Ca2 +结合基序突变体中是正常的。因此,该基序不参与维持神经末梢的突触小泡,突触小泡对接或胞吞作用。相反,这些突变体中记录的突触传递几乎被消除是可能的,因为该蛋白不能通过其C2B结构域结合Ca2 +,从而强烈支持突触标记素在Ca2 +感应中的作用。突触标签蛋白的C2B结构域中的聚赖氨酸基序对于突触传递也至关重要。在体外,该基序与许多突触前蛋白相互作用。因此,这些突变体中的突触传递缺陷可能是由于任何这些相互作用的破坏。在这里,我提出的数据牵涉到突触小泡回收中的这一主题。我证明该基序不参与胞吞作用,但在囊泡融合之前确实起作用。此外,聚赖氨酸基序突变体具有降低的释放概​​率。这些结果与多聚赖氨酸基序参与突触小泡引发的假设相符。这些研究表明,突触标记素是突触囊泡周期中的一种多功能蛋白,通过其各种基序介导的独特分子相互作用,在突触囊泡,引发,Ca2 +感应和胞吞作用中发挥重要作用。

著录项

  • 作者

    Loewen, Carin.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;
  • 关键词

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