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通过向鱿鱼巨大突触终末前注射特异性抗体所确定的突触结合蛋白C2A结构域在递质释放中的作用

Role of the C2A domain of synaptotagmin in transmitter release as determined by specific antibody injection into the squid giant synapse preterminal.

作者信息

Mikoshiba K, Fukuda M, Moreira J E, Lewis F M, Sugimori M, Niinobe M, Llinás R

机构信息

Molecular Neurobiology Laboratory, Tsukuba Life Science Center, Ibaraki, Japan.

出版信息

Proc Natl Acad Sci U S A. 1995 Nov 7;92(23):10703-7. doi: 10.1073/pnas.92.23.10703.

Abstract

Squid synaptotagmin (Syt) cDNA, including its open reading frame, was cloned and polyclonal antibodies were obtained in rabbits immunized with glutathione S-transferase (GST)-Syt-C2A. Binding assays indicated that the antibody, anti-Syt-C2A, recognized squid Syt and inhibited the Ca(2+)-dependent phospholipid binding to the C2A domain. This antibody, when injected into the preterminal at the squid giant synapse, blocked transmitter release in a manner similar to that previously reported for the presynaptic injection of members of the inositol high-polyphosphate series. The block was not accompanied by any change in the presynaptic action potential or the amplitude or voltage dependence of the presynaptic Ca2+ current. The postsynaptic potential was rather insensitive to repetitive presynaptic stimulation, indicating a direct effect of the antibody on the transmitter release system. Following block of transmitter release, confocal microscopical analysis of the preterminal junction injected with rhodamine-conjugated anti-Syt-C2A demonstrated fluorescent spots at the inner surface of the presynaptic plasmalemma next to the active zones. Structural analysis of the same preparations demonstrated an accumulation of synaptic vesicles corresponding in size and distribution to the fluorescent spots demonstrated confocally. Together with the finding that such antibody prevents Ca2+ binding to a specific receptor in the C2A domain, these results indicate that Ca2+ triggers transmitter release by activating the C2A domain of Syt. We conclude that the C2A domain is directly related to the fusion of synaptic vesicles that results in transmitter release.

摘要

克隆了鱿鱼突触结合蛋白(Syt)的cDNA,包括其开放阅读框,并在用谷胱甘肽S-转移酶(GST)-Syt-C2A免疫的兔子中获得了多克隆抗体。结合试验表明,抗Syt-C2A抗体识别鱿鱼Syt,并抑制Ca(2+)依赖性磷脂与C2A结构域的结合。将该抗体注射到鱿鱼巨大突触的终末前时,其阻断递质释放的方式与先前报道的突触前注射肌醇高聚磷酸系列成员的方式相似。这种阻断并未伴随突触前动作电位或突触前Ca2+电流的幅度或电压依赖性发生任何变化。突触后电位对重复性突触前刺激相当不敏感,表明该抗体对递质释放系统有直接作用。在递质释放被阻断后,对注射了罗丹明偶联的抗Syt-C2A的终末前连接进行共聚焦显微镜分析,发现在靠近活性区的突触前质膜内表面有荧光斑点。对相同制剂的结构分析表明,突触小泡的积累在大小和分布上与共聚焦显示的荧光斑点相对应。连同该抗体可阻止Ca2+与C2A结构域中的特定受体结合这一发现,这些结果表明Ca2+通过激活Syt的C2A结构域来触发递质释放。我们得出结论,C2A结构域与导致递质释放的突触小泡融合直接相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/084c/40680/afd164e6fb31/pnas01501-0270-a.jpg

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