Dresbach T, Burns M E, O'Connor V, DeBello W M, Betz H, Augustine G J
Department of Neurochemistry, Max-Planck-Institute for Brain Research, 60528 Frankfurt, Germany.
J Neurosci. 1998 Apr 15;18(8):2923-32. doi: 10.1523/JNEUROSCI.18-08-02923.1998.
Sec1-related proteins are essential for membrane fusion at distinct stages of the constitutive and regulated secretory pathways in eukaryotic cells. Studies of neuronal isoforms of the Sec1 protein family have yielded evidence for both positive and negative regulatory functions of these proteins in neurotransmitter release. Here, we have identified a squid neuronal homolog (s-Sec1) of Sec1 proteins and examined its function in neurotransmitter release at the squid giant synapse. Microinjection of s-Sec1 into the presynaptic terminal of the giant synapse inhibited evoked neurotransmitter release, but this effect was prevented by coinjecting the cytoplasmic domain of squid syntaxin (s-syntaxin), one of the binding partners of s-Sec1. A 24 amino acid peptide fragment of s-Sec1, which inhibited the binding of s-Sec1 to s-syntaxin in vitro, completely blocked release, suggesting an essential function of the s-Sec1/s-syntaxin interaction in transmitter release. Electron microscopy showed that injection of s-Sec1 did not change the spatial distribution of synaptic vesicles at presynaptic release sites ("active zones"), whereas the inhibitory peptide increased the number of docked vesicles. These distinct morphological effects lead us to conclude that Sec1 proteins function at different stages of synaptic vesicle exocytosis, and that an interaction of s-Sec1 with syntaxin-at a stage blocked by the peptide-is necessary for docked vesicles to fuse.
Sec1相关蛋白对于真核细胞组成型和调节型分泌途径不同阶段的膜融合至关重要。对Sec1蛋白家族神经元亚型的研究已经得出证据,表明这些蛋白在神经递质释放中具有正向和负向调节功能。在此,我们鉴定了一种Sec1蛋白的鱿鱼神经元同源物(s-Sec1),并研究了其在鱿鱼巨大突触神经递质释放中的功能。将s-Sec1显微注射到巨大突触的突触前末端会抑制诱发的神经递质释放,但通过共注射s-Sec1的结合伴侣之一鱿鱼Syntaxin(s-syntaxin)的细胞质结构域可以阻止这种效应。s-Sec1的一个24个氨基酸的肽片段,在体外抑制s-Sec1与s-syntaxin的结合,完全阻断了释放,表明s-Sec1/s-syntaxin相互作用在递质释放中具有重要功能。电子显微镜显示,注射s-Sec1不会改变突触前释放位点(“活性区”)处突触小泡的空间分布,而抑制性肽增加了停靠小泡的数量。这些不同的形态学效应使我们得出结论,Sec1蛋白在突触小泡胞吐作用的不同阶段发挥作用,并且s-Sec1与Syntaxin的相互作用——在肽阻断的阶段——对于停靠的小泡融合是必要的。