Rhee J-S, Li L Y, Shin O-H, Rah J-C, Rizo J, Südhof T C, Rosenmund C
Department of Neuroscience, Baylor College of Medicine, One Baylor Plaza, Houston, TX 7703, USA.
Proc Natl Acad Sci U S A. 2005 Dec 20;102(51):18664-9. doi: 10.1073/pnas.0509153102. Epub 2005 Dec 13.
Synaptotagmin 1 likely acts as a Ca2+ sensor in neurotransmitter release by Ca2+-binding to its two C2 domains. This notion was strongly supported by the observation that a mutation in the C2A domain causes parallel decreases in the apparent Ca2+ affinity of synaptotagmin 1 and in the Ca2+ sensitivity of release. However, this study was based on a single loss-of-function mutation. We now show that tryptophan substitutions in the synaptotagmin 1 C2 domains act as gain-of-function mutations to increase the apparent Ca2+ affinity of synaptotagmin 1. The same substitutions, when introduced into synaptotagmin 1 expressed in neurons, enhance the Ca2+ sensitivity of release. Mutations in the two C2 domains lead to comparable and additive effects in release. Our results thus show that the apparent Ca2+ sensitivity of release is dictated by the apparent Ca2+ affinity of synaptotagmin 1 in both directions, and that Ca2+ binding to both C2 domains contributes to Ca2+ triggering of release.
突触结合蛋白1可能通过其两个C2结构域结合Ca2+,在神经递质释放过程中充当Ca2+传感器。C2A结构域中的一个突变导致突触结合蛋白1的表观Ca2+亲和力和释放的Ca2+敏感性平行下降,这一观察结果有力地支持了这一观点。然而,这项研究基于单个功能丧失突变。我们现在表明,突触结合蛋白1 C2结构域中的色氨酸替代作为功能获得性突变,可增加突触结合蛋白1的表观Ca2+亲和力。当将相同的替代引入在神经元中表达的突触结合蛋白1时,可增强释放的Ca2+敏感性。两个C2结构域中的突变在释放中产生相当且累加的效应。因此,我们的结果表明,释放的表观Ca2+敏感性在两个方向上均由突触结合蛋白1的表观Ca2+亲和力决定,并且Ca2+与两个C2结构域的结合均有助于Ca2+触发释放。