Sun Li, Li Qi, Khanna Rajesh, Chan Allen W, Wong Fiona, Stanley Elise F
Cellular and Molecular Biology Division, Toronto Western Research Institute, UHN Toronto, Ontario, Canada.
Eur J Neurosci. 2006 Mar;23(5):1391-6. doi: 10.1111/j.1460-9568.2006.04653.x.
Ca(2+) influx through N-type Ca(2+) channels (CaV2.2) is known to be critical for transmitter release at many synapses. These channels are known to be localized to transmitter release sites, but their anchoring mechanism remains unknown. Recent studies have demonstrated that presynaptic organization is subject to interactions with the postsynaptic cell or the intervening extracellular matrix. We used a previously described high-affinity antibody against the N-type Ca(2+) channels, Ab571, to localize Ca(2+) channel clusters at the release face of an isolated giant calyx-type synapse to test whether the maintenance of these clusters requires an intact extracellular matrix or contact with the postsynaptic cell. Because the number of Ca(2+) channel clusters was unchanged after extracellular matrix dispersal or nerve terminal isolation, we conclude that presynaptic transmitter release face Ca(2+) clusters can be maintained independently of extracellular influences. Our results suggest that a presynaptic molecular scaffold is responsible for the maintenance of release site Ca(2+) channel clusters.
已知通过N型钙通道(CaV2.2)的钙离子内流对许多突触处的递质释放至关重要。已知这些通道定位于递质释放位点,但其锚定机制尚不清楚。最近的研究表明,突触前组织会与突触后细胞或其间的细胞外基质相互作用。我们使用先前描述的针对N型钙通道的高亲和力抗体Ab571,将钙通道簇定位在分离的巨大花萼型突触的释放面上,以测试这些簇的维持是否需要完整的细胞外基质或与突触后细胞的接触。由于在细胞外基质分散或神经末梢分离后钙通道簇的数量没有变化,我们得出结论,突触前递质释放面的钙簇可以独立于细胞外影响而维持。我们的结果表明,突触前分子支架负责维持释放位点的钙通道簇。