Section of Neurobiology, Department of Biological Sciences, University of Southern California, Los Angeles, CA 90089-2520, USA.
J Physiol. 2013 May 15;591(10):2463-73. doi: 10.1113/jphysiol.2012.244517. Epub 2013 Feb 11.
Complexins (Cplxs) are small, SNARE-associated proteins believed to regulate fast, calcium-triggered exocytosis. However, studies have pointed to either an inhibitory and/or facilitatory role in exocytosis, and the role of Cplxs in synchronizing exocytosis is relatively unexplored. Here, we compare the function of two types of complexin, Cplx 1 and 2, in two model systems of calcium-dependent exocytosis. In mouse neuromuscular junctions (NMJs), we find that lack of Cplx 1 significantly reduces and desynchronizes calcium-triggered synaptic transmission; furthermore, high-frequency stimulation elicits synaptic facilitation, instead of normal synaptic depression, and the degree of facilitation is highly sensitive to the amount of cytoplasmic calcium buffering. In Cplx 2-null adrenal chromaffin cells, we also find decreased and desynchronized evoked release, and identify a significant reduction in the vesicle pool close to the calcium channels (immediately releasable pool, IRP). Viral transduction with either Cplx 1 or 2 rescues both the size of the evoked response and the synchronicity of release, and it restores the IRP size. Our findings in two model systems are mutually compatible and indicate a role of Cplx 1 and 2 in facilitating vesicle priming, and also lead to the new hypothesis that Cplxs may synchronize vesicle release by promoting coupling between secretory vesicles and calcium channels.
复合蛋白(Cplx)是一种小的 SNARE 相关蛋白,被认为可以调节快速的、钙触发的胞吐作用。然而,研究表明其在胞吐作用中具有抑制和/或促进作用,而且 Cplx 协调胞吐作用的作用尚未得到充分探索。在这里,我们比较了两种类型的复合蛋白,即 Cplx1 和 Cplx2,在两种依赖钙的胞吐作用模型系统中的功能。在小鼠神经肌肉接头(NMJ)中,我们发现缺乏 Cplx1 会显著减少并去同步钙触发的突触传递;此外,高频刺激引发的是突触易化,而不是正常的突触抑制,并且易化程度对细胞质钙缓冲的量非常敏感。在 Cplx2 缺失的肾上腺嗜铬细胞瘤细胞中,我们也发现了减少和去同步的诱发释放,并且发现靠近钙通道的囊泡池(即立即可释放池,IRP)显著减少。用 Cplx1 或 Cplx2 的病毒转导均能恢复诱发反应的大小和释放的同步性,并恢复 IRP 的大小。我们在两个模型系统中的发现是相互兼容的,表明 Cplx1 和 Cplx2 在促进囊泡引发方面具有作用,并且提出了一个新的假设,即 Cplx 可能通过促进分泌囊泡与钙通道之间的偶联来协调囊泡释放。