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C2-domain containing calcium sensors in neuroendocrine secretion

机译:神经内分泌中含有C2结构域的钙传感器

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摘要

The molecular mechanisms for calcium-triggered membrane fusion have long been sought for, and detailed models now exist that account for at least some of the functions of the many proteins involved in the process. Key players in the fusion reaction are a group of proteins that, upon binding to calcium, trigger the merger of cargo-filled vesicles with the plasma membrane. Low-affinity, fast-kinetics calcium sensors of the synaptotagmin family - especially synaptotagmin-1 and synaptotagmin-2 - are the main calcium sensors for fast exocytosis triggering in many cell types. Their functions extend beyond fusion triggering itself, having been implicated in the calcium-dependent vesicle recruitment during activity, docking of vesicles to the plasma membrane and priming, and even in post-fusion steps, such as fusion pore expansion and endocytosis. Furthermore, synaptotagmin diversity imparts distinct properties to the release process itself. Other calcium-sensing proteins such as Munc13s and protein kinase C play important, but more indirect roles in calcium-triggered exocytosis. Because of their higher affinity, but intrinsic slower kinetics, they operate on longer temporal and spatial scales to organize assembly of the release machinery. Finally, the high-affinity synaptotagmin-7 and Doc2 (Double C2-domain) proteins are able to trigger membrane fusion in vitro, but cellular measurements in different systems show that they may participate in either fusion or vesicle priming. Here, we summarize the properties and possible interplay of (some of) the major C2-domain containing calcium sensors in calcium-triggered exocytosis.
机译:长期以来一直在寻找钙触发的膜融合的分子机制,并且现在存在详细的模型,这些模型至少解释了参与该过程的许多蛋白质的某些功能。融合反应的关键参与者是一组蛋白质,这些蛋白质与钙结合后,会触发载有货物的囊泡与质膜的融合。突触结合蛋白家族的低亲和力,快速动力学的钙传感器,尤其是突触结合蛋白-1和突触结合蛋白-2,是在许多细胞类型中触发快速胞吐作用的主要钙传感器。它们的功能超出了融合触发自身的范围,与活性过程中依赖钙的囊泡募集,囊泡与质膜的对接和引发有关,甚至在融合后步骤中,如融合孔扩展和胞吞作用,都涉及到它们的功能。此外,突触结合蛋白的多样性赋予释放过程本身独特的特性。其他钙敏感蛋白(例如Munc13s和蛋白激酶C)在钙触发的胞吐作用中起着重要但更间接的作用。由于它们的亲和力较高,但固有的动力学较慢,因此它们在较长的时间和空间范围内运行,以组织释放装置的组装。最后,高亲和力的突触小蛋白7和Doc2(双C2结构域)蛋白能够在体外触发膜融合,但不同系统中的细胞测量表明它们可能参与融合或囊泡引发。在这里,我们总结了在钙触发的胞吐作用中(某些)主要的含C2结构域的钙传感器的特性和可能的​​相互作用。

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