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SNAP-23 functions in docking/fusion of granules at low Ca2+

机译:SNAP-23在低Ca2 +下对接/融合颗粒的功能

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Ca2+-triggered exocytosis of secretory granules mediates the release of hormones from endocrine cells and neurons. The plasma membrane protein synaptosome-associated protein of 25 kDa (SNAP-25) is thought to be a key component of the membrane fusion apparatus that mediates exocytosis in neurons. Recently, homologues of SNAP-25 have been identified, including SNAP-23, which is expressed in many tissues, albeit at different levels. At present, little is known concerning functional differences among members of this family of proteins. Using an in vitro assay, we show here that SNAP-25 and SNAP-23 mediate the docking of secretory granules with the plasma membrane at high (1 muM) and low (100 nM) Ca2+ levels, respectively, by interacting with different members of the synaptotagmin family. In intact endocrine cells, expression of exogenous SNAP-23 leads to high levels of hormone secretion under basal conditions. Thus, the relative expression levels of SNAP-25 and SNAP-23 might control the mode (regulated vs. basal) of granule release by forming docking complexes at different Ca2+ thresholds. [References: 67]
机译:Ca2 +触发的分泌颗粒的胞吐作用介导内分泌细胞和神经元释放激素。 25 kDa的质膜蛋白突触体相关蛋白(SNAP-25)被认为是介导神经元胞吐作用的膜融合设备的关键组成部分。最近,已经鉴定出SNAP-25的同源物,包括SNAP-23,其在许多组织中表达,尽管其水平不同。目前,关于该蛋白质家族成员之间的功能差异知之甚少。使用体外测定,我们在这里显示SNAP-25和SNAP-23通过与Ca2 +的不同成员相互作用,分别介导高(1μM)和低(100 nM)Ca2 +水平下分泌颗粒与质膜的对接。突触素家族。在完整的内分泌细胞中,外源性SNAP-23的表达在基础条件下导致高水平的激素分泌。因此,SNAP-25和SNAP-23的相对表达水平可能通过在不同的Ca2 +阈值下形成对接复合物来控制颗粒释放的模式(受调节的与基础的)。 [参考:67]

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