Wang Ping, Chicka Michael C, Bhalla Akhil, Richards David A, Chapman Edwin R
Department of Physiology, University of Wisconsin, 1300 University Ave., SMI 129, Madison, WI 53706, USA.
Mol Cell Biol. 2005 Oct;25(19):8693-702. doi: 10.1128/MCB.25.19.8693-8702.2005.
Synaptotagmin (syt) I is thought to act as a Ca2+ sensor that regulates neuronal exocytosis. Fifteen additional isoforms of syt have been identified, but their functions are less well understood. Here, we used PC12 cells to test the idea that different isoforms of syt impart cells with distinct metal (i.e., Ca2+, Ba2+, and Sr2+) requirements for secretion. These cells express syt's I and IX (syt IX sometimes referred to as syt V), which have low apparent metal affinities, at much higher levels than syt VII, which we show has a relatively high apparent affinity for metals. We found that syt I and VII partially colocalize on large dense core vesicles and that upregulation of syt VII produces a concomitant increase in the divalent cation sensitivity of catecholamine release from PC12 cells. Furthermore, RNA interference-mediated knockdown of endogenous syt VII reduced the metal sensitivity of release. These data support the hypothesis that the complement of syt's expressed by a cell, in conjunction with their metal affinity, determines the divalent cation sensitivity of exocytosis.
突触结合蛋白(syt)I被认为是一种调节神经元胞吐作用的Ca2+传感器。已鉴定出另外15种syt亚型,但其功能尚不太清楚。在这里,我们使用PC12细胞来检验一种观点,即不同的syt亚型赋予细胞对分泌具有不同的金属(即Ca2+、Ba2+和Sr2+)需求。这些细胞中,具有低表观金属亲和力的syt I和IX(syt IX有时称为syt V)的表达水平远高于syt VII,我们发现syt VII对金属具有相对较高的表观亲和力。我们发现syt I和VII部分共定位于大致密核心囊泡上,并且syt VII的上调会使PC12细胞儿茶酚胺释放的二价阳离子敏感性随之增加。此外,RNA干扰介导的内源性syt VII敲低降低了释放的金属敏感性。这些数据支持这样的假设,即细胞表达的syt补充物及其金属亲和力决定了胞吐作用的二价阳离子敏感性。