Fujita Yoshihito, Xu Ainan, Xie Li, Arunachalam Lakshmanan, Chou Ting-Chieh, Jiang Tiandan, Chiew Soon-Kwang, Kourtesis John, Wang Li, Gaisano Herbert Y, Sugita Shuzo
Division of Fundamental Neurobiology, Toronto Western Research Institute, University Health Network, Department of Physiology, University of Toronto, Toronto, Ontario M5T 2S8, Canada.
J Biol Chem. 2007 Jul 20;282(29):21392-403. doi: 10.1074/jbc.M703699200. Epub 2007 May 31.
Although CAPS1 was originally identified as a soluble factor that reconstitutes Ca(2+)-dependent secretion from permeabilized neuroendocrine cells, its exact function in intact mammalian cells remains controversial. Here we investigate the role for CAPS1 by generating stable cell lines in which CAPS1 is strongly down-regulated. In these cells, Ca(2+)-dependent secretion was strongly reduced not only of catecholamine but also of a transfected neuropeptide. These secretion defects were rescued by infusion of CAPS1-containing brain cytosol or by transfection-mediated expression of CAPS1. Whole cell patch clamp recording revealed significant reductions in slow burst and sustained release components of exocytosis in the knockdown cells. Unexpectedly, they also accumulated higher amounts of endogenous and exogenous transmitters, which were attributable to reductions in constitutive secretion. Electron microscopy did not reveal abnormalities in the number or docking of dense core vesicles. Our results indicate that CAPS1 plays critical roles not only in Ca(2+)-dependent, regulated exocytosis but also in constitutive exocytosis downstream of vesicle docking. However, they do not support the role for CAPS1 in loading transmitters into dense core vesicles.
尽管CAPS1最初被鉴定为一种可溶解因子,它能在通透的神经内分泌细胞中重建钙(Ca2+)依赖性分泌,但其在完整哺乳动物细胞中的具体功能仍存在争议。在此,我们通过构建稳定细胞系来研究CAPS1的作用,在这些细胞系中,CAPS1被强烈下调。在这些细胞中,不仅儿茶酚胺的钙(Ca2+)依赖性分泌显著减少,转染的神经肽的分泌也显著减少。通过注入含CAPS1的脑细胞质或转染介导的CAPS1表达可挽救这些分泌缺陷。全细胞膜片钳记录显示,在敲低细胞中,胞吐作用的慢爆发和持续释放成分显著减少。出乎意料的是,它们还积累了更高量的内源性和外源性递质,这归因于组成型分泌的减少。电子显微镜未发现致密核心囊泡的数量或对接存在异常。我们的结果表明,CAPS1不仅在钙(Ca2+)依赖性调节性胞吐作用中起关键作用,而且在囊泡对接下游的组成型胞吐作用中也起关键作用。然而,它们并不支持CAPS1在将递质装载到致密核心囊泡中的作用。