Liao Haini, Zhang Jie, Shestopal Svetlana, Szabo Gabor, Castle Anna, Castle David
Dept. of Cell Biology and Cell and Developmental Biology Program , Univ. of Virginia, Charlottesville, VA 22908, USA.
Am J Physiol Cell Physiol. 2008 Mar;294(3):C797-809. doi: 10.1152/ajpcell.00493.2007. Epub 2008 Jan 2.
Five secretory carrier membrane proteins (SCAMP-1, -2, -3, -4, and -5) have been characterized in mammalian cells. Previously, SCAMP-1 and -2 have been implicated to function in exocytosis. RNA inhibitor-mediated deficiency of one or both of these SCAMPs interferes with dense core vesicle (DCV) exocytosis in neuroendocrine PC12 cells as detected by amperometry. Knockdowns of these SCAMPs each decreased the number and frequency of depolarization-induced exocytotic events. SCAMP-2 but not SCAMP-1 depletion also delayed the onset of exocytosis. Both knockdowns, however, altered fusion pore dynamics, increasing rapid pore closure and decreasing pore dilation. In contrast, knockdowns of SCAMP-3 and -5 only interfered with the frequency of fusion pore opening and did not affect the dynamics of newly opened pores. None of the knockdowns noticeably affected upstream events, including the distribution of DCVs near the plasma membrane and calcium signaling kinetics, although norepinephrine uptake/storage was moderately decreased by deficiency of SCAMP-1 and -5. Thus, SCAMP-1 and -2 are most closely linked to the final events of exocytosis. Other SCAMPs collaborate in regulating fusion sites, but the roles of individual isoforms appear at least partially distinct.
在哺乳动物细胞中已鉴定出五种分泌载体膜蛋白(SCAMP-1、-2、-3、-4和-5)。此前,已有研究表明SCAMP-1和-2在胞吐作用中发挥作用。通过安培法检测发现,RNA抑制剂介导的这两种SCAMP中的一种或两种缺失会干扰神经内分泌PC12细胞中的致密核心囊泡(DCV)胞吐作用。敲低这些SCAMP中的每一种都会减少去极化诱导的胞吐事件的数量和频率。敲低SCAMP-2而非SCAMP-1还会延迟胞吐作用的起始。然而,两种敲低都会改变融合孔动力学,增加快速孔关闭并减少孔扩张。相比之下,敲低SCAMP-3和-5仅会干扰融合孔开放的频率,而不影响新开放孔的动力学。尽管SCAMP-1和-5的缺失会适度降低去甲肾上腺素的摄取/储存,但这些敲低均未明显影响上游事件,包括DCV在质膜附近的分布和钙信号动力学。因此,SCAMP-1和-2与胞吐作用的最终事件联系最为紧密。其他SCAMP在调节融合位点方面协同作用,但各个异构体的作用似乎至少部分不同。