Low S H, Roche P A, Anderson H A, van Ijzendoorn S C, Zhang M, Mostov K E, Weimbs T
Department of Anatomy, Cardiovascular Research Institute, University of California, San Francisco, California 94143-0452, USA.
J Biol Chem. 1998 Feb 6;273(6):3422-30. doi: 10.1074/jbc.273.6.3422.
SNAP-23 is the ubiquitously expressed homologue of the neuronal SNAP-25, which functions in synaptic vesicle fusion. We have investigated the subcellular localization of SNAP-23 in polarized epithelial cells. In hepatocyte-derived HepG2 cells and in Madin-Darby canine kidney (MDCK) cells, the majority of SNAP-23 was present at both the basolateral and apical plasma membrane domains with little intracellular localization. This suggests that SNAP-23 does not function in intracellular fusion events but rather as a general plasma membrane t-SNARE. Canine SNAP-23 is efficiently cleaved by the botulinum neurotoxin E, suggesting that it is the toxin-sensitive factor previously found to be involved in plasma membrane fusion in MDCK cells. The localization of SNAP-25 in transfected MDCK cells was studied for comparison and was found to be identical to SNAP-23 with the exception that SNAP-25 was transported to the primary cilia protruding from the apical plasma membrane, which suggests that subtle differences in the targeting signals of both proteins exist. In contrast to its behavior in neurons, the distribution of SNAP-25 in MDCK cells remained unaltered by treatment with dibutyryl cAMP or forskolin, which, however, caused an increased growth of the primary cilia. Finally, we found that SNAP-23/25 and syntaxin 1A, when co-expressed in MDCK cells, do not stably interact with each other but are independently targeted to the plasma membrane and lysosomes, respectively.
SNAP-23是神经元SNAP-25的普遍表达同源物,在突触小泡融合中发挥作用。我们研究了SNAP-23在极化上皮细胞中的亚细胞定位。在肝细胞来源的HepG2细胞和Madin-Darby犬肾(MDCK)细胞中,大多数SNAP-23存在于基底外侧和顶端质膜结构域,细胞内定位很少。这表明SNAP-23不在细胞内融合事件中起作用,而是作为一种普遍的质膜t-SNARE。犬SNAP-23能被肉毒杆菌神经毒素E有效切割,表明它是先前发现的参与MDCK细胞质膜融合的毒素敏感因子。为作比较,研究了转染的MDCK细胞中SNAP-25的定位,发现它与SNAP-23相同,只是SNAP-25被转运到从顶端质膜突出的初级纤毛上,这表明这两种蛋白质的靶向信号存在细微差异。与它在神经元中的行为不同,MDCK细胞中SNAP-25的分布在用二丁酰环磷腺苷或福斯可林处理后保持不变,然而,这两种物质会导致初级纤毛生长增加。最后,我们发现,当SNAP-23/25和 syntaxin 1A在MDCK细胞中共表达时,它们不会彼此稳定相互作用,而是分别独立靶向质膜和溶酶体。