Arunachalam Lakshmanan, Han Liping, Tassew Nardos G, He Yu, Wang Li, Xie Li, Fujita Yoshihito, Kwan Edwin, Davletov Bazbek, Monnier Philippe P, Gaisano Herbert Y, Sugita Shuzo
Division of Fundamental Neurobiology, Toronto Western Research Institute, University Health Network, Toronto, Ontario, M5T 2S8, Canada.
Mol Biol Cell. 2008 Feb;19(2):722-34. doi: 10.1091/mbc.e07-07-0662. Epub 2007 Dec 12.
Although Munc18-1 was originally identified as a syntaxin1-interacting protein, the physiological significance of this interaction remains unclear. In fact, recent studies of Munc18-1 mutants have suggested that Munc18-1 plays a critical role for docking of secretory vesicles, independent of syntaxin1 regulation. Here we investigated the role of Munc18-1 in syntaxin1 localization by generating stable neuroendocrine cell lines in which Munc18-1 was strongly down-regulated. In these cells, the secretion capability, as well as the docking of dense-core vesicles, was significantly reduced. More importantly, not only was the expression level of syntaxin1 reduced, but the localization of syntaxin1 at the plasma membrane was also severely perturbed. The mislocalized syntaxin1 resided primarily in the perinuclear region of the cells, in which it was highly colocalized with Secretogranin II, a marker protein for dense-core vesicles. In contrast, the expression level and the plasma membrane localization of SNAP-25 were not affected. Furthermore, the syntaxin1 localization and the secretion capability were restored upon transfection-mediated reintroduction of Munc18-1. Our results indicate that endogenous Munc18-1 plays a critical role for the plasma membrane localization of syntaxin1 in neuroendocrine cells and therefore necessitates the interpretation of Munc18-1 mutant phenotypes to be in terms of mislocalized syntaxin1.
尽管Munc18-1最初被鉴定为一种与 syntaxin1相互作用的蛋白,但其相互作用的生理意义仍不清楚。事实上,最近对Munc18-1突变体的研究表明,Munc18-1在分泌囊泡对接中起关键作用,与 syntaxin1调控无关。在此,我们通过构建Munc18-1被强烈下调的稳定神经内分泌细胞系,研究了Munc18-1在 syntaxin1定位中的作用。在这些细胞中,分泌能力以及致密核心囊泡的对接均显著降低。更重要的是,不仅 syntaxin1的表达水平降低,而且 syntaxin1在质膜上的定位也受到严重干扰。定位错误的 syntaxin1主要位于细胞的核周区域,在该区域它与致密核心囊泡的标记蛋白分泌粒蛋白II高度共定位。相比之下,SNAP-25的表达水平和质膜定位不受影响。此外,转染介导的Munc18-1重新引入后, syntaxin1的定位和分泌能力得以恢复。我们的结果表明,内源性Munc18-1在神经内分泌细胞中对 syntaxin1的质膜定位起关键作用,因此有必要根据 syntaxin1定位错误来解释Munc18-1突变体表型。