Lupashin V V, Pokrovskaya I D, McNew J A, Waters M G
Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544, USA.
Mol Biol Cell. 1997 Dec;8(12):2659-76. doi: 10.1091/mbc.8.12.2659.
The protein trafficking machinery of eukaryotic cells is employed for protein secretion and for the localization of resident proteins of the exocytic and endocytic pathways. Protein transit between organelles is mediated by transport vesicles that bear integral membrane proteins (v-SNAREs) which selectively interact with similar proteins on the target membrane (t-SNAREs), resulting in a docked vesicle. A novel Saccharomyces cerevisiae SNARE protein, which has been termed Vti1p, was identified by its sequence similarity to known SNAREs. Vti1p is a predominantly Golgi-localized 25-kDa type II integral membrane protein that is essential for yeast viability. Vti1p can bind Sec17p (yeast SNAP) and enter into a Sec18p (NSF)-sensitive complex with the cis-Golgi t-SNARE Sed5p. This Sed5p/Vti1p complex is distinct from the previously described Sed5p/Sec22p anterograde vesicle docking complex. Depletion of Vti1p in vivo causes a defect in the transport of the vacuolar protein carboxypeptidase Y through the Golgi. Temperature-sensitive mutants of Vti1p show a similar carboxypeptidase Y trafficking defect, but the secretion of invertase and gp400/hsp150 is not significantly affected. The temperature-sensitive vti1 growth defect can be rescued by the overexpression of the v-SNARE, Ykt6p, which physically interacts with Vti1p. We propose that Vti1p, along with Ykt6p and perhaps Sft1p, acts as a retrograde v-SNARE capable of interacting with the cis-Golgi t-SNARE Sed5p.
真核细胞的蛋白质运输机制用于蛋白质分泌以及胞吐和胞吞途径中驻留蛋白的定位。细胞器之间的蛋白质转运由运输小泡介导,这些小泡带有整合膜蛋白(v-SNARE),它们与靶膜上的相似蛋白(t-SNARE)选择性相互作用,从而形成停靠的小泡。通过与已知SNARE的序列相似性鉴定出一种新型的酿酒酵母SNARE蛋白,称为Vti1p。Vti1p是一种主要定位于高尔基体的25 kDa II型整合膜蛋白,对酵母的生存能力至关重要。Vti1p可以结合Sec17p(酵母SNAP),并与顺式高尔基体t-SNARE Sed5p形成对Sec18p(NSF)敏感的复合物。这种Sed5p/Vti1p复合物与先前描述的Sed5p/Sec22p顺行小泡停靠复合物不同。体内Vti1p的缺失会导致液泡蛋白羧肽酶Y通过高尔基体的运输出现缺陷。Vti1p的温度敏感突变体表现出类似的羧肽酶Y运输缺陷,但蔗糖酶和gp400/hsp150的分泌没有受到显著影响。v-SNARE Ykt6p的过表达可以挽救温度敏感的vti1生长缺陷,Ykt6p与Vti1p存在物理相互作用。我们提出,Vti1p与Ykt6p以及可能的Sft1p一起,作为一种逆行v-SNARE,能够与顺式高尔基体t-SNARE Sed5p相互作用。