Barlowe C
Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.
J Cell Biol. 1997 Dec 1;139(5):1097-108. doi: 10.1083/jcb.139.5.1097.
A cell-free vesicle fusion assay that reproduces a subreaction in transport of pro-alpha-factor from the ER to the Golgi complex has been used to fractionate yeast cytosol. Purified Sec18p, Uso1p, and LMA1 in the presence of ATP and GTP satisfies the requirement for cytosol in fusion of ER-derived vesicles with Golgi membranes. Although these purified factors are sufficient for vesicle docking and fusion, overall ER to Golgi transport in yeast semi-intact cells depends on COPII proteins (components of a membrane coat that drive vesicle budding from the ER). Thus, membrane fusion is coupled to vesicle formation in ER to Golgi transport even in the presence of saturating levels of purified fusion factors. Manipulation of the semi-intact cell assay is used to distinguish freely diffusible ER- derived vesicles containing pro-alpha-factor from docked vesicles and from fused vesicles. Uso1p mediates vesicle docking and produces a dilution resistant intermediate. Sec18p and LMA1 are not required for the docking phase, but are required for efficient fusion of ER- derived vesicles with the Golgi complex. Surprisingly, elevated levels of Sec23p complex (a subunit of the COPII coat) prevent vesicle fusion in a reversible manner, but do not interfere with vesicle docking. Ordering experiments using the dilution resistant intermediate and reversible Sec23p complex inhibition indicate Sec18p action is required before LMA1 function.
一种无细胞囊泡融合测定法可重现前α因子从内质网到高尔基体复合体运输过程中的一个子反应,该方法已被用于对酵母胞质溶胶进行分级分离。在ATP和GTP存在的情况下,纯化的Sec18p、Uso1p和LMA1满足了内质网衍生囊泡与高尔基体膜融合时对胞质溶胶的需求。尽管这些纯化因子足以实现囊泡对接和融合,但酵母半完整细胞中从内质网到高尔基体的整体运输依赖于COPII蛋白(一种驱动内质网囊泡出芽的膜被蛋白成分)。因此,即使在纯化融合因子达到饱和水平的情况下,内质网到高尔基体运输中的膜融合也与囊泡形成相关联。通过对半完整细胞测定法的操作,可区分含有前α因子的可自由扩散的内质网衍生囊泡、对接囊泡和融合囊泡。Uso1p介导囊泡对接并产生一种抗稀释中间体。Sec18p和LMA1在对接阶段不是必需的,但对于内质网衍生囊泡与高尔基体复合体的有效融合是必需的。令人惊讶的是,Sec23p复合体(COPII被膜的一个亚基)水平升高会以可逆方式阻止囊泡融合,但不干扰囊泡对接。使用抗稀释中间体和Sec23p复合体可逆抑制进行的排序实验表明,Sec18p的作用在LMA1发挥功能之前是必需的。