Otte S, Belden W J, Heidtman M, Liu J, Jensen O N, Barlowe C
Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.
J Cell Biol. 2001 Feb 5;152(3):503-18. doi: 10.1083/jcb.152.3.503.
Proteins contained on purified COPII vesicles were analyzed by matrix-assisted laser desorption ionization mass spectrometry combined with database searching. We identified four known vesicle proteins (Erv14p, Bet1p, Emp24p, and Erv25p) and an additional nine species (Yip3p, Rer1p, Erp1p, Erp2p, Erv29p, Yif1p, Erv41p, Erv46p, and Emp47p) that had not been localized to ER vesicles. Using antibodies, we demonstrate that these proteins are selectively and efficiently packaged into COPII vesicles. Three of the newly identified vesicle proteins (Erv29p, Erv41p, and Erv46p) represent uncharacterized integral membrane proteins that are conserved across species. Erv41p and Erv46p were further characterized. These proteins colocalized to ER and Golgi membranes and exist in a detergent-soluble complex that was isolated by immunoprecipitation. Yeast strains lacking Erv41p and/or Erv46p are viable but display cold sensitivity. The expression levels of Erv41p and Erv46p are interdependent such that Erv46p was reduced in an erv41Delta strain, and Erv41p was not detected in an erv46Delta strain. When the erv41Delta or ev46Delta alleles were combined with other mutations in the early secretory pathway, altered growth phenotypes were observed in some of the double mutant strains. A cell-free assay that reproduces transport between the ER and Golgi indicates that deletion of the Erv41p-Erv46p complex influences the membrane fusion stage of transport.
通过基质辅助激光解吸电离质谱结合数据库搜索分析纯化的COPII囊泡上所含的蛋白质。我们鉴定出四种已知的囊泡蛋白(Erv14p、Bet1p、Emp24p和Erv25p)以及另外九种尚未定位于内质网囊泡的蛋白质(Yip3p、Rer1p、Erp1p、Erp2p、Erv29p、Yif1p、Erv41p、Erv46p和Emp47p)。使用抗体,我们证明这些蛋白质被选择性且高效地包装到COPII囊泡中。新鉴定出的三种囊泡蛋白(Erv29p、Erv41p和Erv46p)代表未表征的跨物种保守的整合膜蛋白。对Erv41p和Erv46p进行了进一步表征。这些蛋白质共定位于内质网和高尔基体膜,并且存在于通过免疫沉淀分离的去污剂可溶复合物中。缺乏Erv41p和/或Erv46p的酵母菌株是有活力的,但表现出冷敏感性。Erv41p和Erv46p的表达水平相互依赖,以至于在erv41Delta菌株中Erv46p减少,而在erv46Delta菌株中未检测到Erv41p。当erv41Delta或ev46Delta等位基因与早期分泌途径中的其他突变结合时,在一些双突变菌株中观察到改变的生长表型。一种重现内质网和高尔基体之间运输过程的无细胞测定表明,Erv41p-Erv46p复合物的缺失影响运输的膜融合阶段。