脂质双层融合
生物
ATP水解
高尔基体
细胞生物学
小泡
细胞器
膜泡运输蛋白质类
AAA蛋白
融合蛋白
ATP酶
囊泡融合
生物化学
膜
内体
内质网
酶
重组DNA
突触小泡
细胞内
基因
液泡蛋白分选
作者
Keiji Uchiyama,Eija Jokitalo,Fumi Kano,Masayuki Murata,Xiaodong Zhang,Benito Cañas,Richard Newman,Cathérine Rabouille,Darryl Pappin,Paul S. Freemont,Hisao Kondo
标识
DOI:10.1083/jcb.200208112
摘要
NSF and p97 are ATPases required for the heterotypic fusion of transport vesicles with their target membranes and the homotypic fusion of organelles. NSF uses ATP hydrolysis to dissociate NSF/SNAPs/SNAREs complexes, separating the v- and t-SNAREs, which are then primed for subsequent rounds of fusion. In contrast, p97 does not dissociate the p97/p47/SNARE complex even in the presence of ATP. Now we have identified a novel essential factor for p97/p47-mediated membrane fusion, named VCIP135 (valosin-containing protein [VCP][p97]/p47 complex-interacting protein, p135), and show that it binds to the p97/p47/syntaxin5 complex and dissociates it via p97 catalyzed ATP hydrolysis. In living cells, VCIP135 and p47 are shown to function in Golgi and ER assembly.
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