外囊肿
胞吐
细胞生物学
分泌泡
胞质分裂
生物
小泡
纤毛形成
高尔基体
电池极性
酿酒酵母
分泌物
细胞
生物化学
纤毛
膜
细胞分裂
酵母
内质网
作者
Kunrong Mei,Yan Li,Shaoxiao Wang,Guang-Can Shao,Jia Wang,Yue‐He Ding,Guangzuo Luo,Yue Peng,Junjie Liu,Xinquan Wang,Meng‐Qiu Dong,Hongwei Wang,Wei Guo
标识
DOI:10.1038/s41594-017-0016-2
摘要
The exocyst is an evolutionarily conserved octameric protein complex that mediates the tethering of post-Golgi secretory vesicles to the plasma membrane during exocytosis and is implicated in many cellular processes such as cell polarization, cytokinesis, ciliogenesis and tumor invasion. Using cryo-EM and chemical cross-linking MS (CXMS), we solved the structure of the Saccharomyces cerevisiae exocyst complex at an average resolution of 4.4 Å. Our model revealed the architecture of the exocyst and led to the identification of the helical bundles that mediate the assembly of the complex at its core. Sequence analysis suggests that these regions are evolutionarily conserved across eukaryotic systems. Additional cell biological data suggest a mechanism for exocyst assembly that leads to vesicle tethering at the plasma membrane.
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