The energy that drives membrane fusion can come from either complete SNARE zippering, from Sec17 and Sec18, or both. Sec17 and Sec18 initially form a complex which binds membranes. Sec17, Sec18, and the apolarity of a loop on the N-domain of Sec17 are required for their interdependent membrane association. To determine whether Sec18 and the Sec17 loop apolarity are still required for fusion after their membrane arrival, a hydrophobic transmembrane (TM) anchor was affixed to the N-terminus of Sec17, forming TM-Sec17. Fusion without energy from complete SNARE zippering requires Sec18 as well as either Sec17 or TM-Sec17. Even without the need for membrane targeting, the TM-Sec17 apolar loop strongly stimulates Sec17/18-driven fusion. Thus, Sec18 and the Sec17 apolar loop are first required for membrane targeting, and once bound, drive rapid fusion. Each of these variables-the absence or presence of Sec17, its N-loop apolarity, addition or omission of Sec18, and unimpeded or diminished energy from SNARE zippering-has almost no effect on the amount of trans-SNARE complex, but instead regulates the capacity of docked membranes to fuse.
After their membrane assembly, Sec18 (NSF) and Sec17 (SNAP) promote membrane fusion.
Sec18 (NSF) 和 Sec17 (SNAP) 在膜组装完成后促进膜融合
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作者:Song Hongki, Lopes Karina, Orr Amy, Wickner William
| 期刊: | Molecular Biology of the Cell | 影响因子: | 2.700 |
| 时间: | 2024 | 起止号: | 2024 Dec 1; 35(12):ar150 |
| doi: | 10.1091/mbc.E24-10-0439 | ||
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