脂质双层融合
融合
化学
脂质双层
小泡
机制(生物学)
融合机制
生物物理学
化学物理
双层
膜
纳米技术
囊泡融合
生物化学
物理
突触小泡
材料科学
量子力学
生物
哲学
语言学
作者
Marc Fuhrmans,Giovanni Marelli,Yuliya G. Smirnova,Marcus Müller
标识
DOI:10.1016/j.chemphyslip.2014.07.010
摘要
Lipid bilayers play a fundamental role in many biological processes, and a considerable effort has been invested in understanding their behavior and the mechanism of topological changes like fusion and pore formation. Due to the time- and length-scale on which these processes occur, computational methods have proven to be an especially useful tool in their study. With their help, a number of interesting findings about the shape of fusion intermediates could be obtained, and novel hypotheses about the mechanism of topological changes and the involvement of peptides therein were suggested. In this work, we try to present a summary of these developments together with some hitherto unpublished results, featuring, among others, the shape of stalks and fusion pores, possible modes of action of the influenza HA fusion peptide and the SNARE protein complex, the mechanism of supported lipid bilayer formation by vesicle spreading, and the free energy and transition pathway of the fusion process.
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