精氨酸
膜
融合
化学
脂质双层融合
生物物理学
细胞穿透肽
细胞生物学
肽
细胞
生物化学
氨基酸
生物
哲学
语言学
作者
Christoph Allolio,Aniket Magarkar,Piotr Jurkiewicz,Katarína Baxová,Matti Javanainen,Philip E. Mason,Radek Šachl,Marek Cebecauer,Martin Hof,Dominik Horinek,Veronika Heinz,Reinhard Rachel,Christine Ziegler,Adam Schröfel,Pavel Jungwirth
标识
DOI:10.1073/pnas.1811520115
摘要
Arginine-rich cell-penetrating peptides do not enter cells by directly passing through a lipid membrane; they instead passively enter vesicles and live cells by inducing membrane multilamellarity and fusion. The molecular picture of this penetration mode, which differs qualitatively from the previously proposed direct mechanism, is provided by molecular dynamics simulations. The kinetics of vesicle agglomeration and fusion by an iconic cell-penetrating peptide-nonaarginine-are documented via real-time fluorescence techniques, while the induction of multilamellar phases in vesicles and live cells is demonstrated by a combination of electron and fluorescence microscopies. This concert of experiments and simulations reveals that the identified passive cell penetration mechanism bears analogy to vesicle fusion induced by calcium ions, indicating that the two processes may share a common mechanistic origin.
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