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Area Increase and Budding in Giant Vesicles Triggered by Light: Behind the Scene

机译:光触发的巨型囊泡中面积的增加和发芽:在幕后

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摘要

Biomembranes are constantly remodeled and in cells, these processes are controlled and modulated by an assortment of membrane proteins. Here, it is shown that such remodeling can also be induced by photoresponsive molecules. The morphological control of giant vesicles in the presence of a water‐soluble ortho‐tetrafluoroazobenzene photoswitch (F‐azo) is demonstrated and it is shown that the shape transformations are based on an increase in membrane area and generation of spontaneous curvature. The vesicles exhibit budding and the buds can be retracted by using light of a different wavelength. In the presence of F‐azo, the membrane area can increase by more than 5% as assessed from vesicle electrodeformation. To elucidate the underlying molecular mechanism and the partitioning of F‐azo in the membrane, molecular dynamics simulations are employed. Comparison with theoretically calculated shapes reveals that the budded shapes are governed by curvature elasticity, that the spontaneous curvature can be decomposed into a local and a nonlocal contribution, and that the local spontaneous curvature is about 1/(2.5 µm). The results show that exo‐ and endocytotic events can be controlled by light and that these photoinduced processes provide an attractive method to change membrane area and morphology.
机译:生物膜在不断地重塑,并且在细胞中,这些过程由各种膜蛋白控制和调节。在此表明,这种重塑也可以由光响应分子诱导。证明了在水溶性邻四氟偶氮苯光开关(F-azo)的存在下大囊泡的形态控制,并且表明形状转换基于膜面积的增加和自发曲率的产生。囊泡显示出芽,并且可以通过使用不同波长的光使芽缩回。在F-azo的存在下,根据囊泡电沉积形成的膜面积可以增加5%以上。为了阐明潜在的分子机理和F-偶氮在膜中的分配,采用了分子动力学模拟。与理论计算形状的比较表明,出芽的形状受曲率弹性支配,自发曲率可以分解为局部和非局部贡献,并且局部自发曲率约为1 /(2.5 µm)。结果表明,胞外和胞吞事件可以通过光控制,这些光诱导的过程提供了一种有吸引力的改变膜面积和形态的方法。

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