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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mechanical properties of bare and protein-coated giant unilamellar phospholipid vesicles. A comparative study of micropipet aspiration and atomic force microscopy
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Mechanical properties of bare and protein-coated giant unilamellar phospholipid vesicles. A comparative study of micropipet aspiration and atomic force microscopy

机译:裸露和蛋白涂层的巨型单层磷脂囊泡的机械性能。微量移液抽吸和原子力显微镜的比较研究

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摘要

In this study, protein-coated giant phospholipid vesicles were used to model cell plasma membranes coated by surface protein layers that increase membrane stiffness under mechanical or osmotic stress. These changed mechanical properties like bending stiffness, membrane area compressibility modulus, and effective Young's modulus were determined by micropipet aspiration, while bending stiffness, effective Young's modulus, and effective spring constant of vesicles were analyzed by AFM. The experimental setups, the applied models, and the results using both methods were compared here. As demonstrated before, we found that bare vesicles were best probed by micropipet aspiration due to its high sensitivity. The mechanical properties of vesicles with protein surface layers were, however, better determined by AFM because it enables very local deformations of the membrane with barely any structural damage to the protein layer. Mechanical properties of different species of coating proteins, here streptavidin and avidin, could be clearly distinguished using this technique.
机译:在这项研究中,蛋白涂层的巨型磷脂囊泡被用于模拟被表面蛋白层覆盖的细胞质膜,这些蛋白在机械或渗透压力下增加了膜的硬度。这些变化的机械性能如弯曲刚度,膜面积压缩模量和有效杨氏模量通过微量移液管吸取来确定,而弯曲刚度,有效杨氏模量和有效囊泡的弹性常数通过AFM分析。在这里比较了实验设置,应用的模型以及使用这两种方法的结果。如前所述,我们发现,由于其高灵敏度,裸露的囊泡最好用微量移液器吸出。但是,通过AFM可以更好地确定具有蛋白表面层的囊泡的机械性能,因为它可以使膜发生非常局部的变形,而对蛋白层几乎没有任何结构性破坏。使用该技术可以清楚地区分不同种类的外壳蛋白(此处为链霉亲和素和亲和素)的机械性能。

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