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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Colloidal probe microscopy of membrane-membrane interactions: from ligand-receptor recognition to fusion events.
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Colloidal probe microscopy of membrane-membrane interactions: from ligand-receptor recognition to fusion events.

机译:膜 - 膜相互作用的胶体探针显微镜:从配体受体识别到融合事件。

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摘要

A versatile model system to study membrane-membrane interactions in great detail is introduced. Based on colloidal probe microscopy with membrane covered spherical probes attached to tip-less cantilevers the interaction forces and adhesion energies are quantified down to single molecule resolution. Two opposing membranes equipped with ligands on one side and receptors on the other side were brought in contact at a defined load and pulled apart at constant velocity. Ni-NTA functionalized lipids served as receptors on the probe, while lipopeptides displaying short His-tags (CGGH(6) or CGWH(6)) were incorporated in the planar supporting membrane on a silicon substrate. The rather intricate force distance curves were scrutinized in terms of breakthrough events upon contact of the probe with the surface, the overall work of adhesion, maximum adhesion force, as well as formation frequency, lifetime, and force of membrane tethers suggesting that hemifusion of the two opposing bilayers takes place.
机译:介绍了一种多种多样的模型系统,用于研究膜膜膜的相互作用。基于胶体探针显微镜与膜覆盖的球形探针连接到倾斜的悬臂器,相互作用和粘附能量被定量为单分子分辨率。配备有一个配体的两个相对的膜在一侧和另一侧的受体上被引入限定的载荷接触并以恒定速度缩小。 Ni-NTA官能化脂质用作探针上的受体,而脂肪肽在硅衬底上的平面支撑膜中掺入平坦的支撑膜中。在探针与表面接触后的突破事件方面被仔细审查了相当复杂的力距离曲线,粘附,最大粘附力以及形成频率,寿命和膜系的力的整体工作表明该偏离的两个相反的双层举行。

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