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Force measurements on myelin basic protein adsorbed to mica and lipid bilayer surfaces done with the atomic force microscope.

机译:用原子力显微镜对吸附到云母和脂质双层表面的髓磷脂碱性蛋白进行力测量。

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摘要

The mechanical and adhesion properties of myelin basic protein (MBP) are important for its function, namely the compaction of the myelin sheath. To get more information about these properties we used atomic force microscopy to study tip-sample interaction of mica and mixed dioleoylphosphatidylserine (DOPS) (20%)/egg phosphatidylcholine (EPC) (80%) lipid bilayer surfaces in the absence and presence of bovine MBP. On mica or DOPS/EPC bilayers a short-range repulsive force (decay length 1.0-1.3 nm) was observed during the approach. The presence of MBP always led to an attractive force between tip and sample. When retracting the tip again, force curves on mica and on lipid layers were different. While attached to the mica surface, the MBP molecules exhibited elastic stretching behavior that agreed with the worm-like chain model, yielding a persistence length of 0.5 +/- 0.25 nm and an average contour length of 53 +/- 19 nm. MBP attached to a lipid bilayer did not show elastic stretching behavior. This shows that the protein adopts a different conformation when in contact with lipids. The lipid bilayer is strongly modified by MBP attachment, indicating formation of MBP-lipid complexes and possibly disruption of the original bilayer structure.
机译:髓磷脂碱性蛋白(MBP)的机械和粘附特性对其功能(即髓鞘的紧实度)很重要。为了获得有关这些特性的更多信息,我们使用原子力显微镜研究了云母与混合的油酰磷脂酰胆碱(DOPS)(20%)/卵磷脂酰胆碱(EPC)(80%)脂质双层表面在云母之间的相互作用。 MBP。在云母或DOPS / EPC双层上,在进近过程中观察到了短程排斥力(衰减长度为1.0-1.3 nm)。 MBP的存在总是会导致针尖和样品之间产生吸引力。当再次缩回尖端时,云母和脂质层上的力曲线不同。当附着在云母表面时,MBP分子表现出与蠕虫状链模型一致的弹性拉伸行为,其持久长度为0.5 +/- 0.25 nm,平均轮廓长度为53 +/- 19 nm。附着在脂质双层上的MBP没有显示弹性拉伸行为。这表明该蛋白质与脂质接触时采用不同的构象。 MBP附着强烈修饰了脂质双层,表明形成了MBP-脂质复合物,并可能破坏了原始双层结构。

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