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Material Properties of Lipid Microdomains: Force-Volume Imaging Study of the Effect of Cholesterol on Lipid Microdomain Rigidity

机译:脂质微区的材料特性:胆固醇对脂质微区刚性的影响的力-体积成像研究

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摘要

The effect of cholesterol (CHOL) on the material properties of supported lipid bilayers composed of lipid mixtures that mimic the composition of lipid microdomains was studied by force-volume (FV) imaging under near-physiological conditions. These studies were carried out with lipid mixtures of dioleoylphosphatidylcholine, dioleoylphosphatidylserine, and sphingomyelin. FV imaging enabled simultaneous topology and force measurements of sphingomyelin-rich domains (higher domain (HD)) and phospholipid-rich domains (lower domain (LD)), which allowed quantitative measurement of the force needed to puncture the lipid bilayer with or without CHOL. The force required to penetrate the various domains of the bilayer was probed using high- and low-ionic-strength buffers as a function of increasing amounts of CHOL in the bilayer. The progressive addition of CHOL also led to a decreasing height difference between HD and LD. FV imaging further demonstrated a lack of adhesion between the atomic force microscope tip and the HD or LD at loads below the breakthrough force. These results can lead to a better understanding of the role that CHOL plays in the mechanical properties of cellular membranes in modulating membrane rigidity, which has important implications for cellular mechanotransduction.
机译:通过在近似生理条件下通过力-体积(FV)成像研究了胆固醇(CHOL)对支持脂质双层的材料特性的影响,该脂质双层由模仿脂质微域组成的脂质混合物组成。这些研究是用二油酰基磷脂酰胆碱,二油酰基磷脂酰丝氨酸和鞘磷脂的脂质混合物进行的。 FV成像可同时测量富含鞘磷脂的域(较高域(HD))和富含磷脂的域(较低域(LD))的拓扑和力,从而可以定量测量穿刺或不穿CHOL的双层脂质所需的力。使用高离子强度和低离子强度的缓冲剂来探测穿透双层各个区域所需的力,这是双层中CHOL数量增加的函数。 CHOL的逐步添加还导致HD和LD之间的高度差减小。 FV成像进一步证明,在低于穿透力的载荷下,原子力显微镜尖端与HD或LD之间没有粘附。这些结果可以使人们更好地了解CHOL在调节细胞膜的膜硬度方面在细胞膜力学特性中的作用,这对细胞机械传递具有重要意义。

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