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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Is the cholesterol bilayer domain a barrier to oxygen transport into the eye lens?
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Is the cholesterol bilayer domain a barrier to oxygen transport into the eye lens?

机译:胆固醇双层域是氧气输送到眼镜的障碍吗?

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摘要

Abstract In the eye lens, the oxygen partial pressure is very low and the cholesterol (Chol) content in cell membranes is very high. Disturbance of these quantities results in cataract development. In human lens membranes, both bulk phospholipid-Chol domains and the pure Chol bilayer domains (CBDs) were experimentally detected. It is hypothesized that the CBD constitutes a significant barrier to oxygen transport into the lens. Transmembrane profiles of the oxygen diffusion-concentration product, obtained with electron paramagnetic resonance spin-labeling methods, allow evaluation of the oxygen permeability ( P M ) of phospholipid membranes but not the CBD. Molecular dynamics simulation can independently provide components of the product across any bilayer domain, thus allowing evaluation of the P M across the CBD. Therefore, to test the hypothesis, MD simulation was used. Three bilayers containing palmitoyl-oleoyl-phosphorylcholine (POPC) and Chol were built. The pure Chol bilayer modeled the CBD, the 1:1 POPC-Chol bilayer modeled the bulk membrane in which the CBD is embedded, and the POPC bilayer was a reference. To each model, 200 oxygen molecules were added. After equilibration, the oxygen concentration and diffusion profiles were calculated for each model and multiplied by each other. From the respective product profiles, the P M of each bilayer was calculated. Favorable comparison with experimental data available only for the POPC and POPC-Chol bilayers validated these bilayer models and allowed the conclusion that oxygen permeation across the CBD is ~10 smaller than across the bulk membrane, supporting the hypothesis that the CBD is a barrier to oxygen transport into the eye lens. Graphical abstract Display Omitted Highlights ? Membranes of the eye lens cells are oversaturated with cholesterol. ? Computer models of the domains of the eye lens cell membrane were created. ? For each domain model, the oxygen permeability coefficient, P M , was calculated. ? P M values were favorably validated against the available experimental results. ? The pure cholesterol domain significantly reduces oxygen transport into the lens.
机译:摘要在眼睛镜片中,氧分压非常低,细胞膜中的胆固醇(Chol)含量非常高。这些数量的扰动导致白内障发展。在人晶状体膜中,实验检测散装磷脂 - 乳溶域和纯氯化物双层结构域(CBD)。假设CBD构成对氧气转移到镜片中的显着屏障。氧气扩散浓度产物的跨膜型材,用电子顺磁共振旋转标记方法获得,允许评估磷脂膜的氧气渗透率(P m),但不是CBD。分子动力学模拟可以独立地在任何双层结构域中独立地提供产品的组分,从而允许评估在CBD中的P m。因此,为了测试假设,使用MD模拟。建立了三种含有棕榈酰-110摩 - 磷酸胆碱(POPC)和CHOL的双层。纯Chol双层模拟CBD,1:1 POPC-CHOL双层建模,其中嵌入了CBD的散装膜,并且POPC双层是参考。向每个模型中加入200个氧分子。在平衡后,为每个模型计算氧浓度和扩散轮廓,并彼此乘以。从相应的产品型材,计算每个双层的P m。与仅适用于POPC和POPC-CHOL双层可用的实验数据的有利比较验证了这些双层模型,并允许CBD穿过氧气渗透的结论比散装膜更小,支持CBD是氧气屏障的假设运输到眼镜。图形抽象显示省略了亮点?眼睛晶状体细胞的膜用胆固醇过饱和。还创建了眼镜细胞膜域的计算机模型。还对于每个结构域模型,计算氧气渗透系数P m。还P M值是有利地验证可用的实验结果。还纯胆固醇结构域显着降低了氧气输送到镜片中。

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