首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Clustering of spin-labeled cholesterol analog diluted in bilayers of saturated and unsaturated phospholipids
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Clustering of spin-labeled cholesterol analog diluted in bilayers of saturated and unsaturated phospholipids

机译:在饱和和不饱和磷脂双层稀释的旋转标记的胆固醇类似物的聚类

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摘要

Clustering of spin-labeled cholesterol analog, 3 beta-doxyl-5 alpha-cholestane (DChl), diluted in bilayers comprised of either saturated dipalmitoyl-glycero-phosphocholine (DPPC) or unsaturated dioleoyl-glycero-phosphocholine (DOPC) phospholipids was studied. DChl molar fraction X varied between 0.005 and 0.04. EPR spectroscopy applied at low temperatures (200 K) enabled exploring magnetic dipole-dipole (d-d) interaction between spin labels. For DOPC bilayers, EPR spectra were found to broaden remarkably with X increase. The broadening was simulated for the models of 2-dimentional (2-D) clusters with enhanced local concentration, X-loc, which was several times larger than X, and for 1-dimensional (1-D) DChl clusters. The distance of closest approach in these simulations attained the intermolecular lateral distance in the membrane (similar to 0.7 nm). For DPPC bilayers, EPR spectra showed only small broadening, which in these simulations could not be reproduced even if X-loc was taken as small as X. However strong concentration dependence was found for electron spin echo (ESE) decays. Both the EPR and ESE data for DPPC bilayers were explained within the model assuming encapsulation of DChl molecules in lipid shells so preventing them to approach each other closer than a certain distance, R-min. The R-min value was found to vary between similar to 2.5 nm and 5 nm, for X varying between 0.04 and 0.005; X-loc, in these simulations was several times larger than X. So the DChl clustering in DOPC bilayers is driven by attractive lipid-mediated forces, while in DPPC bilayers long-range nanoscale lipid-mediated repulsive/attractive forces take place for distances smaller and larger R-min correspondingly.
机译:研究了在由饱和二普利 - 甘油 - 磷光籽(DPPC)或不饱和Dioledoyl-甘油 - 普华啉(DOPC)磷化物中包含的双层稀释的双层稀释的旋转胆固醇类似物,3β-二×5α-5α-胆汁甾烷(DCH1)的聚合物。 DCHL摩尔分数X在0.005和0.04之间变化。在低温(200K)处施加EPR光谱,使探索源偶极子(D-D)在旋转标签之间的相互作用。对于DOPC双层,发现EPR光谱随着X增加而显着拓宽。为具有增强的局部浓度,X-LOC的二维(2-D)簇的模型模拟扩大,X-LOC,其大于X的几倍,并且对于1维(1-D)DCH1簇。这些模拟中最近方法的距离达到膜中的分子间横向距离(类似于0.7nm)。对于DPPC双层,EPR光谱显示出小的宽度,即使X-LOC被X-LOC作为X小,也不能再现这些模拟。然而,对于电子旋转回波(ESE)衰减,发现强浓度依赖性。在脂质壳中的DCHL分子封装的模型中解释了DPPC双层的EPR和ESE数据均在模型中解释,因此防止它们彼此接近近于一定距离,R-min。发现R-min值在类似于2.5nm和5nm之间变化,x不同于0.04和0.005;在这些模拟中,X-LOC比X大的几倍。因此,DOPC双层中的DCHL聚类是由有吸引力的脂质介导的力驱动的,而在DPPC双层的远程纳米级血脂介导的扰动/有吸引力的距离较小和更大的r-min。

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