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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Hydroperoxide and carboxyl groups preferential location in oxidized biomembranes experimentally determined by small angle X-ray scattering: Implications in membrane structure
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Hydroperoxide and carboxyl groups preferential location in oxidized biomembranes experimentally determined by small angle X-ray scattering: Implications in membrane structure

机译:通过小角度X射线散射实验确定的氧化氧化氢和羧基优先位置:在膜结构中的影响

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We report small angle X-ray scattering (SAXS) data from large unilamellar vesicles as model membranes composed of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocoline (POPC) and two oxidized species, namely its hydroperoxidized form POPC-OOH and 1-palmitoyl-2-azelaoyl-sn-glycero-3-phosphocholine (PazePC) lipid that has a carboxyl group at the end of its truncated sn-2 chain. The replacement of POPC by either POPC-OOH (POPC-OOHxPOPC1-x or PazePC (PazePC(x)POPC(1-x)), with oxidized lipid molar ratio x varying from 0.00 up to 1.00, permits to experimentally inspect changes in the membrane structural properties due to oxidation. The volume fraction distribution of each lipid chemical group along the bilayer is determined. The results quantify that 95% of the hydroperoxide group lies in the membrane polar moiety, near the carbonyl and phosphate groups, whereas just 5% of OOH group experiences the polar/apolar interface, for all values of x studied. In the case of PazePC up to x = 0.33, a bimodal distribution of the carboxyl group in the interior and polar regions of the lipid membrane is obtained, probably due to a dynamic movement of the shortened alkyl chain towards the water interface. The mean molecular area A gradually increases from 65.4 +/- 0.4 angstrom(2) for POPC bilayers to 78 +/- 2 angstrom(2) for pure POPC-OOH bilayers, whereas POPC-OOH membrane thickness resulted to be 20% thinner than the non oxidized POPC membrane. For PazePC up to x = 0.33, A increases to 67 +/- 2 angstrom(2) with 10% of membrane thinning. The SAXS results thus demonstrate how the lipid oxidation progress affects the membrane structural features, thus paving the way to better understand membrane damage under oxidative stress.
机译:我们从大型Unilamellar囊泡报告小角度X射线散射(SAXS)数据作为由1-palmItoyl-2-Oleyoyl-sn-甘油-3-磷酸碱(POPC)和两个氧化物种组成的模型膜,即其过氧化形式popc- OOH和1-palmItoyl-2-氮杂-2-氮杂-3-磷光啉(Pazepc)脂质,其在其截短的Sn-2链的末端具有羧基。通过POPC-OOH(POPC-OOHXPOPC1-X或PAZEPC(PAZEPC(X)POPC(1-X))替换POPC,氧化脂质摩尔比x从0.00到1.00变化,允许通过实验检查变化由于氧化引起的膜结构性能。确定沿双层的每种脂质化学基团的体积分数分布。结果量化了95%的氢过氧化物基团位于膜基和磷酸盐附近的膜极性部分,而仅为5% OOH Group体验到极性/ apolar接口,用于研究的所有值。在Pazepc高达x = 0.33的情况下,获得脂质膜的内部和极性区域中的羧基的双峰分布,可能是由于缩短的烷基链朝向水界面的动态运动。平均分子面积A从65.4 +/- 0.4埃(2)逐渐增加为POPC双层至78 +/- 2埃(2),用于纯POPC-OOH双层,而popc-ooh膜thi CKNESS比非氧化POPC膜薄荷缩短了20%。对于X = 0.33的PAZEPC,增加到67 +/- 2埃(2),具有10%的膜变薄。因此,萨克斯的结果表明了脂质氧化进展如何影响膜结构特征,从而铺平了更好地了解在氧化应激下的膜损伤的方式。

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