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首页> 外文期刊>Biophysical Journal >Phase separation in binary mixtures of bipolar and monopolar lipid dispersions revealed by 2H NMR spectroscopy, small angle x-ray scattering, and molecular theory.
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Phase separation in binary mixtures of bipolar and monopolar lipid dispersions revealed by 2H NMR spectroscopy, small angle x-ray scattering, and molecular theory.

机译:2H NMR光谱,小角度X射线散射和分子理论揭示了双极性和单极性脂质分散体的二元混合物的相分离。

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Binary mixtures of C(20)BAS and POPC membranes were studied by solid-state (2)H NMR spectroscopy and small angle x-ray scattering (SAXS) over a wide range of concentrations and at different temperatures. Three specifically deuterated C(20)BAS derivatives--[1',1',20',20'-(2)H(4)]C(20)BAS, [2',2',19',19'-(2)H(4)]C(20)BAS, and [10',11'-(2)H(2)]C(20)BAS--combined with protiated 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC), as well as membranes containing POPC-d(31) and fully protiated bolalipid, were used in NMR experiments to obtain structural information for the mixtures. The (2)H NMR spectra of [10',11'-(2)H(2)]C(20)BAS/POPC membrane dispersions reveal that the bolalipid is predominantly in the transmembrane conformation at high bolalipid concentrations (100, 90, and 70 mol %). At < or =50 mol % C(20)BAS, smaller quadrupolar couplings appear in the spectra, indicating the presence of U-shaped conformers. The proportion of U-shaped bolalipids increases as the amount of POPC in the membrane increases; however, the transmembrane component remains the dominant bolalipid conformation in the membrane even at 45 degrees C and 10 mol % C(20)BAS, where it accounts for approximately 50% of the bolalipid population. The large fraction of C(20)BAS transmembrane conformers, regardless of the C(20)BAS/POPC ratio, together with the findings from molecular mean-field theory calculations, suggests the coexistence of phase-separated bolalipid-rich domains and POPC-rich domains. A single lamellar repeat distance was observed in SAXS experiments corresponding to the average repeat spacing expected for C(20)BAS- and POPC-rich domains. These observations are consistent with the presence of microphase-separated domains in the mixed membrane samples that arise from POPC-C(20)BAS hydrophobic mismatch.
机译:C(20)BAS和POPC膜的二元混合物通过固态(2)H NMR光谱和小角度X射线散射(SAXS)在很宽的浓度范围和不同的温度下进行了研究。三个专门氘化的C(20)BAS衍生物-[1',1',20',20'-(2)H(4)] C(20)BAS,[2',2',19',19' -(2)H(4)] C(20)BAS和[10',11'-(2)H(2)] C(20)BAS-与精制的1-棕榈酰基-2-油酰基-sn结合NMR实验中使用了-glycer-3-phosphocholine(POPC)以及含有POPC-d(31)和完全精制的bolalipid的膜,从而获得了混合物的结构信息。 [10',11'-(2)H(2)] C(20)BAS / POPC膜分散液的(2)H NMR光谱显示,在高浓度的bolalipid中,bolalipid主要位于跨膜构象中(100,90和70mol%)。在≤50 mol%C(20)BAS时,光谱中出现较小的四极偶合,表明存在U形构象体。随着膜中POPC含量的增加,U型糖脂的比例也增加;然而,跨膜成分即使在45°C和10 mol%C(20)BAS时仍保持膜中的主要玻利班构象,约占玻利班人口的50%。不论C(20)BAS / POPC比率如何,大部分C(20)BAS跨膜构象异构体,以及分子均场理论计算的发现,都表明相分离的富含玻利哌啶的结构域和POPC-共存丰富的域名。在SAXS实验中观察到单个层状重复距离,对应于C(20)BAS和POPC丰富域预期的平均重复间隔。这些观察结果与POPC-C(20)BAS疏水性不匹配引起的混合膜样品中存在微相分离域是一致的。

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