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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Differential Properties of the Sterols Cholesterol, Ergosterol, β-Sitosterol, trans-7-Dehydrocholesterol, Stigmasterol and Lanosterol on DPPC Bilayer Order
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Differential Properties of the Sterols Cholesterol, Ergosterol, β-Sitosterol, trans-7-Dehydrocholesterol, Stigmasterol and Lanosterol on DPPC Bilayer Order

机译:甾醇胆固醇,麦角固醇,β-谷甾醇,反式7-脱氢胆固醇,豆甾醇和羊毛甾醇在DPPC双层顺序上的差异性

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摘要

Cholesterol, its precursor lanosterol, the plant sterols β-sitosterol and ergosterol, as well as three further sterols were added up to 50 mol % to vesicles of the phospholipid 1,2-dipalmitoyl-sn-glycero-3-phgosphatidylcholine (DPPC). The aim of this study was to investigate the influence of the sterol side chain and ring structure on the acyl chain orientational order of the lipid bilayer by measuring the steady-state fluorescence anisotropy r_(ss) of the fluorophore 1-(4-trimethylammonium-phenyl)-6-phenyl-1,3,5-hexatriene (TMA-DPH) and to establish the molecular basis underlying the changes in order parameter of the lipid bilayer system. Experiments were carried out in the temperature range from 30 to 60 ℃, i.e., at temperatures below and above the gel to liquid-crystalline phase transition temperature T_m of DPPC bilayers. In general, the incorporation of the different sterols into the DPPC bilayer enhances the orientational order of TMA-DPH in the liquid-crystalline state of DPPC, whereas the orientational order in the gel state is slightly reduced. We found that the molecular interactions between DPPC and sterols distinctly depend on the structure of the side chain and nucleus of the sterols. Compared to cholesterol, the presence of the additional ethyl group on the alkyl side chain of β-sitosterol markedly reduces the effectiveness of the sterol on ordering the fluid DPPC bilayers over the whole concentration range of the sterol up to 50 mol %. As can be seen from the comparison with the other sterol mixtures, an increase in alkyl chain volume has the most drastic effect on the condensing capacity of sterols. Introduction of a double bond in the side chain counteracts this effect, owing to the decreased volume fluctuations in the steroid alkyl chain region. Interestingly, also introduction of a double bond in the sterol ring system leads at low sterol levels to a drastic increase in conformational order of the lipid acyl chains, which can even be substantially higher than that induced by cholesterol. Additional methyl groups in the ring system of the sterol markedly counteract this rigidifying effect. Hence, the lipids in the lanosterol-containing membrane are significantly less ordered than those in the cholesterol-containing membrane. Sterols with the bulkiest unsaturated side chains or sterol nuclei (stigmasterol, β-sitosterol, and lanosterol) induce the smallest order parameter increase of the fluid bilayer at high sterol concentrations (>30 mol %), and hence become less potent rigidifiers at high sterol levels. At the highest sterol levels, cholesterol and the plant sterol ergosterol have the most profound ordering effect on fluid DPPC bilayers.
机译:将胆固醇,其前体羊毛甾醇,植物固醇β-谷固醇和麦角固醇以及另外三种其他固醇以不超过50摩尔%的比例添加至磷脂1,2-二棕榈酰-sn-甘油-3-磷脂酰胆碱(DPPC)的囊泡中。这项研究的目的是通过测量荧光团1-(4-三甲基铵-)的稳态荧光各向异性r_(ss),研究固醇侧链和环结构对脂质双层的酰基链取向顺序的影响。苯基)-6-苯基-1,3,5-己三烯(TMA-DPH)并建立潜在的分子基础,改变脂质双层系统的顺序参数。实验是在30至60℃的温度范围内进行的,即在从凝胶到DPPC双层液晶相变温度T_m上下的温度下进行。通常,将不同的甾醇掺入DPPC双层中可增强在DPPC液晶态下TMA-DPH的取向顺序,而在凝胶态下的取向顺序则稍微降低。我们发现,DPPC和固醇之间的分子相互作用明显取决于固醇的侧链和核的结构。与胆固醇相比,β-谷甾醇烷基侧链上额外乙基的存在显着降低了在高达50 mol%的整个甾醇浓度范围内排列流体DPPC双层时,甾醇的有效性。从与其他固醇混合物的比较中可以看出,烷基链体积的增加对固醇的冷凝能力具有最大的影响。由于在甾族烷基链区域中减小的体积波动,在侧链中引入双键抵消了该作用。有趣的是,在固醇环系统中引入双键也会在低固醇水平下导致脂酰基链构象顺序的急剧增加,甚至可以大大高于胆固醇诱导的构象。固醇的环系统中的其他甲基明显抵消了这种硬化作用。因此,含羊毛甾醇的膜中的脂质比含胆固醇的膜中的脂质有序地少。具有最大不饱和侧链或甾醇核(豆甾醇,β-谷甾醇和羊毛甾醇)的甾醇在高固醇浓度(> 30 mol%)下引起流体双层的最小阶数参数增加,因此在高固醇下变得无效水平。在最高固醇水平下,胆固醇和植物固醇麦角固醇对液体DPPC双层的影响最深。

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