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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The effect of ethanol the phase transition temperature and the phase structure of monounsaturated phosphatidylcholines
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The effect of ethanol the phase transition temperature and the phase structure of monounsaturated phosphatidylcholines

机译:乙醇,单不饱和磷脂酰胆碱的相变温度和相结构的影响

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摘要

Previous studies from our laboratories have delineated the relationship between the acyl chain asymmetry of mixed-chain phosphatidylcholines, C(X):C(Y)PC, and the effect of ethanol concentration, [EtOH], on the main phase transition temperature, T_m, and the phase structure of the lipid bilayer composed of C(X):C(Y)PC using differential scanning calorimetry and X-ray diffraction techniques [Huang and McIntosh, Biophys. J. 72 (1997) 2702-2709]. In the present work, we have extended these studies to characterize the effect of [EtOH] on the T_m and the phase structure of the lipid bilayer composed of sn-1 saturated/sn-2 monounsaturated phosphatidylcholines with various positions of the cis double bond. Specifically, five positional isomers of 1-eicosanoyl-2-eicosenoyl-sn-glycero-3-phosphocholines, C(20):C(20:1Δ~N)PC with n = 5, 8, 11, 13 and 17, were synthesized and studied. For C(20):C(20:1Δ~n)PC with n = 5 and 8, results from the calorimetric experiments showed that in response to various concentrations of ethanol, the change in T_m of the lipid bilayer composed of monounsaturated lipids was characterized by a sigmoidal or biphasic profile in the plot of T_m versus [EtOH]. In contrast, a continuous depression of the T_m by ethanol was observed calorimetrically for C(20):C(20:1Δ~n)PC with n ≥ 11. The X-ray diffraction experiments further demonstrated that C(20):C(20:1Δ~5)PC and C(20):C(20:1Δ~8)PC can undergo the ethanolinduced gel-to-fully interdigitated phase transition at T < T_m. Such a transition, however, was not observed for C(20):C(20:1Δ~(13))PC even at a very high ethanol concentration of 100 mg/ml. These distinct different effects of [EtOH] on the phase transition temperature and the phase structure can be attributed to various positions of the cis double bond in these monounsaturated phosphatidylcholines. And the different effects of ethanol can, in fact, be explained based on the molecular structures of these monounsaturated lipids packed in the gel-state bilayer as generated by molecular mechanics simulations. To the best of our knowledge, this is the first time that the ethanol-induced fully interdigitated bilayers are observed at T < T_m for unsaturated phospholipids with well defined double bond positions in their sn-2 acyl chains.
机译:我们实验室的先前研究已经描述了混合链磷脂酰胆碱C(X):C(Y)PC的酰基链不对称性与乙醇浓度[EtOH]对主相变温度T_m的关系。 ,以及使用差示扫描量热法和X射线衍射技术由C(X):C(Y)PC组成的脂质双层的相结构[Huang and McIntosh,Biophys。 J. 72(1997)2702-2709]。在目前的工作中,我们已经扩展了这些研究,以表征[EtOH]对T_m的影响以及由具有顺式双键不同位置的sn-1饱和/ sn-2单不饱和磷脂酰胆碱组成的脂质双层的相结构的特征。具体地,n = 5、8、11、13和17的1-二十烷酰基-2-二十碳烯酰基-sn-甘油-3-磷酸胆碱的五个位置异构体C(20):C(20:1Δ〜N)PC是综合和研究。对于n = 5和8的C(20):C(20:1Δ〜n)PC,量热实验结果表明,响应于不同浓度的乙醇,由单不饱和脂质组成的脂质双层的T_m变化为在T_m对[EtOH]的曲线图中特征为S形或双相。相反,对于n≥11的C(20):C(20:1Δ〜n)PC,通过量热法观察到乙醇连续降低T_m。X射线衍射实验进一步证明C(20):C( 20:1Δ〜5)PC和C(20):C(20:1Δ〜8)PC可以在T

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