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Analysis of the bilayer phase transition temperatures of phosphatidylcholines with mixed chains

机译:混合链磷脂酰胆碱的双层相变温度分析

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摘要

The analysis of the chain-length dependence of the chain-melting transition temperatures of bilayers composed of lipids with identical chains (Marsh, D. 1991. Biochim. Biophys. Acta. 1062: 1-6) is extended to include lipids with chains of unequal length. The bilayer transition temperatures of saturated asymmetrical phosphatidylcholines are interpreted by assuming that the transition enthalpy and transition entropy are linearly related to the absolute value of the difference in chain length between the sn-1 and sn-2 chains, with constant end contributions. Such an assumption is supported by calorimetric data on phosphatidylcholines of constant mean chainlength and varying chain asymmetry. In particular, a symmetrical linear dependence is observed on the chain asymmetry, Δn, which is centered around a value Δn° that corresponds to the conformational inequivalence of the sn-1 and sn-2 chains. The transition temperature then takes the form: Tt = Tt(n - nH - h′ ǀ Δn + Δn° ǀ)/(n - ns - s′ ǀ Δn + Δn°) where nH, ns are the end contributions, and h′, s′ are fractional deficits in the incremental transition enthalpy and entropy, respectively, arising from the overlapping regions of the longer chains. Optimization on the transition temperature data for the dependence on chain asymmetry of three series of phosphatidylcholines with constant mean chainlength, n, yields parameters that are capable of predicting the dependence of the transition temperatures on chain asymmetry for other mean chainlengths. The dependence of the transition temperature on mean chainlength for phosphatidylcholines in which the chain asymmetry is maintained constant, as well as the dependence on both mean chain length and chain asymmetry for phosphatidylcholines in which one of the two chains is maintained of constant length, are also described with high accuracy by using the same parameters.
机译:对由具有相同链的脂质组成的双层的链熔化转变温度的链长依赖性的分析(Marsh,D. 1991. Biochim。Biophys。Acta。1062:1-6)扩展为包括具有以下链的脂质:不等长。通过假设过渡焓和过渡熵与sn-1和sn-2链之间链长差的绝对值线性相关,并具有恒定的末端贡献,可以解释饱和不对称磷脂酰胆碱的双层转变温度。具有恒定平均链长和可变链不对称性的磷脂酰胆碱的量热数据支持了这种假设。特别地,在链不对称性Δn上观察到对称的线性依赖性,其以值nn°为中心,该值对应于sn-1和sn-2链的构象不等。然后,转变温度采用以下形式:Tt = Tt (n-nH-h'ǀΔn+Δn°ǀ)/(n-ns-s'ǀΔ n n °),其中 n H, n s是最终贡献,而 h ',< em> s '是分别由较长链的重叠区域引起的增量跃迁焓和熵的分数不足。优化具有恒定平均链长 n 的三个系列磷脂酰胆碱对链不对称性的依赖的转变温度数据,可以预测过渡温度对其他均值对链不对称性的依赖链长。对于其中链不对称保持恒定的磷脂酰胆碱,转变温度对平均链长的依赖性以及对其中两条链之一保持恒定长度的磷脂酰胆碱的平均链长和链不对称性的依赖性也是如此。使用相同的参数进行高精度描述。

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