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酰基链长度不对称性对磷脂酰胆碱分散体系相变参数的影响。

The influence of acyl chain-length asymmetry on the phase transition parameters of phosphatidylcholine dispersions.

作者信息

Lin H N, Wang Z Q, Huang C H

机构信息

Department of Biochemistry, University of Virginia, Charlottesville 22908.

出版信息

Biochim Biophys Acta. 1991 Aug 5;1067(1):17-28. doi: 10.1016/0005-2736(91)90021-y.

Abstract

The influence of acyl chain-length asymmetry on the thermodynamic parameters (Tm, delta H, and delta S) associated with the reversible main phase transition of aqueous dispersions prepared from saturated diacyl phosphatidylcholines was studied by high-resolution differential scanning calorimetry. Two series of saturated diacyl phosphatidylcholines, grouped according to their molecular weights of 678 and 706, with a total number of 25 molecular species were examined. The normalized acyl chain-length difference between the sn-1 and sn-2 acyl chains for a given phospholipid molecule in the gel-state bilayer is expressed quantitatively by the structural parameter delta C/CL, and the values of delta C/CL for the two series of lipids under study vary considerably from 0.04 to 0.67. When the value of delta C/CL is within the range of 0.09-0.40, it was shown that the thermodynamic parameters are, to a first approximation, a linear function of delta C/CL with a negative slope. In addition, the experimental Tm values and the predicted Tm values put forward by Huang (Biochemistry (1991) 30, 26-30) are in very good agreement. Beyond the point of delta C/CL = 0.41, the influence of acyl chain-length asymmetry on the thermodynamic parameters deviates significantly from a linear function. In fact, within the range of delta C/CL values of 0.42-0.67, the thermodynamic parameters in the Tm (or delta H) vs. delta C/CL plot were shown to be bell-shaped with the maximal Tm (or delta H) at delta C/CL = 0.57. These results are discussed in terms of changes in the acyl chain packing modes of various phosphatidylcholine molecules within the gel-state bilayer in excess water.

摘要

通过高分辨率差示扫描量热法研究了酰基链长度不对称性对由饱和二酰基磷脂酰胆碱制备的水分散体可逆主相变相关的热力学参数(熔点、焓变和熵变)的影响。研究了根据分子量678和706分组的两个系列的饱和二酰基磷脂酰胆碱,共25种分子种类。凝胶态双层中给定磷脂分子的sn-1和sn-2酰基链之间的归一化酰基链长度差异由结构参数ΔC/CL定量表示,所研究的两个系列脂质的ΔC/CL值在0.04至0.67之间有很大差异。当ΔC/CL值在0.09 - 0.40范围内时,结果表明,热力学参数在一阶近似下是具有负斜率的ΔC/CL的线性函数。此外,实验得到的熔点值与Huang(《生物化学》(1991年)30卷,26 - 30页)提出的预测熔点值非常吻合。超过ΔC/CL = 0.41这一点,酰基链长度不对称性对热力学参数的影响显著偏离线性函数。实际上,在ΔC/CL值为0.42 - 0.67的范围内,熔点(或焓变)与ΔC/CL的关系图中的热力学参数呈钟形,在ΔC/CL = 0.57时熔点(或焓变)最大。根据过量水中凝胶态双层内各种磷脂酰胆碱分子的酰基链堆积模式的变化对这些结果进行了讨论。

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