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完全水合的饱和磷脂酰丝氨酸双层膜的红外研究。Li⁺和Ca²⁺的影响。

Infrared studies of fully hydrated saturated phosphatidylserine bilayers. Effect of Li+ and Ca2+.

作者信息

Casal H L, Mantsch H H, Hauser H

机构信息

Division of Chemistry, National Research Council of Canada, Ottawa.

出版信息

Biochemistry. 1987 Jul 14;26(14):4408-16. doi: 10.1021/bi00388a033.

Abstract

The thermotropic phase behavior of fully hydrated Na+ and/or NH4+ salts of 1,2-dimyristoyl-sn-glycero-3-phospho-L-serine (DMPS) was determined by temperature-dependent infrared spectra. The molecular level properties and thermal phase behavior of DMPS-Li+ complexes were also characterized by infrared spectroscopy. With increasing concentrations of Li+, the infrared spectra reveal the appearance of a second, more ordered, lipid phase which shows a gel to liquid-crystal transition at significantly higher temperatures (75-95 degrees C) than the Na+ or NH4+ salts of DMPS (39 degrees C). Li+ binds to the phosphate and carboxylate groups of DMPS, resulting in the following changes: (1) water of hydration is lost from both the carboxylate and phosphate groups; (2) there are changes in the conformation of the glycerol backbone but not in the P-O ester bonds of the phosphate group which remain in the gauche-gauche conformation; and (3) the packing of the fatty acyl chains becomes more ordered. In addition, the properties of the DMPS-Ca2+ complex were studied by infrared spectroscopy. While the DMPS-Ca2+ complex is also characterized by rigidly packed, well-ordered fatty acyl chains, the mode of Ca2+ binding to the DMPS head groups differs significantly from that of Li+ binding. By comparison, with dry DMPS-Ca2+ [Casal, H. L., Mantsch, H. H., Paltauf, F., & Hauser, H. (1987) Biochim. Biophys. Acta (in press)], the phosphate group undergoes a conformational change, probably to the antiplanar-antiplanar conformation, and loses its water of hydration.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过温度依赖红外光谱测定了完全水合的1,2-二肉豆蔻酰-sn-甘油-3-磷酸-L-丝氨酸(DMPS)的Na⁺和/或NH₄⁺盐的热致相行为。还通过红外光谱对DMPS-Li⁺配合物的分子水平性质和热相行为进行了表征。随着Li⁺浓度的增加,红外光谱显示出第二个更有序的脂质相的出现,该相在比DMPS的Na⁺或NH₄⁺盐(39℃)显著更高的温度(75 - 95℃)下呈现凝胶到液晶的转变。Li⁺与DMPS的磷酸基团和羧基结合,导致以下变化:(1)羧基和磷酸基团都失去了水化水;(2)甘油主链的构象发生变化,但磷酸基团的P - O酯键构象不变,仍保持反式-反式构象;(3)脂肪酰链的堆积变得更加有序。此外,通过红外光谱研究了DMPS-Ca²⁺配合物的性质。虽然DMPS-Ca²⁺配合物也具有紧密堆积、有序排列的脂肪酰链特征,但Ca²⁺与DMPS头部基团的结合方式与Li⁺的结合方式有显著差异。相比之下,对于干燥的DMPS-Ca²⁺[卡萨勒,H. L.,曼奇,H. H.,帕尔陶夫,F.,& 豪泽,H.(1987年)《生物化学与生物物理学报》(即将发表)],磷酸基团发生构象变化,可能变为反式-反式构象,并失去其水化水。(摘要截于250字)

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