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鞘磷脂对重组高密度脂蛋白的结构和功能的影响。

The influence of sphingomyelin on the structure and function of reconstituted high density lipoproteins.

作者信息

Rye K A, Hime N J, Barter P J

机构信息

Division of Cardiovascular Services and University of Adelaide, Department of Medicine, Royal Adelaide Hospital, Adelaide, South Australia, Australia 5000.

出版信息

J Biol Chem. 1996 Feb 23;271(8):4243-50. doi: 10.1074/jbc.271.8.4243.

Abstract

The effect of sphingomyelin (SPM) on the structure and function of discoidal and spherical reconstituted high density lipoproteins (rHDL) has been studied. Three preparations of discoidal rHDL with 1-palmitoyl-2-oleoyl phosphatidylcholine (POPC)/SPM/unesterified cholesterol (UC)/apolipoprotein (apo)A-I molar ratios of 99.6/0. 0/10.2/1.0, 86.0/13.6/10.8/1.0, and 72.5/26.3/11.4/1.0 were prepared by cholate dialysis. SPM did not affect discoidal rHDL size or surface charge. Esterification of cholesterol by lecithin:cholesterol acyltransferase (LCAT) was inhibited in the SPM-containing discoidal rHDL. When the discoidal rHDL of POPC/SPM/UC/apoA-I molar ratio 99.6/0.0/10.2/1.0 were incubated with low density lipoproteins (LDL) and LCAT, SPM transferred spontaneously from the LDL to the rHDL (t1/2 = 0.8 h) and spherical particles with a POPC/SPM/UC/CE/apoA-I molar ratio of 24.6/4.9/3. 6/24.9/1.0 were formed. Depleting the spherical rHDL of SPM head groups by incubation with sphingomyelinase increased the negative charge on the surface, but did not change their size. Cholesteryl ester transfer protein (CETP)-mediated transfers of cholesteryl esters and triglyceride between spherical rHDL and Intralipid were not affected by SPM head group depletion. The effect of SPM on rHDL structure was assessed spectroscopically. SPM increased POPC acyl chain and head group packing in the discoidal rHDL. When the spherical rHDL were depleted of SPM head groups, POPC acyl chain packing order decreased, but head group packing order was not affected. SPM inhibited the lipid-water interfacial hydration of discoidal rHDL. This parameter was not affected when the spherical rHDL were depleted of SPM head groups. The SPM molecule and the SPM head group, respectively, inhibited the unfolding of apoA-I in discoidal and spherical rHDL. It is concluded that (i) SPM influences the structure of discoidal and spherical rHDL, (ii) SPM inhibits the LCAT reaction in discoidal rHDL, and (iii) the SPM head group does not affect CETP-mediated lipid transfers into or out of spherical rHDL.

摘要

研究了鞘磷脂(SPM)对盘状和球状重组高密度脂蛋白(rHDL)结构和功能的影响。通过胆酸盐透析制备了三种盘状rHDL制剂,其1-棕榈酰-2-油酰磷脂酰胆碱(POPC)/SPM/未酯化胆固醇(UC)/载脂蛋白(apo)A-I的摩尔比分别为99.6/0.0/10.2/1.0、86.0/13.6/10.8/1.0和72.5/26.3/11.4/1.0。SPM不影响盘状rHDL的大小或表面电荷。在含SPM的盘状rHDL中,卵磷脂胆固醇酰基转移酶(LCAT)介导的胆固醇酯化受到抑制。当将摩尔比为99.6/0.0/10.2/1.型的POPC/SPM/UC/apoA-I的盘状rHDL与低密度脂蛋白(LDL)和LCAT一起孵育时,SPM会自发地从LDL转移到rHDL(半衰期=0.8小时),并形成摩尔比为24.6/4.9/3.6/24.9/1.0的球状颗粒。通过与鞘磷脂酶孵育来耗尽球状rHDL的SPM头部基团,会增加其表面的负电荷,但不会改变其大小。胆固醇酯转移蛋白(CETP)介导的球状rHDL与脂肪乳剂之间胆固醇酯和甘油三酯的转移不受SPM头部基团耗尽的影响。通过光谱法评估了SPM对rHDL结构的影响。SPM增加了盘状rHDL中POPC酰基链和头部基团的堆积。当球状rHDL的SPM头部基团被耗尽时,POPC酰基链的堆积顺序降低,但头部基团的堆积顺序不受影响。SPM抑制了盘状rHDL的脂质-水界面水合作用。当球状rHDL的SPM头部基团被耗尽时,该参数不受影响。SPM分子和SPM头部基团分别抑制了盘状和球状rHDL中apoA-I的展开。得出的结论是:(i)SPM影响盘状和球状rHDL的结构;(ii)SPM抑制盘状rHDL中的LCAT反应;(iii)SPM头部基团不影响CETP介导的脂质进出球状rHDL的转移。

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