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卵磷脂胆固醇酰基转移酶(LCAT)在高密度脂蛋白(HDL)重塑中的作用:LCAT缺乏状态的研究。

Role of LCAT in HDL remodeling: investigation of LCAT deficiency states.

作者信息

Asztalos Bela F, Schaefer Ernst J, Horvath Katalin V, Yamashita Shizuya, Miller Michael, Franceschini Guido, Calabresi Laura

机构信息

Lipid Metabolism Laboratory, Jean Mayer US Department of Agriculture Human Nutrition Research Center on Aging at Tufts University, Boston, MA, USA.

出版信息

J Lipid Res. 2007 Mar;48(3):592-9. doi: 10.1194/jlr.M600403-JLR200. Epub 2006 Dec 20.

Abstract

To better understand the role of LCAT in HDL metabolism, we compared HDL subpopulations in subjects with homozygous (n = 11) and heterozygous (n = 11) LCAT deficiency with controls (n = 22). Distribution and concentrations of apolipoprotein A-I (apoA-I)-, apoA-II-, apoA-IV-, apoC-I-, apoC-III-, and apoE-containing HDL subpopulations were assessed. Compared with controls, homozygotes and heterozygotes had lower LCAT masses (-77% and -13%), and LCAT activities (-99% and -39%), respectively. In homozygotes, the majority of apoA-I was found in small, disc-shaped, poorly lipidated prebeta-1 and alpha-4 HDL particles, and some apoA-I was found in larger, lipid-poor, discoidal HDL particles with alpha-mobility. No apoC-I-containing HDL was noted, and all apoA-II and apoC-III was detected in lipid-poor, prebeta-mobility particles. ApoE-containing particles were more disperse than normal. ApoA-IV-containing particles were normal. Heterozygotes had profiles similar to controls, except that apoC-III was found only in small HDL with prebeta-mobility. Our data are consistent with the concepts that LCAT activity: 1) is essential for developing large, spherical, apoA-I-containing HDL and for the formation of normal-sized apoC-I and apoC-III HDL; and 2) has little affect on the conversion of prebeta-1 into alpha-4 HDL, only slight effects on apoE HDL, and no effect on apoA-IV HDL particles.

摘要

为了更好地理解卵磷脂胆固醇酰基转移酶(LCAT)在高密度脂蛋白(HDL)代谢中的作用,我们比较了纯合子(n = 11)和杂合子(n = 11)LCAT缺乏症患者与对照组(n = 22)的HDL亚群。评估了载脂蛋白A-I(apoA-I)、apoA-II、apoA-IV、apoC-I、apoC-III和apoE所含HDL亚群的分布和浓度。与对照组相比,纯合子和杂合子的LCAT质量分别降低了77%和13%,LCAT活性分别降低了99%和39%。在纯合子中,大多数apoA-I存在于小的、盘状的、脂质化不良的前β-1和α-4 HDL颗粒中,一些apoA-I存在于较大的、脂质含量低的、具有α迁移率的盘状HDL颗粒中。未发现含apoC-I的HDL,所有apoA-II和apoC-III均在脂质含量低的前β迁移率颗粒中检测到。含apoE的颗粒比正常情况更分散。含apoA-IV的颗粒正常。杂合子的情况与对照组相似,只是apoC-III仅在前β迁移率的小HDL中发现。我们的数据与以下概念一致:1)LCAT活性对于形成大的、球形的、含apoA-I的HDL以及正常大小的含apoC-I和apoC-III的HDL至关重要;2)对前β-1向α-4 HDL的转化影响很小,对apoE HDL只有轻微影响,对apoA-IV HDL颗粒没有影响。

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