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载脂蛋白(Apo)A-I 结构对新生高密度脂蛋白(HDL)颗粒大小分布的影响。

Influence of apolipoprotein (Apo) A-I structure on nascent high density lipoprotein (HDL) particle size distribution.

机构信息

Lipid Research Group, Gastroenterology, Hepatology, and Nutrition Division, Children's Hospital of Philadelphia, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104-4318, USA.

出版信息

J Biol Chem. 2010 Oct 15;285(42):31965-73. doi: 10.1074/jbc.M110.126292. Epub 2010 Aug 2.

Abstract

The principal protein of high density lipoprotein (HDL), apolipoprotein (apo) A-I, in the lipid-free state contains two tertiary structure domains comprising an N-terminal helix bundle and a less organized C-terminal domain. It is not known how the properties of these domains modulate the formation and size distribution of apoA-I-containing nascent HDL particles created by ATP-binding cassette transporter A1 (ABCA1)-mediated efflux of cellular phospholipid and cholesterol. To address this issue, proteins corresponding to the two domains of human apoA-I (residues 1-189 and 190-243) and mouse apoA-I (residues 1-186 and 187-240) together with some human/mouse domain hybrids were examined for their abilities to form HDL particles when incubated with either ABCA1-expressing cells or phospholipid multilamellar vesicles. Incubation of human apoA-I with cells gave rise to two sizes of HDL particles (hydrodynamic diameter, 8 and 10 nm), and removal or disruption of the C-terminal domain eliminated the formation of the smaller particle. Variations in apoA-I domain structure and physical properties exerted similar effects on the rates of formation and sizes of HDL particles created by either spontaneous solubilization of phospholipid multilamellar vesicles or the ABCA1-mediated efflux of cellular lipids. It follows that the sizes of nascent HDL particles are determined at the point at which cellular phospholipid and cholesterol are solubilized by apoA-I; apparently, this is the rate-determining step in the overall ABCA1-mediated cellular lipid efflux process. The stability of the apoA-I N-terminal helix bundle domain and the hydrophobicity of the C-terminal domain are important determinants of both nascent HDL particle size and their rate of formation.

摘要

高密度脂蛋白(HDL)的主要蛋白质载脂蛋白(apo)A-I 在无脂状态下包含两个三级结构域,包括一个 N 端螺旋束和一个组织化程度较低的 C 端结构域。目前尚不清楚这些结构域的特性如何调节由 ATP 结合盒转运体 A1(ABCA1)介导的细胞磷脂和胆固醇外排所产生的含有 apoA-I 的新生 HDL 颗粒的形成和大小分布。为了解决这个问题,研究了与人 apoA-I(残基 1-189 和 190-243)和鼠 apoA-I(残基 1-186 和 187-240)的两个结构域相对应的蛋白质以及一些人/鼠结构域杂种,以研究它们在与表达 ABCA1 的细胞或磷脂多层囊泡孵育时形成 HDL 颗粒的能力。与人 apoA-I 孵育细胞会产生两种大小的 HDL 颗粒(流体力学直径,8 和 10nm),并且去除或破坏 C 端结构域会消除较小颗粒的形成。apoA-I 结构域结构和物理性质的变化对自发溶解磷脂多层囊泡或 ABCA1 介导的细胞脂质外排所产生的 HDL 颗粒的形成速率和大小产生相似的影响。因此,新生 HDL 颗粒的大小是在 apoA-I 溶解细胞磷脂和胆固醇的时刻决定的;显然,这是整个 ABCA1 介导的细胞脂质外排过程中的限速步骤。apoA-I N 端螺旋束结构域的稳定性和 C 端结构域的疏水性是新生 HDL 颗粒大小及其形成速率的重要决定因素。

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