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通过氢交换和质谱法研究碟状高密度脂蛋白(HDL)颗粒中载脂蛋白 A-I 的螺旋结构和稳定性。

Apolipoprotein A-I helical structure and stability in discoidal high-density lipoprotein (HDL) particles by hydrogen exchange and mass spectrometry.

机构信息

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

出版信息

Proc Natl Acad Sci U S A. 2012 Jul 17;109(29):11687-92. doi: 10.1073/pnas.1209305109. Epub 2012 Jun 27.

Abstract

To understand high-density lipoprotein (HDL) structure at the molecular level, the location and stability of α-helical segments in human apolipoprotein (apo) A-I in large (9.6 nm) and small (7.8 nm) discoidal HDL particles were determined by hydrogen-deuterium exchange (HX) and mass spectrometry methods. The measured HX kinetics of some 100 apoA-I peptides specify, at close to amino acid resolution, the structural condition of segments throughout the protein sequence and changes in structure and stability that occur on incorporation into lipoprotein particles. When incorporated into the large HDL particle, the nonhelical regions in lipid-free apoA-I (residues 45-53, 66-69, 116-146, and 179-236) change conformation from random coil to α-helix so that nearly the entire apoA-I molecule adopts helical structure (except for the terminal residues 1-6 and 237-243). The amphipathic α-helices have relatively low stability, in the range 3-5 kcal/mol, indicating high flexibility and dynamic unfolding and refolding in seconds or less. A segment encompassed by residues 125-158 exhibits bimodal HX labeling indicating co-existing helical and disordered loop conformations that interchange on a time scale of minutes. When incorporated around the edge of the smaller HDL particle, the increase in packing density of the two apoA-I molecules forces about 20% more residues out of direct contact with the phospholipid molecules to form disordered loops, and these are the same segments that form loops in the lipid-free state. The region of disc-associated apoA-I that binds the lecithin-cholesterol acyltransferase enzyme is well structured and not a protruding unstructured loop as reported by others.

摘要

为了从分子水平上了解高密度脂蛋白(HDL)的结构,我们通过氘氢交换(HDX)和质谱方法确定了人载脂蛋白(apo)A-I 中α-螺旋片段在大(9.6nm)和小(7.8nm)盘状 HDL 颗粒中的位置和稳定性。通过对约 100 个 apoA-I 肽的测量 HDX 动力学,以接近氨基酸分辨率指定了整个蛋白质序列中片段的结构条件,以及在掺入脂蛋白颗粒时发生的结构和稳定性变化。当掺入到大的 HDL 颗粒中时,无脂质apoA-I 的非螺旋区域(残基 45-53、66-69、116-146 和 179-236)的构象从无规卷曲转变为α-螺旋,使得几乎整个 apoA-I 分子采用螺旋结构(除了末端残基 1-6 和 237-243)。两亲性α-螺旋具有相对较低的稳定性,在 3-5kcal/mol 的范围内,表明其具有高度的灵活性和动态解折叠和重新折叠,在几秒钟或更短的时间内完成。由残基 125-158 所包含的片段表现出双峰 HDX 标记,表明存在共存的螺旋和无序环构象,它们在分钟级的时间尺度上相互转换。当掺入到较小的 HDL 颗粒的边缘时,两个 apoA-I 分子的堆积密度增加,迫使约 20%的残基与磷脂分子失去直接接触,形成无序环,这些是在无脂质状态下形成环的相同片段。与其他报道的相反,与卵磷脂-胆固醇酰基转移酶酶结合的碟状 apoA-I 区域结构良好,不是突出的无结构环。

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