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载脂蛋白 A-I 氨基末端和羧基末端的构象灵活性是脂质结合所必需的,但不是胆固醇流出所必需的。

Conformational flexibility of apolipoprotein A-I amino- and carboxy-termini is necessary for lipid binding but not cholesterol efflux.

机构信息

Department of Pathology and Laboratory Medicine, University of Cincinnati, Cincinnati, OH, USA.

Department of Pediatrics, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.

出版信息

J Lipid Res. 2022 Mar;63(3):100168. doi: 10.1016/j.jlr.2022.100168. Epub 2022 Jan 17.

Abstract

Because of its critical role in HDL formation, significant efforts have been devoted to studying apolipoprotein A-I (APOA1) structural transitions in response to lipid binding. To assess the requirements for the conformational freedom of its termini during HDL particle formation, we generated three dimeric APOA1 molecules with their termini covalently joined in different combinations. The dimeric (d)-APOA1C-N mutant coupled the C-terminus of one APOA1 molecule to the N-terminus of a second with a short alanine linker, whereas the d-APOA1C-C and d-APOA1N-N mutants coupled the C-termini and the N-termini of two APOA1 molecules, respectively, using introduced cysteine residues to form disulfide linkages. We then tested the ability of these constructs to generate reconstituted HDL by detergent-assisted and spontaneous phospholipid microsolubilization methods. Using cholate dialysis, we demonstrate WT and all APOA1 mutants generated reconstituted HDL particles of similar sizes, morphologies, compositions, and abilities to activate lecithin:cholesterol acyltransferase. Unlike WT, however, the mutants were incapable of spontaneously solubilizing short chain phospholipids into discoidal particles. We found lipid-free d-APOA1C-N and d-APOA1N-N retained most of WT APOA1's ability to promote cholesterol efflux via the ATP binding cassette transporter A1, whereas d-APOA1C-C exhibited impaired cholesterol efflux. Our data support the double belt model for a lipid-bound APOA1 structure in nascent HDL particles and refute other postulated arrangements like the "double super helix." Furthermore, we conclude the conformational freedom of both the N- and C-termini of APOA1 is important in spontaneous microsolubilization of bulk phospholipid but is not critical for ABCA1-mediated cholesterol efflux.

摘要

由于其在高密度脂蛋白(HDL)形成中的关键作用,人们已经投入了大量的努力来研究载脂蛋白 A-I(APOA1)在响应脂质结合时的结构转变。为了评估其末端在 HDL 颗粒形成过程中构象自由度的要求,我们生成了三个二聚体 APOA1 分子,它们的末端通过共价键连接在不同的组合中。二聚体(d)-APOA1C-N 突变体将一个 APOA1 分子的 C 末端与第二个 APOA1 分子的 N 末端通过短的丙氨酸接头连接,而 d-APOA1C-C 和 d-APOA1N-N 突变体分别使用引入的半胱氨酸残基形成二硫键,将两个 APOA1 分子的 C 末端和 N 末端连接起来。然后,我们测试了这些构建体通过去污剂辅助和自发磷脂微溶解方法生成再构成的 HDL 的能力。使用胆酸钠透析,我们证明 WT 和所有 APOA1 突变体生成的再构成的 HDL 颗粒具有相似的大小、形态、组成和激活卵磷脂:胆固醇酰基转移酶的能力。然而,与 WT 不同的是,突变体不能自发地将短链磷脂溶解到盘状颗粒中。我们发现无脂质的 d-APOA1C-N 和 d-APOA1N-N 保留了 WT APOA1 大部分促进通过 ATP 结合盒转运蛋白 A1 进行胆固醇外排的能力,而 d-APOA1C-C 则表现出胆固醇外排受损。我们的数据支持了新生 HDL 颗粒中结合脂质的 APOA1 结构的双带模型,并反驳了其他假定的排列,如“双超螺旋”。此外,我们得出结论,APOA1 的 N 末端和 C 末端的构象自由度对于自发微溶解大量磷脂很重要,但对于 ABCA1 介导的胆固醇外排不是关键的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/306b/8953623/c58f06905661/gr1.jpg

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