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可调节 pH 值和二价金属离子耐受的聚合物脂质纳米盘。

pH Tunable and Divalent Metal Ion Tolerant Polymer Lipid Nanodiscs.

机构信息

Biophysics Program and Department of Chemistry, The University of Michigan , Ann Arbor, Michigan 48109-1055, United States.

出版信息

Langmuir. 2017 Oct 10;33(40):10655-10662. doi: 10.1021/acs.langmuir.7b02887. Epub 2017 Sep 26.

Abstract

The development and applications of detergent-free membrane mimetics have been the focus for the high-resolution structural and functional studies on membrane proteins. The introduction of lipid nanodiscs has attracted new attention toward the structural biology of membrane proteins and also enabled biomedical applications. Lipid nanodiscs provide a native lipid bilayer environment similar to the cell membrane surrounded by a belt made up of proteins or peptides. Recent studies have shown that the hydrolyzed form of styrene maleic anhydride copolymer (SMA) has the ability to form lipid nanodiscs and has several advantages over protein or peptide based nanodiscs. SMA polymer lipid nanodiscs have become very important for structural biology and nanobiotechnological applications. However, applications of the presently available polymer nanodiscs are limited by their instability toward divalent metal ions and acidic conditions. To overcome the limitations of SMA nanodiscs and to broaden the potential applications of polymer nanodiscs, the present study investigates the tunability of SMA polymer nanodiscs by systematically modifying the maleic acid functional group. The two newly developed polymers and subsequent lipid nanodiscs were characterized using solid-state NMR, FT-IR, TEM, and DLS experiments. The pH dependence and metal ion stability of these nanodiscs were studied using static light scattering and FTIR. The reported polymer nanodiscs exhibit unique pH dependent stability based on the modified functional group and show a high tolerance toward divalent metal ions. We also show these tunable nanodiscs can be used to encapsulate and stabilize a polyphenolic natural product curcumin.

摘要

无皂膜模拟物的开发和应用一直是膜蛋白高分辨率结构和功能研究的重点。脂质纳米盘的引入引起了人们对膜蛋白结构生物学的新关注,并为生物医学应用提供了可能。脂质纳米盘提供了类似于细胞膜的天然脂质双层环境,周围环绕着由蛋白质或肽组成的带。最近的研究表明,苯乙烯马来酸酐共聚物(SMA)的水解形式具有形成脂质纳米盘的能力,并且比基于蛋白质或肽的纳米盘具有多个优势。SMA 聚合物脂质纳米盘在结构生物学和纳米生物技术应用中变得非常重要。然而,目前可用的聚合物纳米盘的应用受到其对二价金属离子和酸性条件不稳定的限制。为了克服 SMA 纳米盘的局限性并拓宽聚合物纳米盘的潜在应用,本研究通过系统修饰马来酸官能团来研究 SMA 聚合物纳米盘的可调节性。使用固态 NMR、FT-IR、TEM 和 DLS 实验对这两种新开发的聚合物及其随后的脂质纳米盘进行了表征。使用静态光散射和 FTIR 研究了这些纳米盘的 pH 依赖性和金属离子稳定性。所报道的聚合物纳米盘表现出基于修饰官能团的独特 pH 依赖性稳定性,并对二价金属离子具有高耐受性。我们还表明,这些可调谐的纳米盘可用于封装和稳定多酚类天然产物姜黄素。

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