Mishra Vinod K, Anantharamaiah Gattadahalli M
Natural Science Division, Snead State Community College, Boaz, AL, USA.
Department of Medicine, University of Alabama at Birmingham, AL, USA.
Nat Prod Commun. 2019 May 1;14(5). doi: 10.1177/1934578x19849131. Epub 2019 May 28.
Peptides designed to mimic the antiatherogenic and anti-inflammatory properties of apolipoprotein A-I show that although lipid association is required, not all lipid-associating peptides exhibit these properties. Our studies of a series of peptides showed that peptides with aromatic residues at the center of the nonpolar face were able to interact with inflammatory lipids and inhibited inflammation, which resulted in the amelioration of several lipid-mediated disorders such as lesion development, tumor formation, and Alzheimer's plaque formation. The p values determined using C nuclear magnetic resonance (NMR) spectroscopy of K residues located at the polar-nonpolar interface provided the first clue to the relative orientations of the peptide helices with respect to each other and around the edge of the lipid discoidal complexes. High-resolution H-NMR studies of peptide-lipid discoidal complex confirmed the amphipathic α-helical structure of the peptide, location of aromatic residues of the peptide closer to the polar-nonpolar interface, and head-to-tail arrangement of the peptide helices around the edge of the disc. Amphipathic α-helical structure and the location of aromatic residues (F, W, Y) closer to the polar-nonpolar interface in a lipid environment allow the peptide to strongly bind oxidized lipids resulting in its anti-inflammatory properties.
设计用于模拟载脂蛋白A-I抗动脉粥样硬化和抗炎特性的肽表明,尽管需要脂质结合,但并非所有与脂质结合的肽都具有这些特性。我们对一系列肽的研究表明,在非极性面中心具有芳香族残基的肽能够与炎性脂质相互作用并抑制炎症,从而改善了几种脂质介导的疾病,如病变发展、肿瘤形成和阿尔茨海默氏症斑块形成。使用位于极性-非极性界面的K残基的C核磁共振(NMR)光谱测定的p值为肽螺旋相对于彼此以及围绕脂质盘状复合物边缘的相对取向提供了第一条线索。肽-脂质盘状复合物的高分辨率H-NMR研究证实了肽的两亲性α-螺旋结构、肽的芳香族残基更靠近极性-非极性界面的位置以及肽螺旋围绕盘边缘的头对尾排列。两亲性α-螺旋结构以及在脂质环境中更靠近极性-非极性界面的芳香族残基(F、W、Y)的位置使肽能够强烈结合氧化脂质,从而产生其抗炎特性。