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模型两亲性肽18A的载脂蛋白E和载脂蛋白A模拟衍生物的抗内毒素活性比较

Comparison of anti-endotoxin activity of apoE and apoA mimetic derivatives of a model amphipathic peptide 18A.

作者信息

Sharifov Oleg F, Nayyar Gaurav, Ternovoy Vladimir V, Palgunachari Mayakonda N, Garber David W, Anantharamaiah Gm, Gupta Himanshu

机构信息

Department of Medicine, University of Alabama at Birmingham, AL, USA.

Department of Medicine, University of Alabama at Birmingham, AL, USA Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham, AL, USA.

出版信息

Innate Immun. 2014 Nov;20(8):867-80. doi: 10.1177/1753425913514621. Epub 2013 Dec 9.

Abstract

Endotoxemia is a major cause of chronic inflammation, and is an important pathogenic factor in the development of metabolic syndrome and atherosclerosis. Human apolipoprotein E (apoE) and apoA-I are protein components of high-density lipoprotein, which have strong anti-endotoxin activity. Here, we compared anti-endotoxin activity of Ac-hE18A-NH2 and 4F peptides, modified from model amphipathic helical 18A peptide, to mimic, respectively, apoE and apoA-I properties. Ac-hE18A-NH2, stronger than 4F, inhibited endotoxin activity and disaggregated Escherichia coli 055:B5 (wild smooth serotype). Ac-hE18A-NH2 and 4F inhibited endotoxin activity of E. coli 026:B6 (rough-like serotype) to a similar degree. This suggests that Ac-hE18A-NH2 as a dual-domain molecule might interact with both the lipid A and headgroup of smooth LPS, whereas 4F binds lipid A. In C57BL/6 mice, Ac-hE18A-NH2 was superior to 4F in inhibiting the inflammatory responses mediated by E. coli 055:B5, but not E. coli 026:B6. However, in THP-1 cells, isolated human primary leukocytes, and whole human blood, Ac-hE18A-NH2 reduced responses more strongly than 4F to both E. coli serotypes either when peptides were pre-incubated or co-incubated with LPS, indicating that Ac-hE18A-NH2 also has strong anti-inflammatory effects independent of endotoxin-neutralizing properties. In conclusion, Ac-hE18A-NH2 is more effective than 4F in inhibiting LPS-mediated inflammation, which opens prospective clinical applications for Ac-hE18A-NH2.

摘要

内毒素血症是慢性炎症的主要原因,也是代谢综合征和动脉粥样硬化发展的重要致病因素。人载脂蛋白E(apoE)和载脂蛋白A-I是高密度脂蛋白的蛋白质成分,具有很强的抗内毒素活性。在此,我们比较了从模型两亲性螺旋18A肽修饰而来的Ac-hE18A-NH2和4F肽的抗内毒素活性,以分别模拟apoE和apoA-I的特性。Ac-hE18A-NH2比4F更强,能抑制内毒素活性并使大肠杆菌055:B5(野生光滑血清型)解聚。Ac-hE18A-NH2和4F对大肠杆菌026:B6(粗糙样血清型)内毒素活性的抑制程度相似。这表明Ac-hE18A-NH2作为一种双结构域分子可能与光滑脂多糖的脂质A和头部基团都相互作用,而4F则结合脂质A。在C57BL/6小鼠中,Ac-hE18A-NH2在抑制由大肠杆菌055:B5介导的炎症反应方面优于4F,但对大肠杆菌026:B6则不然。然而,在THP-1细胞、分离的人原代白细胞和全血中,无论是肽与脂多糖预孵育还是共孵育,Ac-hE18A-NH2对两种大肠杆菌血清型的反应抑制都比4F更强,这表明Ac-hE18A-NH2也具有独立于内毒素中和特性的强大抗炎作用。总之,Ac-hE18A-NH2在抑制脂多糖介导的炎症方面比4F更有效,这为Ac-hE18A-NH2开辟了潜在的临床应用前景。

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