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An apoA-I mimetic peptide containing a proline residue has greater in vivo HDL binding and anti-inflammatory ability than the 4F peptide

机译:含有脯氨酸残基的apoA-I模拟肽比4F肽具有更高的体内HDL结合和抗炎能力

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摘要

Modifying apolipoprotein (apo) A-I mimetic peptides to include a proline-punctuated α-helical repeat increases their anti-inflammatory properties as well as allows better mimicry of full-length apoA-I function. This study compares the following mimetics, either acetylated or biotinylated (b): 4F (18mer) and 4F-proline-4F (37mer, Pro). b4F interacts with both mouse HDL (moHDL) and LDL in vitro. b4F in vivo plasma clearance kinetics are not affected by mouse HDL level. Administration of biotinylated peptides to mice demonstrates that b4F does not associate with lipoproteins smaller than LDL in vivo, though it does associate with fractions containing free hemoglobin (Hb). In contrast, bPro specifically interacts with HDL. b4F and bPro show opposite binding responses to HDL by surface plasmon resonance. Administration of acetylated Pro to apoE−/− mice significantly decreases plasma serum amyloid A levels, while acetylated 4F does not have this ability. In contrast to previous reports that inferred that 4F associates with HDL in vivo, we systematically examined this potential interaction and demonstrated that b4F does not interact with HDL in vivo but rather elutes with Hb-containing plasma fractions. bPro, however, specifically binds to moHDL in vivo. In addition, the number of amphipathic α-helices and their linker influences the anti-inflammatory effects of apoA-I mimetic peptides in vivo.
机译:修饰载脂蛋白(apo)A-I模拟肽使其包含脯氨酸-α-螺旋重复序列可提高其抗炎特性,并能更好地模仿全长apoA-I功能。本研究比较了乙酰化或生物素化的以下模拟物(b):4F(18mer)和4F-脯氨酸-4F(37mer,Pro)。 b4F在体外与小鼠HDL(moHDL)和LDL相互作用。 b4F体内血浆清除动力学不受小鼠HDL水平的影响。向小鼠施用生物素化的肽表明,b4F在体内与小于LDL的脂蛋白无关,尽管它与含有游离血红蛋白(Hb)的级分结合。相反,bPro专门与HDL交互。 b4F和bPro通过表面等离振子共振显示出与HDL相反的结合反应。对apoE-/-小鼠施用乙酰化Pro会显着降低血浆中淀粉样蛋白A的水平,而乙酰化4F则不具备这种能力。与以前的报道推断4F在体内与HDL有关的相反,我们系统地检查了这种潜在的相互作用,并证明b4F在体内不与HDL相互作用,而是与含Hb的血浆组分一起洗脱。但是,bPro在体内与moHDL特异性结合。另外,两亲性α-螺旋及其连接子的数量影响体内载脂蛋白A-I模拟肽的抗炎作用。

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