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疏水性增加对A类两亲性螺旋肽物理化学和生物学性质的影响。

Effects of increasing hydrophobicity on the physical-chemical and biological properties of a class A amphipathic helical peptide.

作者信息

Datta G, Chaddha M, Hama S, Navab M, Fogelman A M, Garber D W, Mishra V K, Epand R M, Epand R F, Lund-Katz S, Phillips M C, Segrest J P, Anantharamaiah G M

机构信息

The Atherosclerosis Research Unit and the Departments of Medicine and Biochemistry and Molecular Genetics, The University of Alabama at Birmingham Medical Center, Birmingham, AL 35294, USA.

出版信息

J Lipid Res. 2001 Jul;42(7):1096-104.

Abstract

We have recently shown that a class A amphipathic peptide 5F with increased amphipathicity protected mice from diet-induced atherosclerosis (Garber et al. J. Lipid Res. 2001. 42: 545-552). We have now examined the effects of increasing the hydrophobicity of a series of homologous class A amphipathic peptides, including 5F, on physical and functional properties related to atherosclerosis inhibition by systematically replacing existing nonpolar amino acids with phenylalanine. The peptides, based on the sequence Ac-D-W-L-K-A-F-Y-D-K-V-A-E-K-L-K-E-A-F-NH(2) (Ac-18A-NH(2) or 2F) were: 3F(3)(Ac-F(3)18A-NH(2)), 3F(14)(Ac-F(14)18A-NH(2)), 4F(Ac-F(3,14)18A-NH(2)), 5F(Ac-F(11,14,17) 18A-NH(2)), 6F(Ac-F(10,11,14,17)18A-NH(2)), and 7F(Ac-F(3,10,11,14,17) 18A-NH(2)). Measurements of aqueous solubility, HPLC retention time, exclusion pressure for penetration into an egg phosphatidylcholine (EPC) monolayer, and rates of EPC solubilization revealed an abrupt increase in the hydrophobicity between peptides 4F and 5F; this was accompanied by increased ability to associate with phospholipids. The peptides 6F and 7F were less effective, indicating a limit to increased hydrophobicity for promoting lipid interaction in these peptides. Despite this marked increase in lipid affinity, these peptides were less effective than apoA-I in activating the plasma enzyme, lecithin:cholesterol acyltransferase, with 5F activating LCAT the best (80% of apoA-I). Peptides 4F, 5F, and 6F were equally potent in inhibiting LDL-induced monocyte chemotactic activity. These studies suggest that an appropriate balance between peptide-peptide and peptide-lipid interactions is required for optimal biological activity of amphipathic peptides. These studies provide a rationale for the design of small apoA-I-mimetics with increased potency for atherosclerosis inhibition.

摘要

我们最近的研究表明,一种两亲性增强的A类两亲肽5F可保护小鼠免受饮食诱导的动脉粥样硬化(Garber等人,《脂质研究杂志》,2001年。42: 545 - 552)。我们现在通过用苯丙氨酸系统地替换现有的非极性氨基酸,研究了一系列同源A类两亲肽(包括5F)疏水性增加对与动脉粥样硬化抑制相关的物理和功能特性的影响。基于序列Ac - D - W - L - K - A - F - Y - D - K - V - A - E - K - L - K - E - A - F - NH₂(Ac - 18A - NH₂或2F)的肽有:3F₃(Ac - F₃18A - NH₂)、3F₁₄(Ac - F₁₄18A - NH₂)、4F(Ac - F₃,₁₄18A - NH₂)、5F(Ac - F₁₁,₁₄,₁₇18A - NH₂)、6F(Ac - F₁₀,₁₁,₁₄,₁₇18A - NH₂)和7F(Ac - F₃,₁₀,₁₁,₁₄,₁₇18A - NH₂)。对水溶性测量、高效液相色谱保留时间、穿透卵磷脂(EPC)单层的排斥压力以及EPC溶解速率的研究表明,4F和5F之间的疏水性突然增加;这伴随着与磷脂结合能力的增强。6F和7F肽的效果较差,表明在这些肽中,促进脂质相互作用的疏水性增加存在极限。尽管脂质亲和力有显著增加,但这些肽在激活血浆酶卵磷脂:胆固醇酰基转移酶方面比载脂蛋白A - I效果差,其中5F激活LCAT的效果最佳(为载脂蛋白A - I的80%)。4F、5F和6F肽在抑制低密度脂蛋白诱导的单核细胞趋化活性方面同样有效。这些研究表明,两亲肽的最佳生物活性需要肽 - 肽和肽 - 脂质相互作用之间达到适当的平衡。这些研究为设计具有更强动脉粥样硬化抑制效力的小型载脂蛋白A - I模拟物提供了理论依据。

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