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首页> 外文期刊>Journal of Medicinal Chemistry >Design of a Gag pentapeptide analogue that binds human cyclophilin A more efficiently than the entire capsid protein: new insights for the development of novel anti-HIV-1 drugs.
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Design of a Gag pentapeptide analogue that binds human cyclophilin A more efficiently than the entire capsid protein: new insights for the development of novel anti-HIV-1 drugs.

机译:一种Gag五肽类似物的设计,该肽比完整的衣壳蛋白更有效地结合人亲环蛋白A:开发新型抗HIV-1药物的新见解。

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摘要

Cyclophilin A (hCyp-18), a ubiquitous cytoplasmic peptidyl-prolyl cis/trans isomerase (PPIase), orchestrates HIV-1 core packaging. hCyp-18, incorporated into the virion, enables core uncoating and RNA release and consequently plays a critical role in the viral replication process. hCyp-18 specifically interacts with a single exposed loop of the Gag polyprotein capsid domain via a network of nine hydrogen bonds which mainly implicates a 7-mer fragment of the loop. As previously reported, the corresponding linear heptapeptide Ac-Val-His-Ala-Gly-Pro-Ile-Ala-NH(2) (2) binds to hCyp-18 with a low affinity (IC(50) = 850 +/- 220 microM) but a potentially useful selectivity for hCyp-18 relative to hFKBP-12, another abundant PPIase. On the basis of X-ray structures of Gag fragments:hCyp-18 complexes, we generated a series of modified peptides in order to probe the determinants of the interaction and hence to select a peptidic ligand displaying a higher affinity than the capsid domain of Gag. We synthesized a series of heptapeptides to test the energetic contribution of amino acids besides the Gly-Pro moiety. In particular the importance of the histidine residue for the interaction was underscored. We also investigated the influence of N- and C-terminal modifications. Hexapeptides containing either deaminovaline (Dav) in place of the N-terminal valine or substitution of the C-terminal alanine amide with a benzylamide group displayed increased affinities. Combination of both modifications gave the most potent competitor Dav-His-Ala-Gly-Pro-Ile-NHBn (28) which has a higher affinity for hCyp-18 (K(d) = 3 +/- 0.5 microM) than the entire capsid protein (K(d) = 16 +/- 4 microM) and a very low affinity for hFKBP-12. Some of our results strongly suggest that the title compound is not a substrate of hCyp-18 and interacts preferentially in the trans conformation.
机译:亲环蛋白A(hCyp-18)是一种普遍存在的胞质肽基脯氨酰顺/反异构酶(PPIase),可协调HIV-1核心包装。 hCyp-18,整合到病毒粒子中,可实现核心脱壳和RNA释放,因此在病毒复制过程中起关键作用。 hCyp-18通过九个氢键网络与Gag多蛋白衣壳结构域的单个裸露环特异性相互作用,该氢键网络主要涉及该环的7-mer片段。如先前报道,相应的线性七肽Ac-Val-His-Ala-Gly-Pro-Ile-Ala-NH(2)(2)以低亲和力与hCyp-18结合(IC(50)= 850 +/- 220 microM),但相对于hFKBP-12(另一种丰富的PPIase)对hCyp-18具有潜在的有用选择性。根据Gag片段:hCyp-18复合物的X射线结构,我们生成了一系列修饰的肽,以探测相互作用的决定因素,从而选择显示出比Gag衣壳结构域更高亲和力的肽配体。我们合成了一系列七肽,以测试除Gly-Pro部分外氨基酸的能量贡献。特别强调了组氨酸残基对于相互作用的重要性。我们还研究了N和C末端修饰的影响。含有脱氨基缬氨酸(Dav)代替N末端缬氨酸或C末端丙氨酸酰胺被苄酰胺基取代的六肽显示出增加的亲和力。两种修饰的结合产生了最有力的竞争者Dav-His-Ala-Gly-Pro-Ile-NHBn(28),它对hCyp-18的亲和力比整个抗体高(K(d)= 3 +/- 0.5 microM)。衣壳蛋白(K(d)= 16 +/- 4 microM),对hFKBP-12的亲和力很低。我们的一些结果强烈表明标题化合物不是hCyp-18的底物,并优先以反式构象相互作用。

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