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二价小分子gp41抑制剂的效力增强

Enhanced potency of bivalent small molecule gp41 inhibitors.

作者信息

Sofiyev Vladimir, Kaur Hardeep, Snyder Beth A, Hogan Priscilla A, Ptak Roger G, Hwang Peter, Gochin Miriam

机构信息

Department of Basic Sciences, Touro University-California, Vallejo, CA 94592, United States.

Southern Research Institute, 431 Aviation Way, Frederick, MD 21701, United States.

出版信息

Bioorg Med Chem. 2017 Jan 1;25(1):408-420. doi: 10.1016/j.bmc.2016.11.010. Epub 2016 Nov 19.

Abstract

Low molecular weight peptidomimetic inhibitors with hydrophobic pocket binding properties and moderate fusion inhibitory activity against HIV-1 gp41-mediated cell fusion were elaborated by increasing the available surface area for interacting with the heptad repeat-1 (HR1) coiled coil on gp41. Two types of modifications were tested: 1) increasing the overall hydrophobicity of the molecules with an extension that could interact in the HR1 groove, and 2) forming symmetrical dimers with two peptidomimetic motifs that could potentially interact simultaneously in two hydrophobic pockets on the HR1 trimer. The latter approach was more successful, yielding 40-60times improved potency against HIV fusion over the monomers. Biophysical characterization, including equilibrium binding studies by fluorescence and kinetic analysis by Surface Plasmon Resonance, revealed that inhibitor potency was better correlated to off-rates than to binding affinity. Binding and kinetic data could be fit to a model of bidentate interaction of dimers with the HR1 trimer as an explanation for the slow off-rate, albeit with minimal cooperativity due to the highly flexible ligand structures. The strong cooperativity observed in fusion inhibitory activity of the dimers implied accentuated potency due to the transient nature of the targeted intermediate. Optimization of monomer, dimer or higher order structures has the potential to lead to highly potent non-peptide fusion inhibitors by targeting multiple hydrophobic pockets.

摘要

通过增加与gp41上七肽重复序列-1(HR1)卷曲螺旋相互作用的可用表面积,精心设计了具有疏水口袋结合特性且对HIV-1 gp41介导的细胞融合具有中等融合抑制活性的低分子量肽模拟物抑制剂。测试了两种修饰类型:1)通过在HR1凹槽中相互作用的延伸来增加分子的整体疏水性,以及2)形成具有两个肽模拟基序的对称二聚体,这两个基序可能同时在HR1三聚体的两个疏水口袋中相互作用。后一种方法更为成功,与单体相比,对HIV融合的效力提高了40至60倍。包括通过荧光进行的平衡结合研究和通过表面等离子体共振进行的动力学分析在内的生物物理表征表明,抑制剂效力与解离速率的相关性比与结合亲和力的相关性更好。结合和动力学数据可以拟合为二聚体与HR1三聚体的双齿相互作用模型,作为解离速率缓慢的解释,尽管由于配体结构高度灵活,协同性最小。在二聚体的融合抑制活性中观察到的强协同性意味着由于靶向中间体的瞬态性质而增强了效力。通过靶向多个疏水口袋,优化单体、二聚体或更高阶结构有可能产生高效的非肽融合抑制剂。

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