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一种适体-gp120 复合物的模型结构提供了 HIV-1 中和机制的深入了解。

A modeled structure of an aptamer-gp120 complex provides insight into the mechanism of HIV-1 neutralization.

机构信息

CSIR Biosciences, P.O. Box 395, Pretoria 0001, South Africa.

出版信息

Biochemistry. 2010 Jul 20;49(28):5880-90. doi: 10.1021/bi100301k.

DOI:10.1021/bi100301k
PMID:20527993
Abstract

The HIV-1 envelope glycoprotein, gp120, is a key target for a class of drugs called entry inhibitors. Here we used molecular modeling to construct a three-dimensional model of an anti-gp120 RNA aptamer, B40t77, alone and in complex with gp120. An initial model of B40t77 was built from the predicted secondary structure and then subjected to a combination of energy minimization and molecular dynamics. To model the B40t77-gp120 complex, we docked the B40t77 predicted structure onto the CD4-induced epitope of the gp120 crystal structure. A series of gp120 point mutations in the predicted B40t77-gp120 interface were measured for their binding affinity for B40t77 by surface plasmon resonance. According to the model, of the 10 gp120 amino acids that showed a reduction in the level of binding when mutated to alanine, all of them are modeled as making direct contact with B40t77 as part of a hydrogen bonding network. Comparison by electron microscopy of the B40t77-gp120 complex with gp120 alone revealed that only the longest dimension of the complex significantly increased in length, in a manner consistent with the predicted model. Binding assays revealed that B40t77 can weaken the binding of gp120 to the monoclonal antibodies B6, B12, and 2G12, none of which have binding sites that overlap with B40t77, as well as strengthen the binding to the antibody 19b. Thus, B40t77 may induce distant conformational changes in gp120 that disrupt its association with host cells and may suggest a mechanism for aptamer neutralization of HIV-1.

摘要

HIV-1 包膜糖蛋白 gp120 是一类称为进入抑制剂的药物的关键靶标。在这里,我们使用分子建模技术构建了抗 gp120 RNA 适体 B40t77 的三维模型,单独和与 gp120 复合物。B40t77 的初始模型是根据预测的二级结构构建的,然后进行能量最小化和分子动力学的组合。为了构建 B40t77-gp120 复合物,我们将 B40t77 的预测结构对接在 gp120 晶体结构的 CD4 诱导表位上。对 B40t77-gp120 界面中预测的 B40t77 点突变进行了一系列测量,以通过表面等离子体共振测量它们与 B40t77 的结合亲和力。根据模型,在突变为丙氨酸时显示结合水平降低的 10 个 gp120 氨基酸中,所有氨基酸都被建模为与 B40t77 直接接触,作为氢键网络的一部分。通过电子显微镜比较 B40t77-gp120 复合物与单独的 gp120,发现只有复合物的最长维度显著增加,这与预测模型一致。结合测定表明,B40t77 可以削弱 gp120 与单克隆抗体 B6、B12 和 2G12 的结合,而这三种抗体都没有与 B40t77 重叠的结合位点,同时也增强了与抗体 19b 的结合。因此,B40t77 可能诱导 gp120 的远程构象变化,破坏其与宿主细胞的结合,并且可能提示适体中和 HIV-1 的机制。

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