Chemistry Department, Lomonosov Moscow State University, 119992 Moscow, Russia.
Faculty of Bioengineering and Bioinformatics, Lomonosov Moscow State University, 119992 Moscow, Russia.
Int J Mol Sci. 2022 Mar 8;23(6):2908. doi: 10.3390/ijms23062908.
The interaction of HIV-1 integrase and the cellular Ku70 protein is necessary for HIV replication due to its positive effect on post-integration DNA repair. We have previously described in detail the Ku70 binding site within integrase. However, the integrase binding site in Ku70 remained poorly characterized. Here, using a peptide fishing assay and site-directed mutagenesis, we have identified residues I72, S73, and I76 of Ku70 as key for integrase binding. The molecular dynamics studies have revealed a possible way for IN to bind to Ku70, which is consistent with experimental data. According to this model, residues I72 and I76 of Ku70 form a "leucine zipper" with integrase residues, and, therefore, their concealment by low-molecular-weight compounds should impede the Ku70 interaction with integrase. We have identified such compounds by molecular docking and have confirmed their capacity to inhibit the formation of the integrase complex with Ku70. Our data demonstrate that the site of IN binding within Ku70 identified in the present work may be used for further search for inhibitors of the integrase binding to Ku70.
HIV-1 整合酶与细胞 Ku70 蛋白的相互作用对于 HIV 复制是必要的,因为它对整合后 DNA 修复有积极影响。我们之前已经详细描述了整合酶内的 Ku70 结合位点。然而,Ku70 中的整合酶结合位点仍然描述不足。在这里,我们使用肽钓取实验和定点突变,鉴定了 Ku70 中的残基 I72、S73 和 I76 是整合酶结合的关键。分子动力学研究揭示了整合酶与 Ku70 结合的一种可能方式,这与实验数据一致。根据该模型,Ku70 的残基 I72 和 I76 与整合酶残基形成“亮氨酸拉链”,因此,它们被低分子量化合物掩盖应该会阻碍 Ku70 与整合酶的相互作用。我们通过分子对接鉴定了这些化合物,并证实了它们抑制整合酶与 Ku70 形成复合物的能力。我们的数据表明,本工作中确定的 Ku70 内整合酶结合位点可用于进一步寻找抑制整合酶与 Ku70 结合的抑制剂。