Mechanistic analysis of the broad antiretroviral resistance conferred by hiv-1 envelope glycoprotein mutations

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Abstract

Despite the effectiveness of antiretroviral (ARV) therapy, virological failure can occur in some HIV-1-infected patients in the absence of mutations in drug target genes. We previously reported that, in vitro, the lab-adapted HIV-1 NL4-3 strain can acquire resistance to the integrase inhibitor dolutegravir (DTG) by acquir-ing mutations in the envelope glycoprotein (Env) that enhance viral cell-cell trans-mission. In this study, we investigated whether Env-mediated drug resistance extends to ARVs other than DTG and whether it occurs in other HIV-1 isolates. We demonstrate that Env mutations can reduce susceptibility to multiple classes of ARVs and also increase resistance to ARVs when coupled with target-gene muta-tions. We observe that the NL4-3 Env mutants display a more stable and closed Env conformation and lower rates of gp120 shedding than the WT virus. We also selected for Env mutations in clinically relevant HIV-1 isolates in the presence of ARVs. These Env mutants exhibit reduced susceptibility to DTG, with effects on replication and Env structure that are HIV-1 strain dependent. Finally, to examine a possi-ble in vivo relevance of Env-mediated drug resistance, we performed single-genome sequencing of plasma-derived virus from five patients failing an integrase inhibitor-containing regimen. This analysis revealed the presence of several mutations in the highly conserved gp120-gp41 interface despite low frequency of resistance mutations in integrase. These results suggest that mutations in Env that enhance the ability of HIV-1 to spread via a cell-cell route may increase the opportunity for the virus to acquire high-level drug resistance mutations in ARV target genes.

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Hikichi, Y., Van Duyne, R., Pham, P., Groebner, J. L., Wiegand, A., Mellors, J. W., … Freed, E. O. (2021). Mechanistic analysis of the broad antiretroviral resistance conferred by hiv-1 envelope glycoprotein mutations. MBio, 12(1), 1–28. https://doi.org/10.1128/mBio.03134-20

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