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Sci Adv ; 9(29): eadg5953, 2023 07 21.
Article de Anglais | MEDLINE | ID: mdl-37478179

RÉSUMÉ

HIV-1 infection depends on the integration of viral DNA into host chromatin. Integration is mediated by the viral enzyme integrase and is blocked by integrase strand transfer inhibitors (INSTIs), first-line antiretroviral therapeutics widely used in the clinic. Resistance to even the best INSTIs is a problem, and the mechanisms of resistance are poorly understood. Here, we analyze combinations of the mutations E138K, G140A/S, and Q148H/K/R, which confer resistance to INSTIs. The investigational drug 4d more effectively inhibited the mutants compared with the approved drug Dolutegravir (DTG). We present 11 new cryo-EM structures of drug-resistant HIV-1 intasomes bound to DTG or 4d, with better than 3-Å resolution. These structures, complemented with free energy simulations, virology, and enzymology, explain the mechanisms of DTG resistance involving E138K + G140A/S + Q148H/K/R and show why 4d maintains potency better than DTG. These data establish a foundation for further development of INSTIs that potently inhibit resistant forms in integrase.


Sujet(s)
Inhibiteurs de l'intégrase du VIH , Intégrase du VIH , Inhibiteurs de l'intégrase du VIH/pharmacologie , Inhibiteurs de l'intégrase du VIH/composition chimique , Oxazines/pharmacologie , Mutation , Intégrase du VIH/génétique , Intégrase du VIH/composition chimique , Intégrase du VIH/métabolisme
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