High-resolution view of HIV-1 reverse transcriptase initiation complexes and inhibition by NNRTI drugs.

Ha, Betty; Larsen, Kevin P; Zhang, Jingji; Fu, Ziao; Montabana, Elizabeth; Jackson, Lynnette N; Chen, Dong-Hua; Puglisi, Elisabetta Viani · Nat Commun · 2021

basic_science · Level V

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Abstract

Reverse transcription of the HIV-1 viral RNA genome (vRNA) is an integral step in virus replication. Upon viral entry, HIV-1 reverse transcriptase (RT) initiates from a host tRNA<sup>Lys</sup><sub>3</sub> primer bound to the vRNA genome and is the target of key antivirals, such as non-nucleoside reverse transcriptase inhibitors (NNRTIs). Initiation proceeds slowly with discrete pausing events along the vRNA template. Despite prior medium-resolution structural characterization of reverse transcriptase initiation complexes (RTICs), higher-resolution structures of the RTIC are needed to understand the molecular mechanisms that underlie initiation. Here we report cryo-EM structures of the core RTIC, RTIC-nevirapine, and RTIC-efavirenz complexes at 2.8, 3.1, and 2.9 Å, respectively. In combination with biochemical studies, these data suggest a basis for rapid dissociation kinetics of RT from the vRNA-tRNA<sup>Lys</sup><sub>3</sub> initiation complex and reveal a specific structural mechanism of nucleic acid conformational stabilization during initiation. Finally, our results show that NNRTIs inhibit the RTIC and exacerbate discrete pausing during early reverse transcription.

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