Hallmarks of <i>Alpha-</i> and <i>Betacoronavirus</i> non-structural protein 7+8 complexes.

Krichel, Boris; Bylapudi, Ganesh; Schmidt, Christina; Blanchet, Clement; Schubert, Robin; Brings, Lea; Koehler, Martin; Zenobi, Renato et al. · Sci Adv · 2021

basic_science · Level V

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Abstract

Coronaviruses infect many different species including humans. The last two decades have seen three zoonotic coronaviruses, with SARS-CoV-2 (severe acute respiratory syndrome coronavirus 2) causing a pandemic in 2020. Coronaviral non-structural proteins (nsps) form the replication-transcription complex (RTC). Nsp7 and nsp8 interact with and regulate the RNA-dependent RNA-polymerase and other enzymes in the RTC. However, the structural plasticity of nsp7+8 complexes has been under debate. Here, we present the framework of nsp7+8 complex stoichiometry and topology based on native mass spectrometry and complementary biophysical techniques of nsp7+8 complexes from seven coronaviruses in the genera <i>Alpha-</i> and <i>Betacoronavirus</i> including SARS-CoV-2. Their complexes cluster into three groups, which systematically form either heterotrimers or heterotetramers or both, exhibiting distinct topologies. Moreover, even at high protein concentrations, SARS-CoV-2 nsp7+8 consists primarily of heterotetramers. From these results, the different assembly paths can be pinpointed to specific residues and an assembly model proposed.

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