Journal:IUCrJ:S2052252522007497

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Here we show a perturbation-dependent conformational landscape for Mpro, including a mobile zinc ion interleaved between the catalytic dyad, mercurial conformational heterogeneity at various sites including a key substrate-binding loop, and a far-reaching intramolecular network bridging the active site and dimer interface. Our results may inspire new strategies for antiviral drug development to aid preparation for future coronavirus pandemics.
Here we show a perturbation-dependent conformational landscape for Mpro, including a mobile zinc ion interleaved between the catalytic dyad, mercurial conformational heterogeneity at various sites including a key substrate-binding loop, and a far-reaching intramolecular network bridging the active site and dimer interface. Our results may inspire new strategies for antiviral drug development to aid preparation for future coronavirus pandemics.
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<scene name='91/919674/Cv1/3'>Biological representation of Mpro</scene>. Our 310 K Mpro model ([[7mhk]]) is represented here as the biologically relevant dimer. Here we show one monomer as cartoon only (red), including bound zinc (pale purple, sphere) between the catalytic dyad (red, sticks). The second monomer is shown in surface representation (light gray, semi transparent), highlighting the substrate binding pocket (dark yellow, surface), while including bound zinc (pale purple, sphere) and catalytic dyad (red, sticks). We also highlight a fragment bound to the substrate binding pocket from PDB [[6lu7]] (dark gray).
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<scene name='91/919674/Cv1/4'>Biological representation of Mpro</scene>. Our 310 K Mpro model ([[7mhk]]) is represented here as the biologically relevant dimer. Here we show one monomer as cartoon only (red), including bound zinc (pale purple, sphere) between the catalytic dyad (red, sticks). The second monomer is shown in surface representation (light gray, semi transparent), highlighting the substrate binding pocket (dark yellow, surface), while including bound zinc (pale purple, sphere) and catalytic dyad (red, sticks). We also highlight a fragment bound to the substrate binding pocket from PDB [[6lu7]] (dark gray).
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Image 2. 7k3t anomalous density map
Image 2. 7k3t anomalous density map

Revision as of 15:42, 15 August 2022

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Alexander Berchansky, Jaime Prilusky

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