• español
  • English
  • français
  • Deutsch
  • português (Brasil)
  • italiano
  • Contattaci
  • Manda Feedback
    • español
    • English
    • français
    • Deutsch
    • português (Brasil)
    • italiano
    • español
    • English
    • français
    • Deutsch
    • português (Brasil)
    • italiano
    JavaScript is disabled for your browser. Some features of this site may not work without it.
    Gredos. Repositorio documental de la Universidad de SalamancaUniversidad de Salamanca
    Consorcio BUCLE Recolector

    Ricerca

    Tutto GredosArchivi & CollezioniData di pubblicazioneAutoriSoggettiTitoliQuesta CollezioneData di pubblicazioneAutoriSoggettiTitoli

    My Account

    LoginRegistrazione

    Statistiche

    Ver Estadísticas de uso
    Estadísticas totales de uso y lectura

    ENLACES Y ACCESOS

    Derechos de autorPolíticasGuías de autoarchivoFAQAdhesión USAL a la Declaración de BerlínProtocolo de depósito, modificación y retirada de documentos y datosSolicitud de depósito, modificación y retirada de documentos y datos

    COMPARTIR

    Mostra Item 
    •   Gredos Home
    • Repository scientifico
    • Grupos de Investigación
    • GIDM. Dinámica Molecular
    • GIDM. Artículos
    • Mostra Item
    •   Gredos Home
    • Repository scientifico
    • Grupos de Investigación
    • GIDM. Dinámica Molecular
    • GIDM. Artículos
    • Mostra Item

    Compartir

    Exportar

    RISMendeleyRefworksZotero
    • edm
    • marc
    • xoai
    • qdc
    • ore
    • ese
    • dim
    • uketd_dc
    • oai_dc
    • etdms
    • rdf
    • mods
    • mets
    • didl
    • premis

    Citas

    Título
    The Role of Conserved Residues in the DEDDh Motif: the Proton-Transfer Mechanism of HIV-1 RNase H
    Autor(es)
    Dürr, Simon L.
    Bohuszewicz, Olga
    Berta, Dénes
    Suardiaz, Reynier
    García Jambrina, PabloAutoridad USAL ORCID
    Peter, Christine
    Shao, Yihan
    Rosta, Edina
    Palabras clave
    QM/MM
    Computational chemistry
    Fecha de publicación
    2021
    Editor
    ACS Publications
    Citación
    Simon L. Dürr, Olga Bohuszewicz, Dénes Berta, Reynier Suardiaz, Pablo G. Jambrina, Christine Peter, Yihan Shao, and Edina Rosta ACS Catalysis 2021 11 (13), 7915-7927 DOI: 10.1021/acscatal.1c01493
    Resumen
    [EN] RNase H is a prototypical example for two-metal-ion catalysis in enzymes. An RNase H activity cleaving the ribonucleic acid (RNA) backbone of a DNA/RNA hybrid is present not only in important drug targets, such as the HIV-1 reverse transcriptase, but also in many other nucleases, such as Homo sapiens (Hs) and Escherichia coli (Ec) RNase H or, notably, in enzymes that are part of the CRISPR gene editing molecular machinery. Despite its importance, the reaction mechanism uncovering the proton-transfer events is not yet understood. In particular, it is not known, which group is the proton donor for the leaving group. Moreover, several different proton acceptors were proposed, and the exact identity of the proton acceptor is also elusive. Here, we revisit the mechanism for RNAse H, whereby we find that the highly conserved Glu residue of the DDE motif acts as a proton donor via a mechanism further stabilized by the 2′O atom of the sugar. Additionally, we also describe an alternative proton-transfer mechanism via a conserved catalytic His residue to deprotonate the attacking water molecule. Furthermore, our quantum mechanics/molecular mechanics (QM/MM) calculations combining Hamiltonian replica exchange with a finite-temperature string method provide an accurate free-energy profile for the reaction catalyzed by the HIV-1 RNase H. Our reported pathway is consistent with kinetic data obtained for mutant HIV-1, Hs, and Ec RNase H, with the calculated pKa values of the DEDD residues and with crystallographic studies. The overall reaction barrier of ∼19 kcal mol–1, encountered in the phosphate-cleavage step, matches the slow experimental rate of ∼1–100 min–1. Additionally, using molecular dynamics (MD) calculations, we sample the recently identified binding site for a third transient divalent metal ion in the vicinity of the scissile phosphate in the product complex. Our results account for the experimental observation of a third metal ion facilitating product release in an Aquifex aeolicus RNase III crystal structure and the Bh RNase H in crystallo reaction. Taken together, we provide a molecular mechanism of the nuclease catalytic reaction that is likely common for the broad family of two-metal-ion catalytic phosphate-cleaving enzymes with a DDE motif.
    URI
    https://hdl.handle.net/10366/166499
    ISSN
    2155-5435
    DOI
    10.1021/acscatal.1c01493
    Versión del editor
    https://pubs.acs.org/doi/abs/10.1021/acscatal.1c01493
    Aparece en las colecciones
    • GIDM. Artículos [73]
    Mostra tutti i dati dell'item
    Files in questo item
    Nombre:
    Berta_HIV_RNaseH_ms_R2-1.pdf
    Tamaño:
    884.1Kb
    Formato:
    Adobe PDF
    Descripción:
    Main Article
    Thumbnail
    Mostra/Apri
     
    Universidad de Salamanca
    AVISO LEGAL Y POLÍTICA DE PRIVACIDAD
    2024 © UNIVERSIDAD DE SALAMANCA
     
    Universidad de Salamanca
    AVISO LEGAL Y POLÍTICA DE PRIVACIDAD
    2024 © UNIVERSIDAD DE SALAMANCA