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Structural understanding of non-nucleoside inhibition in an elongating herpesvirus polymerase.
Hayes, Robert P; Heo, Mee Ra; Mason, Mark; Reid, John; Burlein, Christine; Armacost, Kira A; Tellers, David M; Raheem, Izzat; Shaw, Anthony W; Murray, Edward; McKenna, Philip M; Abeywickrema, Pravien; Sharma, Sujata; Soisson, Stephen M; Klein, Daniel.
Afiliación
  • Hayes RP; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA. robert.hayes@merck.com.
  • Heo MR; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Mason M; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Reid J; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Burlein C; Quantitative Biosciences, Merck & Co., Inc., West Point, PA, USA.
  • Armacost KA; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Tellers DM; Discovery Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Raheem I; Discovery Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Shaw AW; Discovery Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Murray E; Infectious Diseases and Vaccines, Merck & Co., Inc., West Point, PA, USA.
  • McKenna PM; Infectious Diseases and Vaccines, Merck & Co., Inc., West Point, PA, USA.
  • Abeywickrema P; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Sharma S; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Soisson SM; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
  • Klein D; Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA, USA.
Nat Commun ; 12(1): 3040, 2021 05 24.
Article en En | MEDLINE | ID: mdl-34031403
ABSTRACT
All herpesviruses encode a conserved DNA polymerase that is required for viral genome replication and serves as an important therapeutic target. Currently available herpesvirus therapies include nucleoside and non-nucleoside inhibitors (NNI) that target the DNA-bound state of herpesvirus polymerase and block replication. Here we report the ternary complex crystal structure of Herpes Simplex Virus 1 DNA polymerase bound to DNA and a 4-oxo-dihydroquinoline NNI, PNU-183792 (PNU), at 3.5 Å resolution. PNU bound at the polymerase active site, displacing the template strand and inducing a conformational shift of the fingers domain into an open state. These results demonstrate that PNU inhibits replication by blocking association of dNTP and stalling the enzyme in a catalytically incompetent conformation, ultimately acting as a nucleotide competing inhibitor (NCI). Sequence conservation of the NCI binding pocket further explains broad-spectrum activity while a direct interaction between PNU and residue V823 rationalizes why mutations at this position result in loss of inhibition.
Asunto(s)

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: ADN Polimerasa Dirigida por ADN / Herpesviridae Idioma: En Revista: Nat Commun Asunto de la revista: BIOLOGIA / CIENCIA Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: ADN Polimerasa Dirigida por ADN / Herpesviridae Idioma: En Revista: Nat Commun Asunto de la revista: BIOLOGIA / CIENCIA Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos