5ipd Citations

Caught before Released: Structural Mapping of the Reaction Trajectory for the Sofosbuvir Activating Enzyme, Human Histidine Triad Nucleotide Binding Protein 1 (hHint1).

Biochemistry 56 3559-3570 (2017)
Related entries: 5ipb, 5ipc, 5ipe

Cited: 12 times
EuropePMC logo PMID: 28691797

Abstract

Human histidine triad nucleotide binding protein 1 (hHint1) is classified as an efficient nucleoside phosphoramidase and acyl-adenosine monophosphate hydrolase. Human Hint1 has been shown to be essential for the metabolic activation of nucleotide antiviral pronucleotides (i.e., proTides), such as the FDA approved hepatitis C drug, sofosbuvir. The active site of hHint1 comprises an ensemble of strictly conserved histidines, including nucleophilic His112. To structurally investigate the mechanism of hHint1 catalysis, we have designed and prepared nucleoside thiophosphoramidate substrates that are able to capture the transiently formed nucleotidylated-His112 intermediate (E*) using time-dependent crystallography. Utilizing a catalytically inactive hHint1 His112Asn enzyme variant and wild-type enzyme, the enzyme-substrate (ES1) and product (EP2) complexes were also cocrystallized, respectively, thus providing a structural map of the reaction trajectory. On the basis of these observations and the mechanistic necessity of proton transfers, proton inventory studies were carried out. Although we cannot completely exclude the possibility of more than one proton in flight, the results of these studies were consistent with the transfer of a single proton during the formation of the intermediate. Interestingly, structural analysis revealed that the critical proton transfers required for intermediate formation and hydrolysis may be mediated by a conserved active site water channel. Taken together, our results provide mechanistic insights underpinning histidine nucleophilic catalysis in general and hHint1 catalysis, in particular, thus aiding the design of future proTides and the elucidation of the natural function of the Hint family of enzymes.

Articles - 5ipd mentioned but not cited (1)



Reviews citing this publication (5)

  1. Current and future use of nucleo(s)tide prodrugs in the treatment of hepatitis C virus infection. Dousson CB. Antivir. Chem. Chemother. 26 2040206618756430 (2018)
  2. Phosphoramidates and phosphonamidates (ProTides) with antiviral activity. Slusarczyk M, Serpi M, Pertusati F. Antivir. Chem. Chemother. 26 2040206618775243 (2018)
  3. Potential molecular targets of nonstructural proteins for the development of antiviral drugs against SARS-CoV-2 infection. Liu XH, Zhang X, Lu ZH, Zhu YS, Wang T. Biomed Pharmacother 133 111035 (2021)
  4. Prodrugs of Nucleoside 5'-Monophosphate Analogues: Overview of the Recent Literature Concerning their Synthesis and Applications. Roy B, Navarro V, Peyrottes S. Curr Med Chem 30 1256-1303 (2023)
  5. The Many Faces of Histidine Triad Nucleotide Binding Protein 1 (HINT1). Dillenburg M, Smith J, Wagner CR. ACS Pharmacol Transl Sci 6 1310-1322 (2023)

Articles citing this publication (6)

  1. Tissue-Specific Proteomics Analysis of Anti-COVID-19 Nucleoside and Nucleotide Prodrug-Activating Enzymes Provides Insights into the Optimization of Prodrug Design and Pharmacotherapy Strategy. Li J, Liu S, Shi J, Wang X, Xue Y, Zhu HJ. ACS Pharmacol Transl Sci 4 870-887 (2021)
  2. ATI-2173, a Novel Liver-Targeted Non-Chain-Terminating Nucleotide for Hepatitis B Virus Cure Regimens. Squires KE, Mayers DL, Bluemling GR, Kolykhalov AA, Guthrie DB, Reddy P, Mitchell DG, Saindane MT, Sticher ZM, Edpuganti V, De La Rosa A. Antimicrob Agents Chemother 64 (2020)
  3. Crystal Structure of Histidine Triad Nucleotide-Binding Protein from the Pathogenic Fungus Candida albicans. Jung A, Yun JS, Kim S, Kim SR, Shin M, Cho DH, Choi KS, Chang JH. Mol. Cells 42 56-66 (2019)
  4. Histidine-Triad Hydrolases Provide Resistance to Peptide-Nucleotide Antibiotics. Yagmurov E, Tsibulskaya D, Livenskyi A, Serebryakova M, Wolf YI, Borukhov S, Severinov K, Dubiley S. mBio 11 (2020)
  5. Phosphoramidate hydrolysis catalyzed by human histidine triad nucleotide binding protein 1 (hHint1): a cluster-model DFT computational study. Liang G, Webster CE. Org. Biomol. Chem. 15 8661-8668 (2017)
  6. Tunable Supramolecular Assemblies from Amphiphilic Nucleoside Phosphoramidate Nanofibers by Enzyme Activation. West HT, Csizmar CM, Wagner CR. Biomacromolecules 19 2650-2656 (2018)