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Structural basis for inhibition of mycobacterial and human adenosine kinase by 7-substituted 7-(Het)aryl-7-deazaadenine ribonucleosides
J. Snášel, P. Nauš, J. Dostál, A. Hnízda, J. Fanfrlík, J. Brynda, A. Bourderioux, M. Dušek, H. Dvořáková, J. Stolaříková, H. Zábranská, R. Pohl, P. Konečný, P. Džubák, I. Votruba, M. Hajdúch, P. Rezáčová, V. Veverka, M. Hocek, I. Pichová,
Language English Country United States
Document type Journal Article, Research Support, Non-U.S. Gov't
PubMed
25259627
DOI
10.1021/jm500497v
Knihovny.cz E-resources
- MeSH
- Adenine analogs & derivatives chemistry MeSH
- Adenosine Kinase antagonists & inhibitors chemistry metabolism MeSH
- Adenosine Triphosphate metabolism MeSH
- Antitubercular Agents chemistry pharmacology MeSH
- Protein Conformation MeSH
- Crystallography, X-Ray MeSH
- Humans MeSH
- Microbial Sensitivity Tests MeSH
- Mycobacterium tuberculosis drug effects enzymology MeSH
- Nuclear Magnetic Resonance, Biomolecular MeSH
- Drug Evaluation, Preclinical MeSH
- Ribonucleosides chemistry pharmacology MeSH
- Binding Sites MeSH
- Structure-Activity Relationship MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
Adenosine kinase (ADK) from Mycobacterium tuberculosis (Mtb) was selected as a target for design of antimycobacterial nucleosides. Screening of 7-(het)aryl-7-deazaadenine ribonucleosides with Mtb and human (h) ADKs and testing with wild-type and drug-resistant Mtb strains identified specific inhibitors of Mtb ADK with micromolar antimycobacterial activity and low cytotoxicity. X-ray structures of complexes of Mtb and hADKs with 7-ethynyl-7-deazaadenosine showed differences in inhibitor interactions in the adenosine binding sites. 1D (1)H STD NMR experiments revealed that these inhibitors are readily accommodated into the ATP and adenosine binding sites of Mtb ADK, whereas they bind preferentially into the adenosine site of hADK. Occupation of the Mtb ADK ATP site with inhibitors and formation of catalytically less competent semiopen conformation of MtbADK after inhibitor binding in the adenosine site explain the lack of phosphorylation of 7-substituted-7-deazaadenosines. Semiempirical quantum mechanical analysis confirmed different affinity of nucleosides for the Mtb ADK adenosine and ATP sites.
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