1-Deoxy-D-xylulose-5-phosphate reductoisomerase (DXR) is a novel target for developing new antibacterial (including antituberculosis) and antimalaria drugs. Forty-one lipophilic phosphonates, representing a new class of DXR inhibitors, were synthesized, among which 5-phenylpyridin-2-ylmethylphosphonic acid possesses the most activity against E. coli DXR (EcDXR) with a K(i) of 420 nM. Structure-activity relationships (SAR) are discussed, which can be rationalized using our EcDXR:inhibitor structures, and a predictive quantitative SAR (QSAR) model is also developed. Since inhibition studies of DXR from Mycobacterium tuberculosis (MtDXR) have not been performed well, 48 EcDXR inhibitors with a broad chemical diversity were found, however, to generally exhibit considerably reduced activity against MtDXR. The crystal structure of a MtDXR:inhibitor complex reveals the flexible loop containing the residues 198-208 has no strong interactions with the 3,4-dichlorophenyl group of the inhibitor, representing a structural basis for the reduced activity. Overall, these results provide implications in the future design and development of potent DXR inhibitors.
1-Deoxy-D-xylulose-5-phosphate reductoisomerase (n class="Gene">DXR) is a novel target for developing new antibacterial (including antituberculosis) and antimalaria drugs. Forty-one lipophilic phosphonates, representing a new class ofDXR inhibitors, were synthesized, among which 5-phenylpyridin-2-ylmethylphosphonic acid possesses the most activity against E. coliDXR (EcDXR) with a K(i) of 420 nM. Structure-activity relationships (SAR) are discussed, which can be rationalized using our EcDXR:inhibitor structures, and a predictive quantitative SAR (QSAR) model is also developed. Since inhibition studies ofDXRfrom Mycobacterium tuberculosis (MtDXR) have not been performed well, 48 EcDXR inhibitors with a broad chemical diversity were found, however, to generally exhibit considerably reduced activity against MtDXR. The crystal structure of a MtDXR:inhibitor complex reveals the flexible loop containing the residues 198-208 has no strong interactions with the 3,4-dichlorophenyl group of the inhibitor, representing a structural basis for the reduced activity. Overall, these results provide implications in the future design and development of potent DXR inhibitors.
Authors: Sunny Oyakhirome; Saadou Issifou; Peter Pongratz; Fortune Barondi; Michael Ramharter; Jürgen F Kun; Michel A Missinou; Bertrand Lell; Peter G Kremsner Journal: Antimicrob Agents Chemother Date: 2007-02-26 Impact factor: 5.191
Authors: Lena M Henriksson; Torsten Unge; Jens Carlsson; Johan Aqvist; Sherry L Mowbray; T Alwyn Jones Journal: J Biol Chem Date: 2007-05-09 Impact factor: 5.157
Authors: Aengus Mac Sweeney; Roland Lange; Roberta P M Fernandes; Henk Schulz; Glenn E Dale; Alice Douangamath; Philip J Proteau; Christian Oefner Journal: J Mol Biol Date: 2005-01-07 Impact factor: 5.469
Authors: Allie Y Chen; Rebecca N Adamek; Benjamin L Dick; Cy V Credille; Christine N Morrison; Seth M Cohen Journal: Chem Rev Date: 2018-09-07 Impact factor: 60.622
Authors: Guobin Cai; Lisheng Deng; Bartlomiej G Fryszczyn; Nicholas G Brown; Zhen Liu; Hong Jiang; Timothy Palzkill; Yongcheng Song Journal: ACS Med Chem Lett Date: 2012-05-07 Impact factor: 4.345
Authors: Guobin Cai; Lisheng Deng; Jian Xue; Silvia N J Moreno; Boris Striepen; Yongcheng Song Journal: Bioorg Med Chem Lett Date: 2013-01-30 Impact factor: 2.823
Authors: Emily R Jackson; Géraldine San Jose; Robert C Brothers; Emma K Edelstein; Zachary Sheldon; Amanda Haymond; Chinchu Johny; Helena I Boshoff; Robin D Couch; Cynthia S Dowd Journal: Bioorg Med Chem Lett Date: 2013-12-04 Impact factor: 2.823
Authors: Pinhong Chen; Lori B Horton; Rose L Mikulski; Lisheng Deng; Sandeep Sundriyal; Timothy Palzkill; Yongcheng Song Journal: Bioorg Med Chem Lett Date: 2012-08-10 Impact factor: 2.823
Authors: Géraldine San Jose; Emily R Jackson; Eugene Uh; Chinchu Johny; Amanda Haymond; Lindsay Lundberg; Chelsea Pinkham; Kylene Kehn-Hall; Helena I Boshoff; Robin D Couch; Cynthia S Dowd Journal: Medchemcomm Date: 2013-07-01 Impact factor: 3.597