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- The structural and energetic aspects of substrate binding and the mechanism of action of the DapE-encoded N-succinyl-l,l-diaminopimelic acid desuccinylase (DapE) investigated using a hybrid QM/MM method. Debodyuti Dutta, Sabyashachi Mishra
, Phys. Chem. Chem. Phys.
, 2014
, 16
, 26348
- Synthesis of bis-α,α′-amino acids through diastereoselective bis-alkylations of chiral Ni(ii)-complexes of glycine. Jiang Wang, Hong Liu, José Luis Aceña, Daniel Houck, Ryosuke Takeda, Hiroki Moriwaki, Tatsunori Sato, Vadim A. Soloshonok
, Org. Biomol. Chem.
, 2013
, 11
, 4508
- Zinc-selective inhibition of the promiscuous bacterial amide-hydrolase DapE: implications of metal heterogeneity for evolution and antibiotic
drug design. Narasimha Rao Uda, Grégory Upert, Gaetano Angelici, Stefan Nicolet, Tobias Schmidt, Torsten Schwede, Marc Creus
, Metallomics
, 2014
, 6
, 88
- Structural and mechanistic insight into substrate binding from the conformational dynamics in apo and substrate-bound DapE enzyme. Debodyuti Dutta, Sabyashachi Mishra
, Phys. Chem. Chem. Phys.
, 2016
, 18
, 1671
- The stereoselective synthesis of aziridine analogues of diaminopimelic acid (DAP) and their interaction with dap epimerase. Christopher M. Diaper, Andrew Sutherland, Bindu Pillai, Michael N. G. James, Paul Semchuk, John S. Blanchard, John C. Vederas
, Org. Biomol. Chem.
, 2005
, 3
, 4402
- Characterization of DcsC, a PLP-independent racemase involved in the biosynthesis of d-cycloserine. David Dietrich, Marco J. van Belkum, John C. Vederas
, Org. Biomol. Chem.
, 2012
, 10
, 2248
- Inhibition of lysine biosynthesis: an evolving antibiotic strategy. Craig A. Hutton, Matthew A. Perugini, Juliet A. Gerrard
, Mol. BioSyst.
, 2007
, 3
, 458
- Substituent changes in the salen ligands of CuIINaI-complexes to induce various structures and catalytic activities towards 2-imidazolines from nitriles and 1,2-diaminopropane. Quan-Quan Li, Peng-Xiu He, Jin Zhang, Ji-Dong Zhang, Yu-Meng Xin, Ping Liu, Yao-Yu Wang, Jian-Li Li
, Chem. Commun.
, 2019
, 55
, 4619
- Synthesis of characteristic Mycobacterium peptidoglycan (PGN) fragments utilizing with chemoenzymatic preparation of meso-diaminopimelic acid (DAP), and their modulation of innate immune responses. Qianqian Wang, Yusuke Matsuo, Ambara R. Pradipta, Naohiro Inohara, Yukari Fujimoto, Koichi Fukase
, Org. Biomol. Chem.
, 2016
, 14
, 1013
- Metabolomics reveals that the cAMP receptor protein regulates nitrogen and peptidoglycan synthesis in Mycobacterium tuberculosis. Yi Liu, Sonia Rebollo-Ramirez, Gerald Larrouy-Maumus
, RSC Adv.
, 2020
, 10
, 26212