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Molecular Dynamics and Combined QM/MM Studies on the Deactivation of anti-Tubercular Drug Isoniazid by Arylamine N-Acetyltransferases
Authors:QIAO Qing-An  MA Cui-Hua  SONG Hui-Ling  CAI Hong-Lan  CAI Zheng-Ting  FENG Da-Cheng
Institution:[1]School of Chemistry and Materials Science, Ludong University, Yantai 264025, China [2]Institute of Theoretical Chemistry, Shandong University, Jinan 250100, China
Abstract:Both a molecule dynamic study and a combined quantum mechanics and mole-cule mechanics(QM/MM) study on the acetylating deactivation mechanism of isoniazid were presented.This type of reaction was catalyzed by arylamine N-acetyltransferases(NATs) and the results strongly support a direct acetyl group transfer process rather than a stepwise one.The isoniazid was strictly restrained in proper relative position to accept the acetyl group by a Hydrogen-bond network formed by the residues at the active center.The residues,His110 and Cys70,would be functioned as 'general base' rather than 'general acid'.If all the residues(including H2O molecules) were removed from the system,the activation energy will be increased from 145.1 to 243.3 kJ/mol.The calculations met the experimental data with good agreement.
Keywords:NATs  QM/MM method  deactivation of isoniazid  acetyl group transfer
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