| Literature DB >> 24731825 |
Irshad Ahmed Baig1, Ji-Young Moon2, Min-Seo Kim3, Bon-Sung Koo4, Moon-Young Yoon5.
Abstract
Mycobacterium tuberculosis AHAS is a potential target for the development of novel anti-tuberculosis agents. Silico analysis showed that conserved His84 and Gln86 residues lie in the catalytic dimer interface of M. tuberculosis AHAS. Mutational analyses of these invariants led to significant reduction in their activity with reduced affinity toward the substrate. Importantly, mutation of Gln86 to Trp abolished complete activity. Further, molecular dynamics simulation studies suggested that these residues are likely to play a key role in maintaining the Glu85 side chain in the required geometry with N1' atom of ThDP during catalysis. In addition, substitution of essential Glu85 by Ala, Asp, and Gln led to severe drop in catalytic activity with reduced affinity toward ThDP confirming its catalytic role in M. tuberculosis AHAS.Entities:
Keywords: Acetohydroxyacid synthase; Molecular dynamics; Molecular modeling; Mutagenesis; ThDP dependent enzymes
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Year: 2014 PMID: 24731825 DOI: 10.1016/j.enzmictec.2014.02.009
Source DB: PubMed Journal: Enzyme Microb Technol ISSN: 0141-0229 Impact factor: 3.493