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Volume 90, Issue 1, Pages 16-24 (January 2010)


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ATP-dependent MurE ligase in Mycobacterium tuberculosis: Biochemical and structural characterisation

Chandrakala Basavannacharya, Giles Robertson, Tulika Munshi, Nicholas H. Keep, Sanjib BhaktaCorresponding Author Informationemail address

Received 1 July 2009; received in revised form 10 October 2009; accepted 26 October 2009. published online 30 November 2009.

Summary 

New therapies are required against Mycobacterium tuberculosis and its cell wall peptidoglycan biosynthesis is a potential therapeutic target. UDP-MurNAc-tripeptide ligase (MurE) is a member of the ATP-dependent ligase family, which incorporate amino acids including meso-diaminopimelic acid (m-DAP) into peptidoglycan during synthesis in a species-specific manner. In the present study, we have cloned, over-expressed, and characterised MurE from M. tuberculosis (Mtb-MurE). The crystal structure has been determined at 3.0Å resolution in the presence of the substrate UDP-MurNAc-l-Ala-d-Glu (UAG). The activity of the enzyme was measured through estimating inorganic phosphate released in a non-radioactive high-throughput colourimetric assay. UDP-MurNAc-l-Ala-d-Glu-m-DAP (UMT) formation coupled to inorganic phosphate release was confirmed by HPLC and mass spectrometric analyses. Kinetic constants were determined for a range of natural substrates using optimised conditions. From our findings, it is evident that Mtb-MurE is highly specific in adding m-DAP to UDP-MurNAc-dipeptide and ATP-hydrolysis is an absolute requirement for its activity.

Institute of Structural and Molecular Biology, Department of Biological Sciences, Birkbeck, University of London, Malet Street, London WC1E 7HX, UK

Corresponding Author InformationCorresponding author. Tel.: +44 207 631 6355; fax: +44 207 631 6246.

PII: S1472-9792(09)00115-2

doi:10.1016/j.tube.2009.10.007


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