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Title: | Structural and kinetic studies on adenylosuccinate lyase from Mycobacterium smegmatis and Mycobacterium tuberculosis provide new insights on the catalytic residues of the enzyme |
Authors: | Banerjee, Sanchari Agrawal, Monika J. Mishra, Diptimayee Sharan, Siddharth Balaram, Hemalatha Savithri, Handanhal S. Murthy, Mathur R. N. |
Keywords: | Biochemistry & Molecular Biology Adenylosuccinate Lyase Catalytic Activity Purine Nucleotide Supply Slow Growth Rate X-Ray Crystallography Multiple Sequence Alignment Purine Nucleotide Cycle Rat Skeletal-Muscle Bacillus-Subtilis Escherichia-Coli Adenosine Kinase Protein Refinement Synthetase Substrate |
Issue Date: | 2014 |
Publisher: | Wiley-Blackwell |
Citation: | Banerjee, S; Agrawal, MJ; Mishra, D; Sharan, S; Balaram, H; Savithri, HS; Murthy, MRN, Structural and kinetic studies on adenylosuccinate lyase from Mycobacterium smegmatis and Mycobacterium tuberculosis provide new insights on the catalytic residues of the enzyme. Febs Journal 2014, 281 (6) 1642-1658, http://dx.doi.org/10.1111/febs.12730 FEBS Journal 281 6 |
Abstract: | Adenylosuccinate lyase (ASL), an enzyme involved in purine biosynthesis, has been recognized as a drug target against microbial infections. In the present study, ASL from Mycobacteriumsmegmatis (MsASL) and Mycobacteriumtuberculosis (MtbASL) were cloned, purified and crystallized. The X-ray crystal structure of MsASL was determined at a resolution of 2.16 angstrom. It is the first report of an apo-ASL structure with a partially ordered active site C3 loop. Diffracting crystals of MtbASL could not be obtained and a model for its structure was derived using MsASL as a template. These structures suggest that His149 and either Lys285 or Ser279 of MsASL are the residues most likely to function as the catalytic acid and base, respectively. Most of the active site residues were found to be conserved, with the exception of Ser148 and Gly319 of MsASL. Ser148 is structurally equivalent to a threonine in most other ASLs. Gly319 is replaced by an arginine residue in most ASLs. The two enzymes were catalytically much less active compared to ASLs from other organisms. Arg319Gly substitution and reduced flexibility of the C3 loop might account for the low catalytic activity of mycobacterial ASLs. The low activity is consistent with the slow growth rate of Mycobacteria and their high GC containing genomes, as well as their dependence on other salvage pathways for the supply of purine nucleotides. Structured digital abstract<list list-type="bulleted" id="febs12730-list-0002"> andby() |
Description: | Restricted Access |
URI: | https://libjncir.jncasr.ac.in/xmlui/10572/2474 |
ISSN: | 1742-464X |
Appears in Collections: | Research Papers (Hemalatha Balaram) |
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