| Literature DB >> 35475970 |
Nazia Ahmad1, Sanmati Dugad2, Varsha Chauhan2, Shubbir Ahmed3, Kunal Sharma1, Sangita Kachhap4, Rana Zaidi1, William R Bishai2, Gyanu Lamichhane2, Pankaj Kumar1,2.
Abstract
L,D-transpeptidase function predominates in atypical 3 → 3 transpeptide networking of peptidoglycan (PG) layer in Mycobacterium tuberculosis. Prior studies of L,D-transpeptidases have identified only the catalytic site that binds to peptide moiety of the PG substrate or β-lactam antibiotics. This insight was leveraged to develop mechanism of its activity and inhibition by β-lactams. Here, we report identification of an allosteric site at a distance of 21 Å from the catalytic site that binds the sugar moiety of PG substrates (hereafter referred to as the S-pocket). This site also binds a second β-lactam molecule and influences binding at the catalytic site. We provide evidence that two β-lactam molecules bind co-operatively to this enzyme, one non-covalently at the S-pocket and one covalently at the catalytic site. This dual β-lactam-binding phenomenon is previously unknown and is an observation that may offer novel approaches for the structure-based design of new drugs against M. tuberculosis.Entities:
Keywords: L,D-transpeptidase; Mycobacterium tuberculosis; allostery; biochemistry; chemical biology; molecular biophysics; none; peptidoglycan; structural biology; β-lactam
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Year: 2022 PMID: 35475970 PMCID: PMC9094749 DOI: 10.7554/eLife.73055
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.713