Molecular insight on the non-covalent interactions between carbapenems and L,D-transpeptidase 2 from Mycobacterium tuberculosis: ONIOM study

Show simple item record

dc.contributor.author Ntombela, Thandokuhle
dc.contributor.author Fakhar, Zeynab
dc.contributor.author Ibeji, Collins U.
dc.contributor.author Govender, Thavendran
dc.contributor.author Maguire, Glenn E.M.
dc.contributor.author Lamichhane, Gyanu
dc.contributor.author Kruger, Hendrik G.
dc.contributor.author Honarparvar, Bahareh
dc.date.accessioned 2018-07-26T12:22:44Z
dc.date.issued 2018-06
dc.description.abstract Tuberculosis remains a dreadful disease that has claimed many human lives worldwide and elimination of the causative agent Mycobacterium tuberculosis also remains elusive. Multidrug-resistant TB is rapidly increasing worldwide; therefore, there is an urgent need for improving the current antibiotics and novel drug targets to successfully curb the TB burden. L,D-Transpeptidase 2 is an essential protein in Mtb that is responsible for virulence and growth during the chronic stage of the disease. Both D,D- and L,D-transpeptidases are inhibited concurrently to eradicate the bacterium. It was recently discovered that classic penicillins only inhibit D,D-transpeptidases, while L,D-transpeptidases are blocked by carbapenems. This has contributed to drug resistance and persistence of tuberculosis. Herein, a hybrid two-layered ONIOM (B3LYP/6-31G+(d): AMBER) model was used to extensively investigate the binding interactions of LdtMt2 complexed with four carbapenems (biapenem, imipenem, meropenem, and tebipenem) to ascertain molecular insight of the drug-enzyme complexation event. In the studied complexes, the carbapenems together with catalytic triad active site residues of LdtMt2 (His187, Ser188 and Cys205) were treated at with QM [B3LYP/6-31+G(d)], while the remaining part of the complexes were treated at MM level (AMBER force field). The resulting Gibbs free energy (ΔG), enthalpy (ΔH) and entropy (ΔS) for all complexes showed that the carbapenems exhibit reasonable binding interactions towards LdtMt2. Increasing the number of amino acid residues that form hydrogen bond interactions in the QM layer showed significant impact in binding interaction energy differences and the stabilities of the carbapenems inside the active pocket of LdtMt2. The theoretical binding free energies obtained in this study reflect the same trend of the experimental observations. The electrostatic, hydrogen bonding and Van der Waals interactions between the carbapenems and LdtMt2 were also assessed. To further examine the nature of intermolecular interactions for carbapenem–LdtMt2 complexes, AIM and NBO analysis were performed for the QM region (carbapenems and the active residues of LdtMt2) of the complexes. These analyses revealed that the hydrogen bond interactions and charge transfer from the bonding to anti-bonding orbitals between catalytic residues of the enzyme and selected ligands enhances the binding and stability of carbapenem–LdtMt2 complexes. en_ZA
dc.description.department Chemistry en_ZA
dc.description.embargo 2019-06-01
dc.description.librarian hj2018 en_ZA
dc.description.sponsorship The College of Health Sciences (CHS), Aspen Pharmacare, MRC and NRF. en_ZA
dc.description.uri https://link.springer.com/journal/10822 en_ZA
dc.identifier.citation Ntombela, T., Fakhar, Z., Ibeji, C.U. et al. Molecular insight on the non-covalent interactions between carbapenems and L,D-transpeptidase 2 from Mycobacterium tuberculosis: ONIOM study. Journal of Computer-Aided Molecular Design (2018) 32: 687-701. https://doi.org/10.1007/s10822-018-0121-2. en_ZA
dc.identifier.issn 0920-654X (print)
dc.identifier.issn 1573-495 (online)
dc.identifier.other 10.1007/s10822-018-0121-2
dc.identifier.uri http://hdl.handle.net/2263/66000
dc.language.iso en en_ZA
dc.publisher Springer en_ZA
dc.rights © Springer International Publishing AG, part of Springer Nature 2018. The original publication is available at : https://link.springer.com/journal/10822. en_ZA
dc.subject Tuberculosis (TB) en_ZA
dc.subject Mycobacterium tuberculosis (MTB) en_ZA
dc.subject Quantum theory of atoms in molecules (QTAIM) en_ZA
dc.subject Natural bond orbital (NBO) en_ZA
dc.subject Our own N-layered integrated molecular orbital and molecular mechanics (ONIOM) en_ZA
dc.subject Carbapenems en_ZA
dc.subject Meropenem en_ZA
dc.subject Inactivation en_ZA
dc.subject Peptidoglycan en_ZA
dc.subject Cell wall en_ZA
dc.subject Electron density en_ZA
dc.subject Geometry optimization en_ZA
dc.subject Weak hydrogen bonds en_ZA
dc.subject Density functional theory (DFT) en_ZA
dc.subject L,D-transpeptidase 2 (LdtMt2) en_ZA
dc.title Molecular insight on the non-covalent interactions between carbapenems and L,D-transpeptidase 2 from Mycobacterium tuberculosis: ONIOM study en_ZA
dc.type Postprint Article en_ZA


Files in this item

This item appears in the following Collection(s)

Show simple item record