Projects per year
Abstract
α-Methylacyl-CoA racemase (AMACR; P504S) is a pivotal enzyme involved in the β-oxidation of branched-chain fatty acids and bile acid intermediates, catalyzing the conversion between (2R)- and (2S)-2-methylacyl-CoA thioester epimers. The AMACR reaction enables downstream catabolism of these thioesters via stereospecific enzymes within the β-oxidation pathway. The AMACR homolog in Mycobacterium tuberculosis (MCR) has emerged as a tractable model for dissecting the mechanistic underpinnings of the racemization reaction and presents a promising therapeutic target given the pathogen's dependence on lipid metabolism for persistence and virulence. Previously, we reported the detailed molecular structure of wild-type MCR and in complex with a diverse set of acyl-CoA substrates. They revealed conserved active site residues that mediate substrate anchoring and epimerization and highlighted distinct molecular interactions that confer selectivity toward 2-methyl-branched substrates. Complementing these results, in this report, we present high-resolution structures for 2-arylthiopropanoyl-CoA inhibitors in complex with MCR and a comprehensive set of enzyme inhibition assays to delineate structure-activity relationships and probe competitive binding modes. Our findings underscore the importance of inhibitor side-chain branching and CoA anchoring in modulating enzymatic turnover and inhibition. Together, these data enhance our understanding of the racemization mechanism of MCR and establish a structural foundation for the rational design of selective inhibitors. Targeting MCR could represent a novel future therapeutic strategy for M. tuberculosis based on impairing cholesterol utilization.
| Original language | English |
|---|---|
| Article number | 110848 |
| Journal | The Journal of biological chemistry |
| Volume | 301 |
| Issue number | 12 |
| Early online date | 22 Oct 2025 |
| DOIs | |
| Publication status | Published - Dec 2025 |
Data Availability Statement
The atomic coordinates and structure factors for all 13 structures [under accession codes – 9RYY (2-(3-Benzyloxyphenylthio)propanoyl-CoA 2 complex ), 9RZA (2-(3-(3-Methoxybenzyloxy)phenylthio)propanoyl-CoA 3 complex ), 9RZ6 (2-(3-(2-Phenylethoxy)phenylthio)propanoyl-CoA 4 complex ), 9RZ8 (2-(3-(2-(3-Methoxyphenyl)ethoxy)phenylthio)propanoyl-CoA 5 complex ), 9RZ7 (2-(3-(2-(3-Trifluoromethylphenyl)ethoxy)phenylthio)propanoyl-CoA 6 complex ), 9RZ9 (2-(3-(2-Methylpropoxy)phenylthio)propanoyl-CoA 7 complex ), 9RYZ (2-(4-Benzyloxyphenylthio)propanoyl-CoA 8 complex ), 9RZ0 (2-(4-(3-Methoxybenzyloxy)phenylthio)propanoyl-CoA 9 complex ), 9RZ1 (2-(4-(2-Phenylethoxy)phenylthio)propanoyl-CoA 10 complex ), 9RZ4 ((±)-2-(4-(2-(3-Methoxyphenyl)ethoxy)phenylthio)propanoyl-CoA 11 complex ), 9RZ2 (2-(4-(2-(3-Trifluoromethylphenethoxy)phenylthio)propanoyl-CoA 12 complex ), 9RZ3 (2-(4-(2-Methylpropoxy)phenylthio)propanoyl-CoA 13 complex ), 9RZ5 ((±)-2-(4-Pentyloxyphenylthio)propanoyl-CoA 14 complex) respectively] have been deposited in the RCSB Protein Data Bank, www.pdb.orgAcknowledgements
We thank Diamond Light Source (Harwell, Didcot) for the use of PX beamlines IO4 (proposal MX31440 and MX37593) and the Material and Chemical Characterization Facility (MC2) at the University of Bath (doi.org/10.15125/mx6j-3r54) for NMR facilities.Funding
We thank Diamond Light Source (Harwell, Didcot) for the use of PX beamlines IO4 (proposal MX31440 and MX37593) and the Material and Chemical Characterization Facility (MC2) at the University of Bath (doi.org/10.15125/mx6j-3r54) for NMR facilities. O. O. M. T. J. W. M. D. L. and K. R. A. formal analysis; O. O. M. T. J. W. M. D. L. and K. R. A. data curation; O. O. M. T. J. W. M. D. L. and K. R. A. writing–review and editing; O. O. M. T. J. W. M. D. L. and K. R. A. visualization; O. O. M. T. J. W. M. D. L. and K. R. A. validation; O. O. M. T. J. W. M. D. L. and K. R. A. methodology; O. O. M. writing–original draft; M. D. L. and K. R. A. conceptualization; M. D. L. and K. R. A. investigation; M. D. L. and K. R. A. project administration; M. D. L. and K. R. A. supervision; K. R. A. resources; K. R. A. funding acquisition. This work was supported by the Department of Tertiary Education Financing (DTEF), Botswana, through a Post-graduate (Integrated PhD) studentship to O. O. M.
| Funders | Funder number |
|---|---|
| University of Bath | |
| Diamond Light Source Ltd | MX37593, MX31440 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
-
SDG 3 Good Health and Well-being
Keywords
- 2-arylthiopropanoyl-CoA inhibitor
- CoA-transferase
- M. tuberculosis
- X-ray crystallography
- ibuprofen
- kinetic study
- α-Methylacyl-CoA racemase (AMACR, P504S)
ASJC Scopus subject areas
- Biochemistry
- Molecular Biology
- Cell Biology
Fingerprint
Dive into the research topics of 'Structural basis for inhibition of Mycobacterium tuberculosis α-methylacyl-CoA racemase by 2-arylthiopropanoyl-CoA inhibitor analogs'. Together they form a unique fingerprint.Projects
- 1 Finished
-
AMACR and its role in cancer and tuberculosis
Acharya, R. (PI) & Lloyd, M. (CoI)
1/10/21 → 30/09/25
Project: Other
Equipment
-
Avance III 400 MHz Nuclear Magnetic Resonance (NMR) Spectrometer (9West)
Material and Chemical Characterisation (MC2)Facility/equipment: Equipment
-
Avance III 500 MHz Nuclear Magnetic Resonance (NMR) Spectrometer (9West)
Material and Chemical Characterisation (MC2)Facility/equipment: Equipment
-
Microplate reader BMG Labtech CLARIOstar
Material and Chemical Characterisation (MC2)Facility/equipment: Equipment
Cite this
- APA
- Standard
- Harvard
- Vancouver
- Author
- BIBTEX
- RIS