Open Access Te Herenga Waka-Victoria University of Wellington
Browse

The Crystal Structure of Engineered Nitroreductase NTR 2.0 and Impact of F70A and F108Y Substitutions on Substrate Specificity

Download (4.93 MB)
journal contribution
posted on 2025-08-20, 05:48 authored by Abigail SharrockAbigail Sharrock, JS Mumm, G Bagdžiūnas, N Čėnas, VL Arcus, David AckerleyDavid Ackerley
Bacterial nitroreductase enzymes that convert prodrugs to cytotoxins are valuable tools for creating transgenic targeted ablation models to study cellular function and cell-specific regeneration paradigms. We recently engineered a nitroreductase (“NTR 2.0”) for substantially enhanced reduction of the prodrug metronidazole, which permits faster cell ablation kinetics, cleaner interrogations of cell function, ablation of previously recalcitrant cell types, and extended ablation paradigms useful for modelling chronic diseases. To provide insight into the enhanced enzymatic mechanism of NTR 2.0, we have solved the X-ray crystal structure at 1.85 Angstroms resolution and compared it to the parental enzyme, NfsB from Vibrio vulnificus. We additionally present a survey of reductive activity with eight alternative nitroaromatic substrates, to provide access to alternative ablation prodrugs, and explore applications such as remediation of dinitrotoluene pollutants. The predicted binding modes of four key substrates were investigated using molecular modelling.

Funding

Funder: National Institutes of Health | Grant ID: R01OD020376

History

Preferred citation

Sharrock, A. V., Mumm, J. S., Bagdžiūnas, G., Čėnas, N., Arcus, V. L. & Ackerley, D. F. (2023). The Crystal Structure of Engineered Nitroreductase NTR 2.0 and Impact of F70A and F108Y Substitutions on Substrate Specificity. International Journal of Molecular Sciences, 24(7), 6633-6633. https://doi.org/10.3390/ijms24076633

Journal title

International Journal of Molecular Sciences

Volume

24

Issue

7

Publication date

2023-04-01

Pagination

6633-6633

Publisher

MDPI AG

Publication status

Published

Online publication date

2023-04-01

ISSN

1661-6596

eISSN

1422-0067

Article number

ARTN 6633

Language

en