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Updated: Sep 5, 2026

Nanomechanics of Drug-target Interactions and Antibacterial Resistance Detection
Published on: October 25, 2013
Molecular Dynamics Simulations Demonstrate Reduced Antibiotic Affinity to Mirror Bacterial Targets
Paul-Enguerrand Fady1, Juliette Ciccone2
1The Centre for Long-Term Resilience, London WC2H 9JQ, UK.
Abstract:
"Mirror life", self-replicating organisms composed of nonnatural-chirality biomacromolecules, presents a future threat with potentially global consequences. Consequently, there is strong agreement among experts that it should not be created. However, there is some disagreement over how effective existing medical countermeasures might prove against mirror bacteria, in the event that they were created. Here, we leverage computational chemistry methods including docking and molecular dynamics to determine the likely binding efficacy of existing antibiotics against natural and mirror bacterial protein targets. We find that most existing antibiotics fail to bind to mirror bacterial protein targets, unlike their natural-chirality targets. This suggests altered binding of current medical countermeasures, which may impact antimicrobial activity against mirror bacteria if the latter were created.
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