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Updated: Sep 26, 2026

Fission Yeast as a Platform for Antibacterial Drug Screens Targeting Bacterial Cytoskeleton Proteins
Published on: April 26, 2024
Targeting amino acid biosynthesis pathways for antibacterial drug discovery: Chemical lessons and design
Ahmed E Ibrahim1, Amatus Salam1, Naiem A Wani1
1Department of Chemistry, Khalifa University of Science and Technology, PO BOX 127788, Abu Dhabi, United Arab Emirates.
Abstract:
Antimicrobial resistance (AMR) remains a major health challenge, emphasizing the urgent need for novel antibacterial strategies and unexplored therapeutic targets. Amino acid biosynthesis pathways are largely absent in humans but are central to bacterial growth, virulence, and metabolic adaptation, making them an attractive yet underexploited target space for antibacterial drug discovery. This review examines bacterial amino acid metabolism through a medicinal chemistry lens, focusing on prioritized and emerging enzyme targets with meaningful inhibitor development, structure-activity relationship (SAR), cellular activity, or target validation. Although several amino acid inhibitors have achieved commercial success as herbicides, their limited translation into antibacterial therapeutics is examined through representative case studies that highlight enzyme structural divergence, permeability barriers, target-engagement gaps, resistance risks, and the need for bacterial-specific optimization. We discuss recurring bottlenecks, promising recent advances, and practical design lessons while emphasizing the enzymatic, structural, functional, and regulatory features that define target tractability.
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