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Updated: Sep 3, 2026

MS2-Affinity Purification Coupled with RNA Sequencing in Gram-Positive Bacteria
Published on: February 23, 2021
Mechanistic Studies of Antibacterial PNAs by RNA-Seq Analysis
Toby Wilkinson1, Jörg Vogel2,3,4
1Faculty of Medicine, Institute for Molecular Infection Biology (IMIB), University of Würzburg, Würzburg, Germany.
Abstract:
RNA sequencing (RNA-seq) has become the principal method for bacterial transcriptome analysis, enabling investigation of antibiotic mechanisms of action, stress responses, and resistance development. It has also played a key role in advancing antibacterial antisense oligomers (ASOs), particularly peptide nucleic acid (PNA)-based compounds. When conjugated to cell-penetrating peptides (CPPs) to enable intracellular delivery, PNAs provide a sequence-specific strategy to modulate bacterial gene expression. While growth-based assays can demonstrate bacterial killing by PNA-CPPs targeting essential genes, RNA-seq is required to elucidate the global transcriptional response to PNA-CPP exposure. This includes downregulation of PNA-targeted mRNAs, identification of cellular pathways linked to the targeted gene, assessment of off-target effects, and characterization of broader stress and membrane damage responses. Together, these insights provide a mechanistic understanding of PNA delivery, activity, and bacterial killing. This chapter describes optimized RNA-seq workflows for studying PNA-CPPs in Escherichia coli and Salmonella enterica; discusses considerations for RNA isolation, sequencing strategies, and data analysis; and emphasizes the importance of robust, reproducible pipelines for reliable data interpretation.
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