Related Experiment Video
Updated: Jun 10, 2026

A Fluorescence-based Method to Study Bacterial Gene Regulation in Infected Tissues
Published on: February 19, 2019
The mycobacterial nucleoid-associated protein NapM exhibits stress-induced septal localization and modulates cell
Kornel Milcarz1, Joanna Hołówka1, Jakub Pawełczyk2
1Department of Molecular Microbiology, University of Wrocław, Wrocław, Poland.
Abstract:
The bacterial chromosome is organized in a hierarchical and dynamic manner to facilitate essential DNA transactions. Nucleoid-associated proteins (NAPs) are abundant, small-scale chromosomal organizers that also play important roles in maintaining chromosomal DNA integrity, regulating gene expression and DNA replication, and facilitating DNA repair. Here, we show that under optimal growth conditions, NapM-a unique mycobacterial NAP-modulates the expression of nearly one-sixth of M. smegmatis genes, with a notable impact on pathways involved in metabolism and cell envelope biosynthesis. Furthermore, we demonstrate that in response to cell-envelope-targeting agents, NapM localizes to the septum. Moreover, its absence contributes to the lower stability of septal DivIVA, a key component of the divisome, thereby ensuring accurate cell division under stress. Together, our findings suggest that NapM supports mycobacterial cell division by modulating the transcriptomic landscape and by associating with the divisome. These functions distinguish NapM from canonical nucleoid-associated proteins and prompt a re-evaluation of its functional classification.
Importance:
Understanding how bacteria adapt to environmental stress is critical to combating antibiotic resistance. This study characterizes NapM, a stress-responsive nucleoid-associated protein (NAP) in Mycobacterium smegmatis that couples maintenance of the transcriptional profile with the function of the cell division machinery. Distinct from canonical NAPs, NapM is essential for the proper expression of genes involved in metabolism and cell envelope biosynthesis. It also exhibits stress-dependent septal localization. This dual functionality reveals a unique adaptive strategy by which mycobacteria coordinate envelope maintenance and cytokinesis, advancing our understanding of bacterial stress resistance and identifying a potential target for therapeutic development.
Related Concept Videos
Nucleoid
Other Stress Responses in Bacteria
Stringent Response in E. coli
Bacterial Protein Maturation
Regulation of Nuclear Protein Sorting
Cytoskeletal Proteins in Bacteria

