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Updated: May 9, 2026

Invasion of Human Cells by a Bacterial Pathogen
Published on: March 21, 2011
Molecular mechanisms of cell-cell spread of intracellular bacterial pathogens
1Department of Microbiology and Immunology, University of Otago, Dunedin, New Zealand. keith.ireton@otago.ac.nz
Abstract:
Several bacterial pathogens, including Listeria monocytogenes, Shigella flexneri and Rickettsia spp., have evolved mechanisms to actively spread within human tissues. Spreading is initiated by the pathogen-induced recruitment of host filamentous (F)-actin. F-actin forms a tail behind the microbe, propelling it through the cytoplasm. The motile pathogen then encounters the host plasma membrane, forming a bacterium-containing protrusion that is engulfed by an adjacent cell. Over the past two decades, much progress has been made in elucidating mechanisms of F-actin tail formation. Listeria and Shigella produce tails of branched actin filaments by subverting the host Arp2/3 complex. By contrast, Rickettsia forms tails with linear actin filaments through a bacterial mimic of eukaryotic formins. Compared with F-actin tail formation, mechanisms controlling bacterial protrusions are less well understood. However, recent findings have highlighted the importance of pathogen manipulation of host cell-cell junctions in spread. Listeria produces a soluble protein that enhances bacterial protrusions by perturbing tight junctions. Shigella protrusions are engulfed through a clathrin-mediated pathway at 'tricellular junctions'--specialized membrane regions at the intersection of three epithelial cells. This review summarizes key past findings in pathogen spread, and focuses on recent developments in actin-based motility and the formation and internalization of bacterial protrusions.
Insights
Bacterial pathogens like Listeria and Shigella spread through human tissues using actin-based motility. Recent research reveals how these microbes manipulate host cell junctions to form and internalize protrusions for cell-to-cell spread.
Area of Science:
- Microbiology
- Cell Biology
- Pathogenesis
Background:
- Bacterial pathogens utilize host actin for intracellular motility and cell-to-cell spread.
- Mechanisms of actin tail formation are well-studied, but bacterial protrusion formation and engulfment are less understood.
Purpose of the Study:
- To review recent advancements in understanding bacterial actin-based motility.
- To highlight novel mechanisms of bacterial protrusion formation and host cell junction manipulation.
Main Methods:
- Review of existing literature on bacterial pathogenesis and host cell interactions.
- Focus on molecular mechanisms of actin polymerization and host cell entry.
Main Results:
- Listeria and Shigella use the Arp2/3 complex for branched actin tails, while Rickettsia uses formin mimics for linear actin tails.
- Pathogen manipulation of host tight junctions and tricellular junctions is crucial for protrusion formation and engulfment.
Conclusions:
- Bacterial pathogens have evolved diverse strategies to exploit host actin dynamics and cell junctions for tissue dissemination.
- Further research into these mechanisms can inform therapeutic strategies against infectious diseases.
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