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Published on: March 31, 2021
Outer Membrane Vesicles Mediate the Secretion and Nuclear Trafficking of a Bacterial Nucleomodulin
Jack K Emery1,2, Variya Nemidkanam1,3, Nina Colon1
1Centre for Innate Immunity and Infectious Diseases, Hudson Institute of Medical Research, Melbourne, Australia.
Abstract:
Nucleomodulins are a family of bacterial virulence proteins that traffic to the nucleus of host cells to disrupt nuclear processes and, in some cases, promote carcinogenesis. The mechanisms by which nucleomodulins are secreted and injected into host cells are not entirely clear. We hypothesised that bacterial extracellular vesicles (EVs), also known as outer membrane vesicles, may represent a novel mechanism for nucleomodulin delivery to host cells. To address this, we studied the role of EVs in the secretion of Helicobacter pylori tumour necrosis factor-α-inducing protein (Tipα), a protein that was reported to undergo nuclear trafficking and to promote carcinogenesis. Importantly, we showed that most Tipα present in H. pylori culture supernatants is associated with EVs and, moreover, is encapsulated within these particles in its biologically active dimeric form. Confocal microscopy and cell fractionation studies demonstrated that EVs carry Tipα to the nuclear compartment of host cells and can bind host DNA. EVs from isogenic tipA mutants induced greater pro-inflammatory cytokine responses in host cells than EVs from wild-type bacteria; however, this effect was dependent on the EV isolation method. We propose that EVs represent a new mechanism by which bacteria secrete and deliver nucleomodulins to their target cells, resulting in altered immune responses and possibly carcinogenesis.
Insights
Bacterial extracellular vesicles (EVs) deliver nucleomodulins, like Helicobacter pylori Tipα, to host cell nuclei. These EVs alter immune responses and may contribute to carcinogenesis.
Area of Science:
- Microbiology
- Cell Biology
- Cancer Research
Background:
- Nucleomodulins are bacterial virulence proteins targeting host cell nuclei.
- Mechanisms of nucleomodulin secretion and delivery are not fully understood.
- Bacterial extracellular vesicles (EVs) are potential delivery vehicles.
Purpose of the Study:
- Investigate the role of EVs in delivering Helicobacter pylori Tipα.
- Determine if EVs transport Tipα to the host cell nucleus.
- Assess the impact of EV-mediated Tipα delivery on host cell responses.
Main Methods:
- Studied Tipα association with EVs in H. pylori culture supernatants.
- Utilized confocal microscopy and cell fractionation to track Tipα.
- Analyzed pro-inflammatory cytokine responses in host cells exposed to EVs.
Main Results:
- Most Tipα in H. pylori supernatants is encapsulated within EVs in an active dimeric form.
- EVs successfully deliver Tipα to the host cell nuclear compartment.
- EVs from tipA mutants induced altered cytokine responses, dependent on EV isolation.
Conclusions:
- Bacterial EVs represent a novel mechanism for nucleomodulin secretion and delivery.
- EV-mediated nucleomodulin delivery can influence host immune responses.
- This pathway may play a role in bacterial pathogenesis and carcinogenesis.
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