The Shigella flexneri virulence factor apyrase is released inside eukaryotic cells to hijack host cell fate

Author:

Perruzza Lisa12,Zagaglia Carlo3,Vitiello Laura4,Sarshar Meysam5,Strati Francesco6,Pasqua Martina7,Grassi Fabio1,Nicoletti Mauro3,Palamara Anna Teresa89,Ambrosi Cecilia1011ORCID,Scribano Daniela3ORCID

Affiliation:

1. Institute for Research in Biomedicine, Faculty of Biomedical Sciences, Università della Svizzera Italiana , Bellinzona, Switzerland

2. Humabs BioMed, a subsidiary of Vir Biotechnology , Bellinzona, Switzerland

3. Department of Public Health and Infectious Diseases, Sapienza University of Rome , Rome, Italy

4. Laboratory of Flow Cytometry, IRCCS San Raffaele Roma , Rome, Italy

5. Research Laboratories, Bambino Gesù Children’s Hospital, IRCCS , Rome, Italy

6. Mucosal Immunology Lab, Department of Biotechnology and Biosciences, University of Milano-Bicocca , Milan, Italy

7. Institute Pasteur Italy, Department of Biology and Biotechnologies "Charles Darwin", Sapienza University of Rome , Rome, Italy

8. Department of Public Health and Infectious Diseases, Sapienza University of Rome, Laboratory Affiliated to Institute Pasteur Italia-Cenci Bolognetti Foundation , Rome, Italy

9. Department Infectious Diseases, Istituto Superiore di Sanità , Rome, Italy

10. Department of Human Sciences and Quality of Life Promotion, San Raffaele University , Rome, Italy

11. Laboratory of Microbiology of Chronic-Neurodegenerative Diseases, IRCCS San Raffaele Roma , Rome, Italy

Abstract

ABSTRACT Intestinal epithelial cells represent the first line of defense from invading enteric pathogens. During the course of infection, pro-inflammatory programmed cell death is an effective way to eliminate invading microbes and to create a localized inflammatory environment. On the other hand, pathogens evolved countless strategies to overcome cell death and to keep the host alive ensuring their spread. It was previously shown that Shigella flexneri apyrase interacts with OmpA to contribute to a proper polar exposition of IcsA, which mediates actin-based motility. However, apyrase is also an ATP-diphosphohydrolase whose catalytic activity function has not been elucidated yet. Herein, we demonstrated that apyrase contributes to the manipulation of host cell fate by S. flexneri since it is released within the host cell cytoplasm during infection to degrade intracellular ATP. Thus, apyrase contributes to prevent caspase-1 activation, thereby downregulating the activation of pyroptosis in infected cells. Overall, apyrase is involved in the modulation of host cell survival and dampens the inflammatory response. IMPORTANCE In this paper, we demonstrated that apyrase is released within the host cell cytoplasm during infection to target the intracellular ATP pool. By degrading intracellular ATP, apyrase contributes to prevent caspases activation, thereby inhibiting the activation of pyroptosis in infected cells. Our results show, for the first time, that apyrase is involved in the modulation of host cell survival, thereby aiding this pathogen to dampen the inflammatory response. This work adds a further piece to the puzzle of Shigella pathogenesis. Due to its increased spread worldwide, prevention and controlling strategies are urgently needed. Overall, this study highlighted apyrase as a suitable target for an anti-virulence therapy to tackle this pathogen.

Funder

Sapienza Università di Roma

Ministero della Salute

Regione Lazio

Ministero dell'Università e della Ricerca

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Cell Biology,Microbiology (medical),Genetics,General Immunology and Microbiology,Ecology,Physiology

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