Rapamycin Re-Directs Lysosome Network, Stimulates ER-Remodeling, Involving Membrane CD317 and Affecting Exocytosis, in <i>Campylobacter Jejuni</i>-Lysate-Infected U937 Cells

The Gram-negative <i>Campylobacter jejuni</i> is a major cause of foodborne gastroenteritis in humans worldwide. The cytotoxic effects of <i>Campylobacter</i> have been mainly ascribed to the actions of the cytolethal distending toxin (CDT): it is mandatory to put in evidence...

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Main Authors: Barbara Canonico, Erica Cesarini, Mariele Montanari, Gianna Di Sario, Raffaella Campana, Luca Galluzzi, Federica Sola, Ozan Gundogdu, Francesca Luchetti, Aurora Diotallevi, Wally Baffone, Antonio Giordano, Stefano Papa
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:International Journal of Molecular Sciences
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Online Access:https://www.mdpi.com/1422-0067/21/6/2207
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Summary:The Gram-negative <i>Campylobacter jejuni</i> is a major cause of foodborne gastroenteritis in humans worldwide. The cytotoxic effects of <i>Campylobacter</i> have been mainly ascribed to the actions of the cytolethal distending toxin (CDT): it is mandatory to put in evidence risk factors for sequela development, such as reactive arthritis (ReA) and Guillain&#8722;Barr&#233; syndrome (GBS). Several researches are directed to managing symptom severity and the possible onset of sequelae. We found for the first time that rapamycin (RM) is able to largely inhibit the action of <i>C. jejuni</i> lysate CDT in U937 cells, and to partially avoid the activation of specific sub-lethal effects. In fact, we observed that the ability of this drug to redirect lysosomal compartment, stimulate ER-remodeling (highlighted by ER&#8722;lysosome and ER&#8722;mitochondria contacts), protect mitochondria network, and downregulate CD317/tetherin, is an important component of membrane microdomains. In particular, lysosomes are involved in the process of the reduction of intoxication, until the final step of lysosome exocytosis. Our results indicate that rapamycin confers protection against <i>C. jejuni</i> bacterial lysate insults to myeloid cells.
ISSN:1422-0067