AI Article Synopsis

  • Hosts utilize both aggressive and cooperative strategies to defend against infections, with Leptin playing a key role in resistance mechanisms but its impact on cooperation with pathogens not fully understood.
  • In a study on mice infected with Yersinia pseudotuberculosis, a lack of Leptin signaling resulted in increased cooperation between the host and pathogen, leading to protection against infection, though it wasn't due to resistance or changes in energy metabolism.
  • The findings suggest that in certain situations, it may be more advantageous for hosts to tolerate organ damage caused by infection rather than solely focusing on preventing damage or killing the pathogen.

Article Abstract

To combat infections, hosts employ a combination of antagonistic and cooperative defense strategies. The former refers to pathogen killing mediated by resistance mechanisms, while the latter refers to physiological defense mechanisms that promote host health during infection independent of pathogen killing, leading to an apparent cooperation between the host and the pathogen. Previous work has shown that Leptin, a pleiotropic hormone that plays a central role in regulating appetite and energy metabolism, is indispensable for resistance mechanisms, while a role for Leptin signaling in cooperative host-pathogen interactions remains unknown. Using a mouse model of Yersinia pseudotuberculosis () infection, an emerging pathogen that causes fever, diarrhea, and mesenteric lymphadenitis in humans, we found that the physiological effects of chronic Leptin-signaling deficiency conferred protection from infection due to increased host-pathogen cooperation rather than greater resistance defenses. The protection against infection was independent of differences in food consumption, lipolysis, or fat mass. Instead, we found that the chronic absence of Leptin signaling protects from a shift to lipid utilization during infection that contributes to lethality. Furthermore, we found that the survival advantage conferred by Leptin deficiency was associated with increased liver and kidney damage. Our work reveals an additional level of complexity for the role of Leptin in infection defense and demonstrates that in some contexts, in addition to tolerating the pathogen, tolerating organ damage is more beneficial for survival than preventing the damage.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9476980PMC
http://dx.doi.org/10.1128/iai.00242-22DOI Listing

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