Phagocytes from Mice Lacking the Sts Phosphatases Have an Enhanced Antifungal Response to Candida albicans

David Frank1,2, Shamoon Naseem2, Gian Luigi Russo2,3

  • 1Program in Molecular and Cellular Pharmacology, Stony Brook University, Stony Brook, New York, USA.

Mbio
|July 19, 2018
PubMed

Insights

Mice lacking Sts phosphatases show enhanced resistance to Candida albicans infection. Their phagocytes exhibit heightened antifungal activity, particularly through increased reactive oxygen species production, offering new therapeutic targets for invasive candidiasis.

Area of Science:

  • Immunology
  • Microbiology
  • Biochemistry

Background:

  • Systemic candidiasis is a growing health concern with inadequate treatments.
  • Sts phosphatases are identified as crucial regulators of the host's immune response to fungal infections.
  • Mice lacking Sts-1 and Sts-2 (Sts-/-) exhibit significantly improved survival against Candida albicans.

Purpose of the Study:

  • To elucidate the immunological mechanisms behind the enhanced antifungal resistance in Sts-/- mice.
  • To investigate the early kinetics of fungal clearance and phagocyte responses in Sts-/- mice.
  • To identify specific signaling pathways involved in the heightened immune response.

Main Methods:

  • Examined fungal clearance kinetics in kidneys of Sts-/- and wild-type mice post-Candida albicans infection.
  • Assessed the antifungal activity of bone marrow leukocytes, including monocytes and dendritic cells, ex vivo.
  • Measured reactive oxygen species (ROS) production, cytokine release, and inflammasome activation in phagocytes.

Main Results:

  • Sts-/- mice demonstrated reduced kidney fungal burden starting at 12-18 hours post-infection.
  • Sts-/- bone marrow-derived dendritic cells (BMDCs) and monocytes showed enhanced inhibition of Candida albicans growth ex vivo.
  • Enhanced ROS production was observed in Sts-/- BMDCs downstream of Dectin-1 signaling, linked to increased Syk tyrosine kinase activation.

Conclusions:

  • Sts phosphatases negatively regulate phagocyte activation, specifically impacting the Dectin-1-Syk signaling pathway.
  • Phagocytes deficient in Sts exhibit a more robust response to Candida albicans challenge.
  • This enhanced phagocyte responsiveness contributes to the significant resistance observed in Sts-/- mice against systemic fungal infections.

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