Human endothelial cells internalize Candida parapsilosis via N-WASP-mediated endocytosis

Tatsushi Shintaku1, Kyle A Glass, Matthew P Hirakawa

  • 1Department of Pediatrics, Women & Infants Hospital of Rhode Island, Providence, Rhode Island, USA.

Insights

Candida parapsilosis yeast invades human endothelial cells via engulfment, a process crucial for disseminated candidiasis. This uptake is mediated by N-WASP, a protein essential for actin nucleation.

Area of Science:

  • Mycology
  • Cell Biology
  • Infectious Diseases

Background:

  • Candida parapsilosis is a significant cause of candidiasis, leading to high morbidity and mortality.
  • Endothelial cell interactions with C. parapsilosis are less understood compared to Candida albicans.
  • Understanding these interactions is key to addressing disseminated candidiasis.

Purpose of the Study:

  • To investigate the mechanisms of C. parapsilosis internalization by human endothelial cells.
  • To compare C. parapsilosis uptake with that of C. albicans.
  • To identify key molecular players, such as N-WASP, in this process.

Main Methods:

  • In vitro assay using human endothelial cell monolayers.
  • Comparison of live and heat-killed yeast internalization.
  • Microscopy, Förster-resonance energy transfer (FRET) probes, and pharmacological/genetic inhibition (cytochalasin D, wiskostatin, siRNA).

Main Results:

  • Both live and heat-killed C. parapsilosis were efficiently internalized by endothelial cells through engulfment.
  • Internalization efficiency varied among yeast isolates and species.
  • N-WASP and actin colocalization occurred at internalization sites, and N-WASP activity was confirmed using FRET.
  • Inhibiting actin nucleation or N-WASP function reduced yeast uptake.

Conclusions:

  • Endothelial cell endocytosis of C. parapsilosis may facilitate blood vessel wall traversal during disseminated candidiasis.
  • N-WASP plays a critical role in mediating the uptake of C. parapsilosis by endothelial cells.
  • These findings offer insights into fungal pathogenesis and potential therapeutic targets.

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