Cryptosporidium parvum hijacks a host's long noncoding RNA U90926 to evade intestinal epithelial cell-autonomous

Marion L Graham1, Min Li2, Ai-Yu Gong1

  • 1Department of Microbial Pathogens and Immunity, Rush University Medical Center, Chicago, IL, United States.

PubMed

Insights

Cryptosporidium infection hijacks host U90926 long noncoding RNA to suppress epithelial defenses. Inhibiting U90926 reduces parasite burden, revealing a novel host-pathogen interaction.

Area of Science:

  • Parasitology
  • Molecular Biology
  • Immunology

Background:

  • Cryptosporidium is a major cause of diarrheal disease worldwide.
  • Intestinal epithelial cells are crucial for antiparasitic defense.
  • Long noncoding RNAs (lncRNAs) are implicated in host-pathogen interactions.

Purpose of the Study:

  • To investigate the role of host lncRNAs in Cryptosporidium infection.
  • To elucidate the molecular mechanisms by which lncRNAs regulate host defense.

Main Methods:

  • Upregulation of lncRNA U90926 in infected murine intestinal epithelial cells.
  • Inhibition and overexpression of U90926 to assess its effect on parasite burden.
  • Analysis of epigenetic regulation of defense genes, including Aebp1.
  • Investigating the role of Cryptosporidium virus 1 (CSpV1) in U90926 upregulation.

Main Results:

  • U90926 promotes Cryptosporidium infection by suppressing epithelial cell-autonomous antiparasitic defense.
  • Inhibiting U90926 decreases parasite burden; overexpression increases it.
  • U90926 epigenetically suppresses transcription of defense genes like Aebp1.
  • CSpV1 contributes to U90926 upregulation during infection.

Conclusions:

  • Cryptosporidium utilizes host lncRNA U90926 to evade antiparasitic defense.
  • U90926 acts as a pro-parasitic factor by downregulating epithelial defense mechanisms.
  • CSpV1 plays a role in modulating host lncRNA expression during infection.

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