<p>Crohn’s disease (CD) involves aberrant intestinal T cell immunity and genetic variants associated with disease development. Notably, mutations impairing NOD2 signaling represent the largest genetic risk factor for CD. Paradoxically, although <i>NOD2</i> variants are associated with CD, its ligand, bacterial muramyl dipeptide, is a potent stimulator of immunity, long recognized as the minimal component required for the adjuvanticity of complete Freund’s adjuvant. This paradox highlights a critical gap in our understanding of how NOD2 coordinates the innate–adaptive immune cross-talk required to maintain intestinal homeostasis. Here we show that NOD2 engagement by muramyl dipeptide drives T cell homing to the mesenteric lymph nodes during both homeostasis and infection. This recruitment promotes antigen-specific effector and memory T cell accumulation in the ileal lamina propria, a process essential for effective recall responses and clearance of secondary infection. Mechanistically, this process requires endothelial-intrinsic NOD2 expression, which drives a specialized transcriptional program for leukocyte recruitment.</p>

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Endothelial cell-intrinsic NOD2 signaling regulates the intestinal immune response through the generation of effector and memory T cells

  • Boyan K. Tsankov,
  • Madison Denney,
  • Jennifer S. Y. Ahn,
  • Charles Carr,
  • Nayanan Nathan,
  • Derek K. L. Tsang,
  • Giuliano Bayer,
  • Lauren Baerg,
  • Alexander Luchak,
  • Tapas Mukherjee,
  • Elaine Tam,
  • Bana Samman,
  • Jennifer L. Gommerman,
  • Stephen E. Girardin,
  • Dana J. Philpott

摘要

Crohn’s disease (CD) involves aberrant intestinal T cell immunity and genetic variants associated with disease development. Notably, mutations impairing NOD2 signaling represent the largest genetic risk factor for CD. Paradoxically, although NOD2 variants are associated with CD, its ligand, bacterial muramyl dipeptide, is a potent stimulator of immunity, long recognized as the minimal component required for the adjuvanticity of complete Freund’s adjuvant. This paradox highlights a critical gap in our understanding of how NOD2 coordinates the innate–adaptive immune cross-talk required to maintain intestinal homeostasis. Here we show that NOD2 engagement by muramyl dipeptide drives T cell homing to the mesenteric lymph nodes during both homeostasis and infection. This recruitment promotes antigen-specific effector and memory T cell accumulation in the ileal lamina propria, a process essential for effective recall responses and clearance of secondary infection. Mechanistically, this process requires endothelial-intrinsic NOD2 expression, which drives a specialized transcriptional program for leukocyte recruitment.