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Novel gain-of-function mutation in dysferlin causes vesicle trafficking defect and IL-1 mediated autoinflammation

  • Farzana Bhuyan
  • , Clinton Bradfield
  • , Amitava Roy
  • , Adriana A de Jesus
  • , Mohammad Arif Rahman
  • , Benjamin Schwarz
  • , Anjelika Gasilina
  • , Andre Rastegar
  • , Gaurav Sachin
  • , Christopher L Friend
  • , Kanika Chopra
  • , Kat Uss
  • , Ryan Kissinger
  • , Sara Alehashemi
  • , Sundar Ganesan
  • , Nathan T Brandes
  • , Ian S Lacroix
  • , Vinod Nair
  • , Jacqueline M Leung
  • , Clayton Winkler
  • Juraj Kabat, Steven M Holland, Philip J Kahn, Douglas B Kuhns, John Hammer, Ronit Herzog, Deborah Consolini, Iain Fraser, Raphaela Goldbach-Mansky
  • National Institute of Allergy and infectious Disease
  • National Institutes of Health
  • National Cancer Institute
  • Hassenfeld Children's Hospital
  • Applied/Developmental Research Directorate
  • Weill Medical College of Cornell University

Producción científica

Resumen

De novo mutations underlying early-onset systemic autoinflammatory diseases have identified key regulators of innate immunity, including pathways that drive IL-1-mmediated inflammation. Here we describe two unrelated girls presenting in infancy with systemic inflammation and sterile lung abscesses, who harbor the same de novo gain-of-function mutation in dysferlin ( DYSF; p.P1449L) Myeloid expression of DYSF P1449L enhances COP-I binding, promotes dysferlin retention in the ER-Golgi, and disrupts vesicle trafficking and membrane homeostasis. Dysferlin-mutant monocytes and M2-like macrophages exhibit ectopic perinuclear NLRP3 inflammasome activation, increased IL-1β production, and inflammatory cell death. Mutant M2-like macrophages further display defects in membrane expansion, exocytosis, efferocytosis, and debris clearance, promoting neutrophil recruitment and DAMP-signal amplification that culminate in sterile abscess formation. These findings identify dysferlin as a regulator of membrane homeostasis in myeloid cells, establish defective membrane-stress adaptation as trigger of NLRP3 inflammasome activation, and define a novel IL-1 mediated autoinflammatory disease caused by gain-of-function DYSF mutations.

Idioma originalEnglish
DOI
EstadoPublished - 7 ago 2026

Series de publicaciones

NombremedRxiv : the preprint server for health sciences

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