TY - UNPB
T1 - Novel gain-of-function mutation in dysferlin causes vesicle trafficking defect and IL-1 mediated autoinflammation
AU - Bhuyan, Farzana
AU - Bradfield, Clinton
AU - Roy, Amitava
AU - de Jesus, Adriana A
AU - Rahman, Mohammad Arif
AU - Schwarz, Benjamin
AU - Gasilina, Anjelika
AU - Rastegar, Andre
AU - Sachin, Gaurav
AU - Friend, Christopher L
AU - Chopra, Kanika
AU - Uss, Kat
AU - Kissinger, Ryan
AU - Alehashemi, Sara
AU - Ganesan, Sundar
AU - Brandes, Nathan T
AU - Lacroix, Ian S
AU - Nair, Vinod
AU - Leung, Jacqueline M
AU - Winkler, Clayton
AU - Kabat, Juraj
AU - Holland, Steven M
AU - Kahn, Philip J
AU - Kuhns, Douglas B
AU - Hammer, John
AU - Herzog, Ronit
AU - Consolini, Deborah
AU - Fraser, Iain
AU - Goldbach-Mansky, Raphaela
PY - 2026/8/7
Y1 - 2026/8/7
N2 - 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.
AB - 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.
U2 - 10.64898/2026.08.04.26358821
DO - 10.64898/2026.08.04.26358821
M3 - Preprint
C2 - 42620509
T3 - medRxiv : the preprint server for health sciences
BT - Novel gain-of-function mutation in dysferlin causes vesicle trafficking defect and IL-1 mediated autoinflammation
ER -