SIGIRR Genetic Variants in Premature Infants With Necrotizing Enterocolitis
Author(s) -
Venkatesh Sampath,
Heather Menden,
Daniel Helbling,
Keguo Li,
Adam Gastonguay,
Ramani Ramchandran,
David Dimmock
Publication year - 2015
Publication title -
pediatrics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.611
H-Index - 345
eISSN - 1098-4275
pISSN - 0031-4005
DOI - 10.1542/peds.2014-3386
Subject(s) - necrotizing enterocolitis , medicine , missense mutation , immune system , cxcl1 , inflammation , immunology , innate immune system , phenotype , lipopolysaccharide , exome sequencing , toll like receptor , genetic screen , pathogenesis , mutation , gene , genetics , biology , chemokine
Necrotizing enterocolitis (NEC) is a severe form of bowel disease that develops in premature infants. Although animal data and human studies suggest that aberrant activation of the intestinal immune system contributes to NEC, the pathogenesis remains unclear. We hypothesized that inherited defects in the regulation of Toll-like receptor signaling can contribute to NEC susceptibility in premature infants. A forward genetic screen done in an infant with lethal NEC using exome sequencing identified a novel stop mutation (p.Y168X) and a rare missense variant (p.S80Y) in SIGIRR, a gene that inhibits intestinal Toll-like receptor signaling. Functional studies carried out in human embryonic kidney cells and intestinal epithelial cells demonstrated that SIGIRR inhibited inflammation induced by lipopolysaccharide, a cell wall component of Gram-negative bacteria implicated in NEC. The genetic variants identified in the infant with NEC resulted in loss of SIGIRR function and exaggerated inflammation in response to lipopolysaccharide. Additionally, Sanger sequencing identified missense, stop, or splice region SIGIRR variants in 10 of 17 premature infants with stage II+ NEC. To the best of our knowledge, this is one of the first reports of a phenotype associated with SIGIRR in humans. Our data provide novel mechanistic insight into the probable causation of NEC and support additional investigation of the hypothesis that inherited defects in the regulation of innate immune signaling can contribute to NEC susceptibility in premature infants.
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