4.7 Article

TNFRSF13B genotypes control immune- mediated pathology by regulating the functions of innate B cells

期刊

JCI INSIGHT
卷 6, 期 17, 页码 -

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/jci.insight.150483

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资金

  1. NIH [AI117561, AI122369, AI15158801]
  2. Department of Surgery at the University of Michigan
  3. Michigan Genomics Initiative
  4. Michigan Institute for Clinical and Health Research
  5. American Society of Transplantation Research Network
  6. [EB022033]

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Variants of TNF receptor superfamily member 13B (TNFRSF13B) have been found to enhance defense against certain pathogens and control immune-mediated injury of transplants. Studies using mutant mice suggest that these variants may lead to early and severe antibody-mediated rejection.
Host genes define the severity of inflammation and immunity but specific loci doing so are unknown. Here we show that TNF receptor superfamily member 13B (TNFRSF13B) variants, which enhance defense against certain pathogens, also control immune-mediated injury of transplants, by regulating innate B cells' functions. Analysis of TNFRSF13B in human kidney transplant recipients revealed that 33% of those with antibody-mediated rejection (AMR) but fewer than 6% of those with stable graft function had TNFRSF13B missense mutations. To explore mechanisms underlying aggressive immune responses, we investigated alloimmunity and rejection in mice. Cardiac allografts in Tnfrsf13b-mutant mice underwent early and severe AMR. The dominance and precocity of AMR in Tnfrsf13b-deficient mice were not caused by increased alloantibodies. Rather, Tnfrsf13b mutations decreased natural IgM and compromised complement regulation, leading to complement deposition in allografted hearts and autogenous kidneys. Thus, WT TNFRSF13B and Tnfrsf13b support innate B cell functions that limit complement-associated inflammation; in contrast, common variants of these genes intensify inflammatory responses that help clear microbial infections but allow inadvertent tissue injury to ensue. The wide variation in inflammatory reactions associated with TNFRSF13B diversity suggests polymorphisms could underlie variation in host defense and explosive inflammatory responses that sometimes enhance morbidity associated with immune responses.

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