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Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis

Sepsis claims an estimated 30 million episodes and 6 million deaths per year, and treatment options are rather limited. Human neutrophil peptides 1–3 (HNP1–3) are the most abundant neutrophil granule proteins but their neutrophil content varies because of unusually extensive gene copy number polymor...

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Autores principales: Chen, QiXing, Yang, Yang, Hou, JinChao, Shu, Qiang, Yin, YiXuan, Fu, WeiTao, Han, Feng, Hou, TingJun, Zeng, CongLi, Nemeth, Elizabeta, Linzmeier, Rose, Ganz, Tomas, Fang, XiangMing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6386704/
https://www.ncbi.nlm.nih.gov/pubmed/30718392
http://dx.doi.org/10.1073/pnas.1812947116
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author Chen, QiXing
Yang, Yang
Hou, JinChao
Shu, Qiang
Yin, YiXuan
Fu, WeiTao
Han, Feng
Hou, TingJun
Zeng, CongLi
Nemeth, Elizabeta
Linzmeier, Rose
Ganz, Tomas
Fang, XiangMing
author_facet Chen, QiXing
Yang, Yang
Hou, JinChao
Shu, Qiang
Yin, YiXuan
Fu, WeiTao
Han, Feng
Hou, TingJun
Zeng, CongLi
Nemeth, Elizabeta
Linzmeier, Rose
Ganz, Tomas
Fang, XiangMing
author_sort Chen, QiXing
collection PubMed
description Sepsis claims an estimated 30 million episodes and 6 million deaths per year, and treatment options are rather limited. Human neutrophil peptides 1–3 (HNP1–3) are the most abundant neutrophil granule proteins but their neutrophil content varies because of unusually extensive gene copy number polymorphism. A genetic association study found that increased copy number of the HNP-encoding gene DEFA1/DEFA3 is a risk factor for organ dysfunction during sepsis development. However, direct experimental evidence demonstrating that these risk alleles are pathogenic for sepsis is lacking because the genes are present only in some primates and humans. Here, we generate DEFA1/DEFA3 transgenic mice with neutrophil-specific expression of the peptides. We show that mice with high copy number of DEFA1/DEFA3 genes have more severe sepsis-related vital organ damage and mortality than mice with low copy number of DEFA1/DEFA3 or wild-type mice, resulting from more severe endothelial barrier dysfunction and endothelial cell pyroptosis after sepsis challenge. Mechanistically, HNP-1 induces endothelial cell pyroptosis via P2X7 receptor-mediating canonical caspase-1 activation in a NLRP3 inflammasome-dependent manner. Based on these findings, we engineered a monoclonal antibody against HNP-1 to block the interaction with P2X7 and found that the blocking antibody protected mice carrying high copy number of DEFA1/DEFA3 from lethal sepsis. We thus demonstrate that DEFA1/DEFA3 copy number variation strongly modulates sepsis development in vivo and explore a paradigm for the precision treatment of sepsis tailored by individual genetic information.
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spelling pubmed-63867042019-02-26 Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis Chen, QiXing Yang, Yang Hou, JinChao Shu, Qiang Yin, YiXuan Fu, WeiTao Han, Feng Hou, TingJun Zeng, CongLi Nemeth, Elizabeta Linzmeier, Rose Ganz, Tomas Fang, XiangMing Proc Natl Acad Sci U S A PNAS Plus Sepsis claims an estimated 30 million episodes and 6 million deaths per year, and treatment options are rather limited. Human neutrophil peptides 1–3 (HNP1–3) are the most abundant neutrophil granule proteins but their neutrophil content varies because of unusually extensive gene copy number polymorphism. A genetic association study found that increased copy number of the HNP-encoding gene DEFA1/DEFA3 is a risk factor for organ dysfunction during sepsis development. However, direct experimental evidence demonstrating that these risk alleles are pathogenic for sepsis is lacking because the genes are present only in some primates and humans. Here, we generate DEFA1/DEFA3 transgenic mice with neutrophil-specific expression of the peptides. We show that mice with high copy number of DEFA1/DEFA3 genes have more severe sepsis-related vital organ damage and mortality than mice with low copy number of DEFA1/DEFA3 or wild-type mice, resulting from more severe endothelial barrier dysfunction and endothelial cell pyroptosis after sepsis challenge. Mechanistically, HNP-1 induces endothelial cell pyroptosis via P2X7 receptor-mediating canonical caspase-1 activation in a NLRP3 inflammasome-dependent manner. Based on these findings, we engineered a monoclonal antibody against HNP-1 to block the interaction with P2X7 and found that the blocking antibody protected mice carrying high copy number of DEFA1/DEFA3 from lethal sepsis. We thus demonstrate that DEFA1/DEFA3 copy number variation strongly modulates sepsis development in vivo and explore a paradigm for the precision treatment of sepsis tailored by individual genetic information. National Academy of Sciences 2019-02-19 2019-02-04 /pmc/articles/PMC6386704/ /pubmed/30718392 http://dx.doi.org/10.1073/pnas.1812947116 Text en Copyright © 2019 the Author(s). Published by PNAS. http://creativecommons.org/licenses/by/4.0/ This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle PNAS Plus
Chen, QiXing
Yang, Yang
Hou, JinChao
Shu, Qiang
Yin, YiXuan
Fu, WeiTao
Han, Feng
Hou, TingJun
Zeng, CongLi
Nemeth, Elizabeta
Linzmeier, Rose
Ganz, Tomas
Fang, XiangMing
Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis
title Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis
title_full Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis
title_fullStr Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis
title_full_unstemmed Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis
title_short Increased gene copy number of DEFA1/DEFA3 worsens sepsis by inducing endothelial pyroptosis
title_sort increased gene copy number of defa1/defa3 worsens sepsis by inducing endothelial pyroptosis
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6386704/
https://www.ncbi.nlm.nih.gov/pubmed/30718392
http://dx.doi.org/10.1073/pnas.1812947116
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