A proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans

The role of type I interferons in bacterial infection is less clear than it is in viral infection. Here, the authors show that genetic variation of the human IFNAR1 gene is associated with decreased susceptibility to tuberculosis and identify a role for the IFNAR1 inter-domain region in the cytokine...

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Autores principales: Guoliang Zhang, Nicole A. deWeerd, Sebastian A. Stifter, Lei Liu, Boping Zhou, Wenfei Wang, Yiping Zhou, Binwu Ying, Xuejiao Hu, Antony Y. Matthews, Magda Ellis, James A. Triccas, Paul J. Hertzog, Warwick J. Britton, Xinchun Chen, Carl G. Feng
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/5ca2351b99a54111a84374d6e929ba77
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spelling oai:doaj.org-article:5ca2351b99a54111a84374d6e929ba772021-12-02T17:31:30ZA proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans10.1038/s41467-017-02611-z2041-1723https://doaj.org/article/5ca2351b99a54111a84374d6e929ba772018-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02611-zhttps://doaj.org/toc/2041-1723The role of type I interferons in bacterial infection is less clear than it is in viral infection. Here, the authors show that genetic variation of the human IFNAR1 gene is associated with decreased susceptibility to tuberculosis and identify a role for the IFNAR1 inter-domain region in the cytokine response.Guoliang ZhangNicole A. deWeerdSebastian A. StifterLei LiuBoping ZhouWenfei WangYiping ZhouBinwu YingXuejiao HuAntony Y. MatthewsMagda EllisJames A. TriccasPaul J. HertzogWarwick J. BrittonXinchun ChenCarl G. FengNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-9 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Guoliang Zhang
Nicole A. deWeerd
Sebastian A. Stifter
Lei Liu
Boping Zhou
Wenfei Wang
Yiping Zhou
Binwu Ying
Xuejiao Hu
Antony Y. Matthews
Magda Ellis
James A. Triccas
Paul J. Hertzog
Warwick J. Britton
Xinchun Chen
Carl G. Feng
A proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans
description The role of type I interferons in bacterial infection is less clear than it is in viral infection. Here, the authors show that genetic variation of the human IFNAR1 gene is associated with decreased susceptibility to tuberculosis and identify a role for the IFNAR1 inter-domain region in the cytokine response.
format article
author Guoliang Zhang
Nicole A. deWeerd
Sebastian A. Stifter
Lei Liu
Boping Zhou
Wenfei Wang
Yiping Zhou
Binwu Ying
Xuejiao Hu
Antony Y. Matthews
Magda Ellis
James A. Triccas
Paul J. Hertzog
Warwick J. Britton
Xinchun Chen
Carl G. Feng
author_facet Guoliang Zhang
Nicole A. deWeerd
Sebastian A. Stifter
Lei Liu
Boping Zhou
Wenfei Wang
Yiping Zhou
Binwu Ying
Xuejiao Hu
Antony Y. Matthews
Magda Ellis
James A. Triccas
Paul J. Hertzog
Warwick J. Britton
Xinchun Chen
Carl G. Feng
author_sort Guoliang Zhang
title A proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans
title_short A proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans
title_full A proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans
title_fullStr A proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans
title_full_unstemmed A proline deletion in IFNAR1 impairs IFN-signaling and underlies increased resistance to tuberculosis in humans
title_sort proline deletion in ifnar1 impairs ifn-signaling and underlies increased resistance to tuberculosis in humans
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/5ca2351b99a54111a84374d6e929ba77
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