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author Brown, Grant J.
Cañete, Pablo F.
Wang, Hao
Medhavy, Arti
Bones, Josiah
Roco, Jonathan A.
He, Yuke
Qin, Yuting
Cappello, Jean
Ellyard, Julia I.
Bassett, Katharine
Shen, Qian
Burgio, Gaetan
Zhang, Yaoyuan
Turnbull, Cynthia
Meng, Xiangpeng
Wu, Phil
Cho, Eun
Miosge, Lisa A.
Andrews, T. Daniel
Field, Matt A.
Tvorogov, Denis
Lopez, Angel F.
Babon, Jeffrey J.
López, Cristina Aparicio
Gónzalez-Murillo, África
Garulo, Daniel Clemente
Pascual, Virginia
Levy, Tess
Mallack, Eric J.
Calame, Daniel G.
Lotze, Timothy
Lupski, James R.
Ding, Huihua
Ullah, Tomalika R.
Walters, Giles D.
Koina, Mark E.
Cook, Matthew C.
Shen, Nan
de Lucas Collantes, Carmen
Corry, Ben
Gantier, Michael P.
Athanasopoulos, Vicki
Vinuesa, Carola G.
author_facet Brown, Grant J.
Cañete, Pablo F.
Wang, Hao
Medhavy, Arti
Bones, Josiah
Roco, Jonathan A.
He, Yuke
Qin, Yuting
Cappello, Jean
Ellyard, Julia I.
Bassett, Katharine
Shen, Qian
Burgio, Gaetan
Zhang, Yaoyuan
Turnbull, Cynthia
Meng, Xiangpeng
Wu, Phil
Cho, Eun
Miosge, Lisa A.
Andrews, T. Daniel
Field, Matt A.
Tvorogov, Denis
Lopez, Angel F.
Babon, Jeffrey J.
López, Cristina Aparicio
Gónzalez-Murillo, África
Garulo, Daniel Clemente
Pascual, Virginia
Levy, Tess
Mallack, Eric J.
Calame, Daniel G.
Lotze, Timothy
Lupski, James R.
Ding, Huihua
Ullah, Tomalika R.
Walters, Giles D.
Koina, Mark E.
Cook, Matthew C.
Shen, Nan
de Lucas Collantes, Carmen
Corry, Ben
Gantier, Michael P.
Athanasopoulos, Vicki
Vinuesa, Carola G.
author_sort Brown, Grant J.
collection PubMed
description Although circumstantial evidence supports enhanced Toll-like receptor 7 (TLR7) signalling as a mechanism of human systemic autoimmune disease(1–7), evidence of lupus-causing TLR7 gene variants is lacking. Here we describe human systemic lupus erythematosus caused by a TLR7 gain-of-function variant. TLR7 is a sensor of viral RNA(8),(9) and binds to guanosine(10)–(12). We identified a de novo, previously undescribed missense TLR7(Y264H) variant in a child with severe lupus and additional variants in other patients with lupus. The TLR7(Y264H) variant selectively increased sensing of guanosine and 2',3'-cGMP(10–12), and was sufficient to cause lupus when introduced into mice. We show that enhanced TLR7 signalling drives aberrant survival of B cell receptor (BCR)-activated B cells, and in a cell-intrinsic manner, accumulation of CD11c(+) age-associated B cells and germinal centre B cells. Follicular and extrafollicular helper T cells were also increased but these phenotypes were cell-extrinsic. Deficiency of MyD88 (an adaptor protein downstream of TLR7) rescued autoimmunity, aberrant B cell survival, and all cellular and serological phenotypes. Despite prominent spontaneous germinal-centre formation in Tlr7(Y264H) mice, autoimmunity was not ameliorated by germinal-centre deficiency, suggesting an extrafollicular origin of pathogenic B cells. We establish the importance of TLR7 and guanosine-containing self-ligands for human lupus pathogenesis, which paves the way for therapeutic TLR7 or MyD88 inhibition.
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spelling pubmed-90954922022-05-13 TLR7 gain-of-function genetic variation causes human lupus Brown, Grant J. Cañete, Pablo F. Wang, Hao Medhavy, Arti Bones, Josiah Roco, Jonathan A. He, Yuke Qin, Yuting Cappello, Jean Ellyard, Julia I. Bassett, Katharine Shen, Qian Burgio, Gaetan Zhang, Yaoyuan Turnbull, Cynthia Meng, Xiangpeng Wu, Phil Cho, Eun Miosge, Lisa A. Andrews, T. Daniel Field, Matt A. Tvorogov, Denis Lopez, Angel F. Babon, Jeffrey J. López, Cristina Aparicio Gónzalez-Murillo, África Garulo, Daniel Clemente Pascual, Virginia Levy, Tess Mallack, Eric J. Calame, Daniel G. Lotze, Timothy Lupski, James R. Ding, Huihua Ullah, Tomalika R. Walters, Giles D. Koina, Mark E. Cook, Matthew C. Shen, Nan de Lucas Collantes, Carmen Corry, Ben Gantier, Michael P. Athanasopoulos, Vicki Vinuesa, Carola G. Nature Article Although circumstantial evidence supports enhanced Toll-like receptor 7 (TLR7) signalling as a mechanism of human systemic autoimmune disease(1–7), evidence of lupus-causing TLR7 gene variants is lacking. Here we describe human systemic lupus erythematosus caused by a TLR7 gain-of-function variant. TLR7 is a sensor of viral RNA(8),(9) and binds to guanosine(10)–(12). We identified a de novo, previously undescribed missense TLR7(Y264H) variant in a child with severe lupus and additional variants in other patients with lupus. The TLR7(Y264H) variant selectively increased sensing of guanosine and 2',3'-cGMP(10–12), and was sufficient to cause lupus when introduced into mice. We show that enhanced TLR7 signalling drives aberrant survival of B cell receptor (BCR)-activated B cells, and in a cell-intrinsic manner, accumulation of CD11c(+) age-associated B cells and germinal centre B cells. Follicular and extrafollicular helper T cells were also increased but these phenotypes were cell-extrinsic. Deficiency of MyD88 (an adaptor protein downstream of TLR7) rescued autoimmunity, aberrant B cell survival, and all cellular and serological phenotypes. Despite prominent spontaneous germinal-centre formation in Tlr7(Y264H) mice, autoimmunity was not ameliorated by germinal-centre deficiency, suggesting an extrafollicular origin of pathogenic B cells. We establish the importance of TLR7 and guanosine-containing self-ligands for human lupus pathogenesis, which paves the way for therapeutic TLR7 or MyD88 inhibition. Nature Publishing Group UK 2022-04-27 2022 /pmc/articles/PMC9095492/ /pubmed/35477763 http://dx.doi.org/10.1038/s41586-022-04642-z Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Brown, Grant J.
Cañete, Pablo F.
Wang, Hao
Medhavy, Arti
Bones, Josiah
Roco, Jonathan A.
He, Yuke
Qin, Yuting
Cappello, Jean
Ellyard, Julia I.
Bassett, Katharine
Shen, Qian
Burgio, Gaetan
Zhang, Yaoyuan
Turnbull, Cynthia
Meng, Xiangpeng
Wu, Phil
Cho, Eun
Miosge, Lisa A.
Andrews, T. Daniel
Field, Matt A.
Tvorogov, Denis
Lopez, Angel F.
Babon, Jeffrey J.
López, Cristina Aparicio
Gónzalez-Murillo, África
Garulo, Daniel Clemente
Pascual, Virginia
Levy, Tess
Mallack, Eric J.
Calame, Daniel G.
Lotze, Timothy
Lupski, James R.
Ding, Huihua
Ullah, Tomalika R.
Walters, Giles D.
Koina, Mark E.
Cook, Matthew C.
Shen, Nan
de Lucas Collantes, Carmen
Corry, Ben
Gantier, Michael P.
Athanasopoulos, Vicki
Vinuesa, Carola G.
TLR7 gain-of-function genetic variation causes human lupus
title TLR7 gain-of-function genetic variation causes human lupus
title_full TLR7 gain-of-function genetic variation causes human lupus
title_fullStr TLR7 gain-of-function genetic variation causes human lupus
title_full_unstemmed TLR7 gain-of-function genetic variation causes human lupus
title_short TLR7 gain-of-function genetic variation causes human lupus
title_sort tlr7 gain-of-function genetic variation causes human lupus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9095492/
https://www.ncbi.nlm.nih.gov/pubmed/35477763
http://dx.doi.org/10.1038/s41586-022-04642-z
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