Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system mice

Human immune system (HIS) mice constructed in various ways are widely used for investigations of human immune responses to pathogens, transplants, and immunotherapies. In HIS mice that generate T cells de novo from hematopoietic progenitors, T cell-dependent multisystem autoimmune disease occurs, mo...

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Published in:eLife
Main Authors: Mohsen Khosravi-Maharlooei, Andrea Vecchione, Nichole Danzl, Hao Wei Li, Grace Nauman, Rachel Madley, Elizabeth Waffarn, Robert Winchester, Amanda Ruiz, Xiaolan Ding, Georgia Fousteri, Megan Sykes
Format: Article
Language:English
Published: eLife Sciences Publications Ltd 2025-04-01
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Online Access:https://elifesciences.org/articles/99389
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author Mohsen Khosravi-Maharlooei
Andrea Vecchione
Nichole Danzl
Hao Wei Li
Grace Nauman
Rachel Madley
Elizabeth Waffarn
Robert Winchester
Amanda Ruiz
Xiaolan Ding
Georgia Fousteri
Megan Sykes
author_facet Mohsen Khosravi-Maharlooei
Andrea Vecchione
Nichole Danzl
Hao Wei Li
Grace Nauman
Rachel Madley
Elizabeth Waffarn
Robert Winchester
Amanda Ruiz
Xiaolan Ding
Georgia Fousteri
Megan Sykes
author_sort Mohsen Khosravi-Maharlooei
collection DOAJ
container_title eLife
description Human immune system (HIS) mice constructed in various ways are widely used for investigations of human immune responses to pathogens, transplants, and immunotherapies. In HIS mice that generate T cells de novo from hematopoietic progenitors, T cell-dependent multisystem autoimmune disease occurs, most rapidly when the human T cells develop in the native NOD.Cg- Prkdcscid Il2rgtm1Wjl (NSG) mouse thymus, where negative selection is abnormal. Disease develops very late when human T cells develop in human fetal thymus grafts, where robust negative selection is observed. We demonstrate here that PD-1+CD4+ peripheral (Tph) helper-like and follicular (Tfh) helper-like T cells developing in HIS mice can induce autoimmune disease. Tfh-like cells were more prominent in HIS mice with a mouse thymus, in which the highest levels of IgG were detected in plasma, compared to those with a human thymus. While circulating IgG and IgM antibodies were autoreactive to multiple mouse antigens, in vivo depletion of B cells and antibodies did not delay the development of autoimmune disease. Conversely, adoptive transfer of enriched Tfh- or Tph-like cells induced disease and autoimmunity-associated B cell phenotypes in recipient mice containing autologous human APCs without T cells. Tfh/Tph cells from mice with a human thymus expanded and induced disease more rapidly than those originating in a murine thymus, implicating HLA-restricted T cell-APC interactions in this process. Since Tfh, Tph, autoantibodies, and lymphopenia-induced proliferation (LIP) have all been implicated in various forms of human autoimmune disease, the observations here provide a platform for the further dissection of human autoimmune disease mechanisms and therapies.
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spelling doaj-art-8fe54c055e9a4f4e9a577ee69db930bb2025-08-20T01:17:21ZengeLife Sciences Publications LtdeLife2050-084X2025-04-011310.7554/eLife.99389Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system miceMohsen Khosravi-Maharlooei0https://orcid.org/0009-0001-2385-3714Andrea Vecchione1Nichole Danzl2Hao Wei Li3Grace Nauman4Rachel Madley5Elizabeth Waffarn6Robert Winchester7https://orcid.org/0000-0002-7543-8037Amanda Ruiz8https://orcid.org/0000-0002-6404-4905Xiaolan Ding9https://orcid.org/0009-0009-5220-1465Georgia Fousteri10Megan Sykes11https://orcid.org/0000-0002-4947-4376Columbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United States; Department of Immunology, Department of Biochemistry and Molecular Biology, Mayo Clinic, Phoenix, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United States; San Raffaele Hospital, Milan, ItalyColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United States; Department of Microbiology and Immunology, Columbia University Medical Center, Columbia University, New York, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United States; Department of Microbiology and Immunology, Columbia University Medical Center, Columbia University, New York, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United StatesColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United StatesSan Raffaele Hospital, Milan, ItalyColumbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center, Columbia University, New York, United States; Department of Microbiology and Immunology, Columbia University Medical Center, Columbia University, New York, United States; Department of Surgery, Columbia University Medical Center, Columbia University, New York, United StatesHuman immune system (HIS) mice constructed in various ways are widely used for investigations of human immune responses to pathogens, transplants, and immunotherapies. In HIS mice that generate T cells de novo from hematopoietic progenitors, T cell-dependent multisystem autoimmune disease occurs, most rapidly when the human T cells develop in the native NOD.Cg- Prkdcscid Il2rgtm1Wjl (NSG) mouse thymus, where negative selection is abnormal. Disease develops very late when human T cells develop in human fetal thymus grafts, where robust negative selection is observed. We demonstrate here that PD-1+CD4+ peripheral (Tph) helper-like and follicular (Tfh) helper-like T cells developing in HIS mice can induce autoimmune disease. Tfh-like cells were more prominent in HIS mice with a mouse thymus, in which the highest levels of IgG were detected in plasma, compared to those with a human thymus. While circulating IgG and IgM antibodies were autoreactive to multiple mouse antigens, in vivo depletion of B cells and antibodies did not delay the development of autoimmune disease. Conversely, adoptive transfer of enriched Tfh- or Tph-like cells induced disease and autoimmunity-associated B cell phenotypes in recipient mice containing autologous human APCs without T cells. Tfh/Tph cells from mice with a human thymus expanded and induced disease more rapidly than those originating in a murine thymus, implicating HLA-restricted T cell-APC interactions in this process. Since Tfh, Tph, autoantibodies, and lymphopenia-induced proliferation (LIP) have all been implicated in various forms of human autoimmune disease, the observations here provide a platform for the further dissection of human autoimmune disease mechanisms and therapies.https://elifesciences.org/articles/99389T follicular helper cellhuman immune systemT peripheral helper cellT cellsautoimmunityB cells
spellingShingle Mohsen Khosravi-Maharlooei
Andrea Vecchione
Nichole Danzl
Hao Wei Li
Grace Nauman
Rachel Madley
Elizabeth Waffarn
Robert Winchester
Amanda Ruiz
Xiaolan Ding
Georgia Fousteri
Megan Sykes
Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system mice
T follicular helper cell
human immune system
T peripheral helper cell
T cells
autoimmunity
B cells
title Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system mice
title_full Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system mice
title_fullStr Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system mice
title_full_unstemmed Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system mice
title_short Follicular helper- and peripheral helper-like T cells drive autoimmune disease in human immune system mice
title_sort follicular helper and peripheral helper like t cells drive autoimmune disease in human immune system mice
topic T follicular helper cell
human immune system
T peripheral helper cell
T cells
autoimmunity
B cells
url https://elifesciences.org/articles/99389
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