DGKα and ζ deficiency causes regulatory T-cell dysregulation, destabilization, and conversion to pathogenic T-follicular helper cells to trigger IgG1-predominant autoimmunity

Regulatory T cells (Tregs) actively engage in immune suppression to prevent autoimmune diseases, but also inhibit anti-tumor immunity. Although Tregs express a TCR repertoire with relatively high affinities to self, they are normally quite stable, and their inflammatory programs are intrinsically suppressed. We report here that diacylglycerol kinases (DGK) α and ζ are crucial for homeostasis, suppression of proinflammatory programs, and stability of Tregs, and for enforcing their dependence on CD28 costimulatory signal. Treg-specific deficiency of both DGKα and ζ derails signaling, metabolic, and transcriptional programs in Tregs to cause dysregulated phenotypic and functional properties and to unleash conversion to pathogenic exTregs, especially exTreg-T follicular helper (Tfh) 2 cells, leading to uncontrolled effector T cell differentiation, deregulated germinal center B-cell responses, and IgG1/IgE predominant antibodies/autoantibodies, and multiorgan autoimmune diseases. Our data not only illustrate the crucial roles of DGKs in Tregs to maintain self-tolerance, but also unveil a Treg-to-self-reactive-pathogenic-exTreg-Tfh-cell program that is suppressed by DGKs and that could exert broad pathogenic roles in autoimmune diseases if unchecked.

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Publication Details

Journal
eLife
Published
2026-09-18
DOI
https://doi.org/10.7554/elife.105212.3
Primary Topic
T-cell and B-cell Immunology
Type
article
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article

DGKα and ζ deficiency causes regulatory T-cell dysregulation, destabilization, and conversion to pathogenic T-follicular helper cells to trigger IgG1-predominant autoimmunity

Xiao‐Ping Zhong, Michael B. Fessler, Huishan Tao, Lei Li et al.
eLife
T-cell and B-cell Immunology
article

DGKα and ζ deficiency causes regulatory T-cell dysregulation, destabilization, and conversion to pathogenic T-follicular helper cells to trigger IgG1-predominant autoimmunity

Xiao‐Ping Zhong, Michael B. Fessler, Huishan Tao, Lei Li, Hongxia Wang, Yun Pan, Shimeng Zhang, Hongxiang Huang, John Sleasman, Peer Karmaus
article en

Abstract

Regulatory T cells (Tregs) actively engage in immune suppression to prevent autoimmune diseases, but also inhibit anti-tumor immunity. Although Tregs express a TCR repertoire with relatively high affinities to self, they are normally quite stable, and their inflammatory programs are intrinsically suppressed. We report here that diacylglycerol kinases (DGK) α and ζ are crucial for homeostasis, suppression of proinflammatory programs, and stability of Tregs, and for enforcing their dependence on CD28 costimulatory signal. Treg-specific deficiency of both DGKα and ζ derails signaling, metabolic, and transcriptional programs in Tregs to cause dysregulated phenotypic and functional properties and to unleash conversion to pathogenic exTregs, especially exTreg-T follicular helper (Tfh) 2 cells, leading to uncontrolled effector T cell differentiation, deregulated germinal center B-cell responses, and IgG1/IgE predominant antibodies/autoantibodies, and multiorgan autoimmune diseases. Our data not only illustrate the crucial roles of DGKs in Tregs to maintain self-tolerance, but also unveil a Treg-to-self-reactive-pathogenic-exTreg-Tfh-cell program that is suppressed by DGKs and that could exert broad pathogenic roles in autoimmune diseases if unchecked.

eLifeVol. 14
National Institute of Environmental Health Sciences (US), Duke Medical Center (US)
Good health and well-being
Openalex Percentile: Top 17%
T-cell and B-cell Immunology
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