Literature DB >> 28850267

KLRG1 expression identifies short-lived Foxp3+ Treg effector cells with functional plasticity in islets of NOD mice.

Mara Kornete1, Edward Mason1, Roman Istomine1,2,3, Ciriaco A Piccirillo1,2,3.   

Abstract

A progressive waning in Foxp3+ regulatory T (Treg) cell function provokes autoimmunity in the non-obese diabetic (NOD) mouse model of type 1 diabetes (T1D), a cellular defect rescued by prophylactic IL-2 therapy. We showed that most islet-infiltrating Treg cells express inducible T-cell co-stimulator (ICOS) in pre-diabetic NOD mice, and that ICOS+ Treg cells display enhanced fitness and suppressive function in situ. Moreover, T1D progression is associated with decreased expansion and suppressive activity of ICOS+Foxp3+ Treg cells, in islets, an observation consistent with the exacerbated T1D seen in NOD.BDC2.5 mice in which the ICOS pathway is abrogated. Here, we show that a large proportion of islet-resident Treg cells express the KLRG1 marker of terminally differentiation, in contrast to islet-infiltrating ICOS- Treg or Teff cells. We hypothesized that KLRG1 expression designates a subpopulation of ICOS+ Treg cells in islets that progressively loses function, and contributes to the immune dysregulation observed at T1D onset. Indeed, KLRG1-expressing ICOS+ Treg cells are prone to apoptosis, and have an impaired proliferative capacity and suppressive function in vitro and in vivo. T1D protective low-dose IL-2 treatment in vivo could not rescue the loss of KLRG1-expressing Treg cells in situ. While the global pool of Foxp3+ Treg cells displays some degree of functional plasticity in vivo, the KLRG1+ ICOS+ Treg cell subset is particularly susceptible to lose Foxp3 expression and reprogram into Th1- or Th17-like effector T (Teff) cells in the pancreas microenvironment. Overall, KLRG1 expression delineates a subpopulation of dysfunctional Treg cells during T1D progression in autoantigen-specific TCR transgenic NOD mice.

Entities:  

Keywords:  Foxp3+ Treg cells; ICOS; fatigued T cells; type 1 diabetes

Mesh:

Substances:

Year:  2017        PMID: 28850267     DOI: 10.1080/08916934.2017.1364368

Source DB:  PubMed          Journal:  Autoimmunity        ISSN: 0891-6934            Impact factor:   2.815


  8 in total

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Journal:  Front Immunol       Date:  2022-04-29       Impact factor: 8.786

4.  Maintenance DNA methylation is essential for regulatory T cell development and stability of suppressive function.

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7.  Premature Senescence of T-cells Favors Bone Loss During Osteolytic Diseases. A New Concern in the Osteoimmunology Arena.

Authors:  Luis González-Osuna; Alfredo Sierra-Cristancho; Carolina Rojas; Emilio A Cafferata; Samanta Melgar-Rodríguez; Angélica M Cárdenas; Rolando Vernal
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8.  Bone marrow Tregs mediate stromal cell function and support hematopoiesis via IL-10.

Authors:  Virginia Camacho; Victoria R Matkins; Sweta B Patel; Jeremie M Lever; Zhengqin Yang; Li Ying; Ashley E Landuyt; Emma C Dean; James F George; Henry Yang; Paul Brent Ferrell; Craig L Maynard; Casey T Weaver; Heth R Turnquist; Robert S Welner
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  8 in total

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