Cargando…
Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells
Regulatory T cells (Tregs) expressing FOXP3 are essential for the maintenance of self-tolerance and are deficient in many common autoimmune diseases. Immune tolerance is maintained in part by IL-2 and deficiencies in the IL-2 pathway cause reduced Treg function and an increased risk of autoimmunity....
Autores principales: | , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Academic Press
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4298360/ https://www.ncbi.nlm.nih.gov/pubmed/25457307 http://dx.doi.org/10.1016/j.jaut.2014.10.002 |
_version_ | 1782353258411458560 |
---|---|
author | Bell, Charles J.M. Sun, Yongliang Nowak, Urszula M. Clark, Jan Howlett, Sarah Pekalski, Marcin L. Yang, Xin Ast, Oliver Waldhauer, Inja Freimoser-Grundschober, Anne Moessner, Ekkehard Umana, Pablo Klein, Christian Hosse, Ralf J. Wicker, Linda S. Peterson, Laurence B. |
author_facet | Bell, Charles J.M. Sun, Yongliang Nowak, Urszula M. Clark, Jan Howlett, Sarah Pekalski, Marcin L. Yang, Xin Ast, Oliver Waldhauer, Inja Freimoser-Grundschober, Anne Moessner, Ekkehard Umana, Pablo Klein, Christian Hosse, Ralf J. Wicker, Linda S. Peterson, Laurence B. |
author_sort | Bell, Charles J.M. |
collection | PubMed |
description | Regulatory T cells (Tregs) expressing FOXP3 are essential for the maintenance of self-tolerance and are deficient in many common autoimmune diseases. Immune tolerance is maintained in part by IL-2 and deficiencies in the IL-2 pathway cause reduced Treg function and an increased risk of autoimmunity. Recent studies expanding Tregs in vivo with low-dose IL-2 achieved major clinical successes highlighting the potential to optimize this pleiotropic cytokine for inflammatory and autoimmune disease indications. Here we compare the clinically approved IL-2 molecule, Proleukin, with two engineered IL-2 molecules with long half-lives owing to their fusion in monovalent and bivalent stoichiometry to a non-FcRγ binding human IgG1. Using nonhuman primates, we demonstrate that single ultra-low doses of IL-2 fusion proteins induce a prolonged state of in vivo activation that increases Tregs for an extended period of time similar to multiple-dose Proleukin. One of the common pleiotropic effects of high dose IL-2 treatment, eosinophilia, is eliminated at doses of the IL-2 fusion proteins that greatly expand Tregs. The long half-lives of the IL-2 fusion proteins facilitated a detailed characterization of an IL-2 dose response driving Treg expansion that correlates with increasingly sustained, suprathreshold pSTAT5a induction and subsequent sustained increases in the expression of CD25, FOXP3 and Ki-67 with retention of Treg-specific epigenetic signatures at FOXP3 and CTLA4. |
format | Online Article Text |
id | pubmed-4298360 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Academic Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-42983602015-01-21 Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells Bell, Charles J.M. Sun, Yongliang Nowak, Urszula M. Clark, Jan Howlett, Sarah Pekalski, Marcin L. Yang, Xin Ast, Oliver Waldhauer, Inja Freimoser-Grundschober, Anne Moessner, Ekkehard Umana, Pablo Klein, Christian Hosse, Ralf J. Wicker, Linda S. Peterson, Laurence B. J Autoimmun Article Regulatory T cells (Tregs) expressing FOXP3 are essential for the maintenance of self-tolerance and are deficient in many common autoimmune diseases. Immune tolerance is maintained in part by IL-2 and deficiencies in the IL-2 pathway cause reduced Treg function and an increased risk of autoimmunity. Recent studies expanding Tregs in vivo with low-dose IL-2 achieved major clinical successes highlighting the potential to optimize this pleiotropic cytokine for inflammatory and autoimmune disease indications. Here we compare the clinically approved IL-2 molecule, Proleukin, with two engineered IL-2 molecules with long half-lives owing to their fusion in monovalent and bivalent stoichiometry to a non-FcRγ binding human IgG1. Using nonhuman primates, we demonstrate that single ultra-low doses of IL-2 fusion proteins induce a prolonged state of in vivo activation that increases Tregs for an extended period of time similar to multiple-dose Proleukin. One of the common pleiotropic effects of high dose IL-2 treatment, eosinophilia, is eliminated at doses of the IL-2 fusion proteins that greatly expand Tregs. The long half-lives of the IL-2 fusion proteins facilitated a detailed characterization of an IL-2 dose response driving Treg expansion that correlates with increasingly sustained, suprathreshold pSTAT5a induction and subsequent sustained increases in the expression of CD25, FOXP3 and Ki-67 with retention of Treg-specific epigenetic signatures at FOXP3 and CTLA4. Academic Press 2015-01 /pmc/articles/PMC4298360/ /pubmed/25457307 http://dx.doi.org/10.1016/j.jaut.2014.10.002 Text en © 2014 The Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/). |
spellingShingle | Article Bell, Charles J.M. Sun, Yongliang Nowak, Urszula M. Clark, Jan Howlett, Sarah Pekalski, Marcin L. Yang, Xin Ast, Oliver Waldhauer, Inja Freimoser-Grundschober, Anne Moessner, Ekkehard Umana, Pablo Klein, Christian Hosse, Ralf J. Wicker, Linda S. Peterson, Laurence B. Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells |
title | Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells |
title_full | Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells |
title_fullStr | Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells |
title_full_unstemmed | Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells |
title_short | Sustained in vivo signaling by long-lived IL-2 induces prolonged increases of regulatory T cells |
title_sort | sustained in vivo signaling by long-lived il-2 induces prolonged increases of regulatory t cells |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4298360/ https://www.ncbi.nlm.nih.gov/pubmed/25457307 http://dx.doi.org/10.1016/j.jaut.2014.10.002 |
work_keys_str_mv | AT bellcharlesjm sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT sunyongliang sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT nowakurszulam sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT clarkjan sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT howlettsarah sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT pekalskimarcinl sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT yangxin sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT astoliver sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT waldhauerinja sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT freimosergrundschoberanne sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT moessnerekkehard sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT umanapablo sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT kleinchristian sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT hosseralfj sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT wickerlindas sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells AT petersonlaurenceb sustainedinvivosignalingbylonglivedil2inducesprolongedincreasesofregulatorytcells |