IL-2 mutein selectively expands thymic memory Tregs with increased transendocytosis activity in healthy participants

Tregs play an essential role in immune tolerance, and Treg-promoting therapies are in development for the treatment of many inflammatory disorders. Interleukin-2 (IL-2)-based therapies increase Treg frequency, but little is known about impacts on Treg heterogeneity and function. We extended analyses of an IL-2 mutein (MK-6194) single-ascending-dose trial in healthy human participants by comprehensively defining Treg subsets and gene expression changes in vitro and in vivo. We found highly specific and dose-dependent activation and expansion of Tregs in clinical and pre-clinical studies. Following a single subcutaneous dose in humans, thymic-derived Tregs were selectively activated and expanded, while peripherally induced Tregs were unaffected. Expanded Tregs had increased expression of genes and proteins consistent with activation, suppressor function, and homing to non-lymphoid tissue, as well as increased transendocytosis activity, as measured by CTLA-4-dependent capture of CD80 and CD86 from non-Tregs. These results shed light onto underlying mechanisms by which Treg-targeted therapy may promote immune tolerance.

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Publication Details

Journal
JCI Insight
Published
2026-09-17
DOI
https://doi.org/10.1172/jci.insight.193744
Primary Topic
T-cell and B-cell Immunology
Type
article
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article

IL-2 mutein selectively expands thymic memory Tregs with increased transendocytosis activity in healthy participants

Richard Wnek, Liliane Khoryati, Daniel Campbell, Lori Blanchfield et al.
JCI Insight
T-cell and B-cell Immunology
article

IL-2 mutein selectively expands thymic memory Tregs with increased transendocytosis activity in healthy participants

Richard Wnek, Liliane Khoryati, Daniel Campbell, Lori Blanchfield, Basilin Benson, Jyothsna Visweswaraiah, Sheila Scheiding, Laura A. Cooney, Gretchen A. Baltus, Johannes F. Scheid, Shiuli Agarwal, Nancy D. Kim, Katalin Kis‐Tóth, Joanne L. Viney, Kevin L. Otipoby, S. Alice Long, Nathan Higginson-Scott, Kristina M. Harris, Kiki Cunningham-Bussel, Bridget Larkin, Matthew Lawrance, Mitch Fahning, Anna Kus, S. Aubrey Stoch, Erik Sampson
article en

Abstract

Tregs play an essential role in immune tolerance, and Treg-promoting therapies are in development for the treatment of many inflammatory disorders. Interleukin-2 (IL-2)-based therapies increase Treg frequency, but little is known about impacts on Treg heterogeneity and function. We extended analyses of an IL-2 mutein (MK-6194) single-ascending-dose trial in healthy human participants by comprehensively defining Treg subsets and gene expression changes in vitro and in vivo. We found highly specific and dose-dependent activation and expansion of Tregs in clinical and pre-clinical studies. Following a single subcutaneous dose in humans, thymic-derived Tregs were selectively activated and expanded, while peripherally induced Tregs were unaffected. Expanded Tregs had increased expression of genes and proteins consistent with activation, suppressor function, and homing to non-lymphoid tissue, as well as increased transendocytosis activity, as measured by CTLA-4-dependent capture of CD80 and CD86 from non-Tregs. These results shed light onto underlying mechanisms by which Treg-targeted therapy may promote immune tolerance.

JCI Insight
Merck & Co., Inc., Rahway, NJ, USA (United States) (US), Immune Tolerance Network (US), Benaroya Research Institute, Seattle University (US)
Good health and well-being
Openalex Percentile: Top 18%
T-cell and B-cell Immunology
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