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Updated: Jul 3, 2026

In Vivo Augmentation of Gut-Homing Regulatory T Cell Induction
Published on: January 22, 2020
SOCS1 regulates CCR7 expression and migration of CD4+ T cells into peripheral tissues
Cheng-Rong Yu1, Rashid M Mahdi, Xuebin Liu
1Laboratory of Immunology, Molecular Immunology Section, National Eye Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
Suppressors of cytokine signaling (SOCS) proteins control many aspects of lymphocyte function through regulation of STAT pathways. SOCS1-deficient mice develop severe skin and eye diseases that result from massive infiltration of inflammatory cells into these tissues. In this study, we have used SOCS1-, STAT1-, or STAT6-deficient mice, as well as, T cells with stable overexpression or deletion of SOCS1, to examine whether SOCS1 is involved in regulating lymphocyte trafficking to peripheral tissues. We show that SOCS1-deficient mice have increased numbers of T cells with characteristics of effector memory cells and expression of CCR7, a protein that promotes retention of T cells in lymphoid tissues, is markedly reduced in these cells. The decrease in CCR7 expression correlates with hyperactivation of STAT6, suggesting that aberrant recruitment of T cells into SOCS1-deficient mouse skin or eye results from abrogation of negative feedback regulation of STAT6 activation and CCR7 expression. Consistent with in vivo regulation of CCR7 expression and lymphocyte migration by SOCS1, forced overexpression of SOCS1 in T cells up-regulates CCR7 expression and enhances chemotaxis toward CCL19 or CCL21. CCR6 and CXCR3 are also up-regulated on SOCS1-deficient T cells and in situ analysis of the cornea or retina further reveal that these cells may mediate the chronic skin and eye inflammation through recruitment of Th1 and Th17 cells into these tissues. Collectively, these results suggest that SOCS1 regulates steady-state levels of chemokine receptors through its inhibitory effects on STAT pathways and this may underscore its role in regulating recruitment and retention of effector cells into nonlymphoid tissues.
Insights
Suppressors of cytokine signaling 1 (SOCS1) deficiency leads to T cell migration issues, causing skin and eye inflammation. SOCS1 normally regulates chemokine receptor expression via STAT pathways, controlling lymphocyte trafficking.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Suppressors of cytokine signaling (SOCS) proteins, particularly SOCS1, are critical regulators of lymphocyte function and STAT pathways.
- SOCS1 deficiency in mice results in severe skin and eye diseases due to excessive inflammatory cell infiltration.
Purpose of the Study:
- To investigate the role of SOCS1 in regulating lymphocyte trafficking to peripheral tissues.
- To elucidate the molecular mechanisms by which SOCS1 influences T cell migration and chemokine receptor expression.
Main Methods:
- Utilized SOCS1-, STAT1-, and STAT6-deficient mouse models.
- Employed T cells with stable SOCS1 overexpression or deletion.
- Analyzed T cell populations, chemokine receptor expression (CCR7, CCR6, CXCR3), and STAT pathway activation.
Main Results:
- SOCS1-deficient mice exhibited increased effector memory T cells with reduced CCR7 expression, linked to STAT6 hyperactivation.
- SOCS1 overexpression in T cells increased CCR7 expression and enhanced chemotaxis towards CCL19/CCL21.
- SOCS1-deficient T cells showed up-regulated CCR6 and CXCR3, potentially recruiting Th1 and Th17 cells to inflamed tissues.
Conclusions:
- SOCS1 plays a crucial role in regulating lymphocyte trafficking by modulating chemokine receptor expression through STAT pathway inhibition.
- Dysregulation of SOCS1 impacts T cell recruitment and retention in nonlymphoid tissues, contributing to inflammatory diseases.
- SOCS1 is essential for maintaining steady-state levels of chemokine receptors, thereby controlling effector cell migration.
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