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February 20, 2026Cancer Immunology Research0 citations

Abstract A006: Clonal dynamics of tumor-infiltrating CD4+ T cells in response to immune checkpoint and Shp-1 inhibition

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KFKaitlyn FlintJMJoseph G. MatousCHChristopher H. Hanson

Key Points

  • The research aims to investigate how immunotherapy alters the function and clonal structure of CD4+ T cells in tumor environments.
  • Conducted single cell RNA and V(D)J sequencing on CD4+ T cells from Yumm1.1 tumors.
  • Compared clonal characteristics in untreated mice to those treated with SHP-1i+ICI.
  • Analyzed gene expression for effector and regulatory T cell markers.
  • Identified distinct clonal populations of effector and regulatory CD4+ T cells.
  • SHP-1i+ICI decreased overall T cell repertoire diversity.
  • Certain clones with effector functions expanded significantly after treatment.

Abstract

Abstract CD4+ T cells are important contributors to anti-tumor responses but remain understudied and less well characterized than CD8+ T cells. For example, CD4+ T cells enhance CAR-T and ACT therapies, and that addition of MHC Class II-restricted epitopes improves cancer vaccine efficacy. However, CD4+ T cells can also acquire regulatory functions that promote increased tumor growth. We previously reported that inhibition of the TCR-regulatory phosphatase SHP-1 (SHP-1i) enhanced the therapeutic efficacy of immune checkpoint inhibitors (ICI), particularly in ICI-resistant tumors with low mutation burden. While treatment efficacy was associated with the recruitment of low affinity effector CD8+ T cells specific for tumor self-antigens, CD4+ T cell frequencies remained unchanged. The goal of this study was to examine whether immunotherapy affected the function and clonal makeup of the CD4+ T cell response in response to treatment and to identify MHC Class II-restricted TCRs associated with either therapeutic or regulatory function. To accomplish this, we performed single cell RNA and V(D)J sequencing on CD4+ T cells specific for the tumor self-antigen tyrosinase protein 1 (TRP-1) isolated from Yale University mouse melanoma 1.1 (Yumm1.1) tumors. We compared clonal dominance and diversity in mice receiving no treatment to those receiving combined ICI and SHP-1 inhibitor treatment (SHP-1i+ICI). We found that tumor growth resulted in clonally distinct populations of effector cells (characterized by expression of Tbx21, Ifng, and Pdcd1) and regulatory T cells (expressing FoxP3). Moreover, SHP-1i+ICI resulted in a decrease in overall repertoire diversity and selective outgrowth of clones expressing effector, regulatory, or stem-like (Tcf7, Slamf6) transcriptional programs. We propose that SHP-1i+ICI dramatically reshapes the anti-tumor CD4+ T cell response through selective expansion of clones with anti-tumor effector functions. Future studies will be directed towards determining whether treatment-selected TCRs specific for tumor self-antigens demonstrate immunotherapeutic efficacy in settings of low mutation burden. Citation Format: Kaitlyn A. Flint, Joseph G . Matous, Christopher H. Hanson, Yohichi Kumaki, Matthew A . Williams. Clonal dynamics of tumor-infiltrating CD4+ T cells in response to immune checkpoint and Shp-1 inhibition abstract. In: Proceedings of the AACR Immuno-Oncology Conference (AACR IO): Discovery and Innovation in Cancer Immunology: Revolutionizing Treatment through Immunotherapy; 2026 Feb 18-21; Los Angeles, CA. Philadelphia (PA): AACR; Cancer Immunol Res 2026;14(2 Suppl):Abstract nr A006.

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Cite This Study

Flint et al. (2026) studied this question.

synapsesocial.com/papers/6997f9ddad1d9b11b3452999https://doi.org/10.1158/2326-6074.io2026-a006
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract A071: Inhibition of Shp-1 in combination with checkpoint inhibitors broadens the repertoire of tumor-infiltrating self-antigen-specific T cells and drives therapeutic rescue of T cell function2026
  2. 2Abstract B026: Regulation of CTLA-4 and PD-1 blockade immunotherapy by distinct subpopulations of CD4 and CD8 tumor-resident memory T cells2026
  3. 3Abstract SY12-02: Tumor-reactive heterotypic T cell clusters from clinical samples to improve immunotherapy2026
  4. 4Abstract 2823: Single-cell RNA-seq reveals insights into the effects of immune checkpoint inhibitors2026
  5. 5Abstract B057: Decoding tumor microenvironment and resistance following immune checkpoint inhibition therapy in anaplastic thyroid carcinoma2026