The response to anti-PD-1 and anti-LAG-3 checkpoint blockade is associated with regulatory T cell reprogramming.

Rolig, Annah S; Peng, Xiyu; Sturgill, Elizabeth R; Holay, Nisha; Kasiewicz, Melissa; Mick, Courtney; Mcgee, Grace Helen; Miller, William et al. · Sci Transl Med · 2025

basic_science · Level V

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Abstract

Immune checkpoint blockade (ICB) has revolutionized cancer treatment; however, many patients develop therapeutic resistance. We previously identified and validated a pretreatment peripheral blood biomarker, characterized by a high frequency of LAG-3<sup>+</sup> lymphocytes, that predicts resistance in patients receiving anti-PD-1 (aPD-1) ICB. To better understand the mechanism of aPD-1 resistance, we identified murine tumor models with a high LAG-3<sup>+</sup> lymphocyte frequency (LAG-3<sup>hi</sup>), which were resistant to aPD-1 therapy, and LAG-3<sup>lo</sup> murine tumor models that were aPD-1 sensitive, recapitulating the predictive biomarker we previously described in patients. LAG-3<sup>hi</sup> tumor-bearing mice were sensitive to aPD-1 + anti-LAG-3 (aLAG-3) therapy, and this benefit was CD8<sup>+</sup> T cell dependent. The efficacy of combination therapy was enhanced in LAG-3<sup>hi</sup> (but not LAG-3<sup>lo</sup>) mice with depletion of CD4<sup>+</sup> T cells. Furthermore, responses to aPD-1 + aLAG-3 correlated with regulatory T cell (T<sub>reg</sub>) phenotypic plasticity in LAG-3<sup>hi</sup> mice, suggesting a specific role for T<sub>regs</sub> in response to aPD-1 + aLAG-3 treatment. Using T<sub>reg</sub> fate-tracking <i>Foxp3<sup>GFP-Cre-ERT2</sup></i> × ROSA<sup>YFP</sup> reporter mice, we demonstrated that expanded populations of unstable T<sub>regs</sub> correlated with improved response to combination therapy in LAG-3<sup>hi</sup> mice. Complementing these preclinical data, an increased proportion of unstable T<sub>regs</sub> also correlated with higher response rate and improved survival after aPD-1 + aLAG-3 therapy in a cohort of patients with metastatic melanoma (<i>n</i> = 117). These data indicate that T<sub>reg</sub> phenotypic plasticity affects aPD-1 + aLAG-3 responsiveness, which may represent a biomarker to aid patient selection and a rational therapeutic target for a subset of PD-1-refractory patients.

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