Differential PI3Kδ Signaling in CD4<sup>+</sup> T-cell Subsets Enables Selective Targeting of T Regulatory Cells to Enhance Cancer Immunotherapy.
basic_science · Level V
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- Record sourced from PubMed, PMID 28108509.
- Also identified by DOI 10.1158/0008-5472.CAN-16-1839.
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Abstract
To modulate T-cell function for cancer therapy, one challenge is to selectively attenuate regulatory but not conventional CD4<sup>+</sup> T-cell subsets [regulatory T cell (Treg) and conventional T cell (Tconv)]. In this study, we show how a functional dichotomy in Class IA PI3K isoforms in these two subsets of CD4<sup>+</sup> T cells can be exploited to target Treg while leaving Tconv intact. Studies employing isoform-specific PI3K inhibitors and a PI3Kδ-deficient mouse strain revealed that PI3Kα and PI3Kβ were functionally redundant with PI3Kδ in Tconv. Conversely, PI3Kδ was functionally critical in Treg, acting there to control T-cell receptor signaling, cell proliferation, and survival. Notably, in a murine model of lung cancer, coadministration of a PI3Kδ-specific inhibitor with a tumor-specific vaccine decreased numbers of suppressive Treg and increased numbers of vaccine-induced CD8 T cells within the tumor microenvironment, eliciting potent antitumor efficacy. Overall, our results offer a mechanistic rationale to employ PI3Kδ inhibitors to selectively target Treg and improve cancer immunotherapy. <i>Cancer Res; 77(8); 1892-904. ©2017 AACR</i>.
Medical subject headings
- CD4-Positive T-Lymphocytes
- Neoplasms, Experimental
- Phosphatidylinositol 3-Kinases
- T-Lymphocytes, Regulatory