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March 25, 2026Nature Immunology3 citationsOpen Access

Engineering NK and T cells with metabolite-sensing receptors to target solid tumors

YKYoung‐Min KimMTMin K. TsaiCSChang Sun

Key Points

  • To enhance infiltration of NK and T cells into solid tumors by engineering them with metabolite-sensing receptors.
  • Conducted in vivo and in vitro CRISPR activation screens using NK-92 cells.
  • Identified GPR183, GPR84, GPR34, and GPR18 receptors for tumor infiltration.
  • Engineered NK and CAR T cells to express selected receptors.
  • Evaluated effects on migration and cancer cell chemotaxis in breast and ovarian cancers.
  • Receptor expression promoted increased infiltration of NK and CAR T cells into tumors.
  • GPR183 expression enhanced tumor control and eradication in immunocompetent mice.
  • Receptors influenced NK cell transcriptome in response to cancer cell signals.

Abstract

Natural killer (NK) cells and T cells need to infiltrate solid tumors to eradicate them. Here we show programmable mechanisms that can mobilize NK and T cells to solid tumors using metabolite-sensing receptors. In vivo and in vitro CRISPR activation screens using NK-92 cells identified GPR183, GPR84, GPR34 and GPR18 as top enhancers of infiltration and chemotaxis to breast and ovarian cancers. While endogenously expressed in restricted cellular contexts, expressing these receptors in NK and T cells drives migration to factors released by cancer cells and alters the NK cell transcriptome in a ligand-dependent manner. Expressing GPR183 in NK, chimeric antigen receptor (CAR) NK and CAR T cells increased tumor infiltration and control. Likewise, expressing GPR183 in mouse T cells increased tumor eradication in immunocompetent mice. These data show that metabolite sensing can be rewired to obtain biochemically guided spatially targeted cells, creating new possibilities for therapeutic intervention. Here the authors use CRISPR activation screens to identify metabolite-sensing receptors that affect lymphocyte targeting and infiltration of tumors and engineer CAR T and CAR NK cells with these receptors to enhance solid tumor killing in mice.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/69c37b41b34aaaeb1a67d74chttps://doi.org/10.1038/s41590-026-02473-y
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