Interferon-responsive intestinal BEST4/CA7<sup>+</sup> cells are targets of bacterial diarrheal toxins.

Wang, Daisong; Spoelstra, Willem Kasper; Lin, Lin; Akkerman, Ninouk; Krueger, Daniel; Dayton, Talya; van Zon, Jeroen S; Tans, Sander J et al. · Cell Stem Cell · 2025

basic_science · Level V

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Abstract

BEST4/CA7<sup>+</sup> cells of the human intestine were recently identified by single-cell RNA sequencing. While their gene expression profile predicts a role in electrolyte balance, BEST4/CA7<sup>+</sup> cell function has not been explored experimentally owing to the absence of BEST4/CA7<sup>+</sup> cells in mice and the paucity of human in vitro models. Here, we establish a protocol that allows the emergence of BEST4/CA7<sup>+</sup> cells in human intestinal organoids. Differentiation of BEST4/CA7<sup>+</sup> cells requires activation of Notch signaling and the transcription factor SPIB. BEST4/CA7<sup>+</sup> cell numbers strongly increase in response to the cytokine interferon-γ, supporting a role in immunity. Indeed, we demonstrate that BEST4/CA7<sup>+</sup> cells generate robust CFTR-mediated fluid efflux when stimulated with bacterial diarrhea-causing toxins and find the norepinephrine-ADRA2A axis as a potential mechanism in blocking BEST4/CA7<sup>+</sup> cell-mediated fluid secretion. Our observations identify a central role of BEST4/CA7<sup>+</sup> cells in fluid homeostasis in response to bacterial infections.

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