Chemogenetics defines receptor-mediated functions of short chain free fatty acids

化学遗传学定义短链游离脂肪酸的受体介导功能

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作者:Daniele Bolognini, Natasja Barki, Adrian J Butcher, Brian D Hudson, Eugenia Sergeev, Colin Molloy, Catherine E Moss, Sophie J Bradley, Christian Le Gouill, Michel Bouvier, Andrew B Tobin, Graeme Milligan

Abstract

Differentiating actions of short chain fatty acids (SCFAs) at free fatty acid receptor 2 (FFA2) from other free fatty acid-responsive receptors and from non-receptor-mediated effects has been challenging. Using a novel chemogenetic and knock-in strategy, whereby an engineered variant of FFA2 (FFA2-DREADD) that is unresponsive to natural SCFAs but is instead activated by sorbic acid replaced the wild-type receptor, we determined that activation of FFA2 in differentiated adipocytes and colonic crypt enteroendocrine cells of mouse accounts fully for SCFA-regulated lipolysis and release of the incretin glucagon-like peptide-1 (GLP-1), respectively. In vivo studies confirmed the specific role of FFA2 in GLP-1 release and also demonstrated a direct role for FFA2 in accelerating gut transit. Thereby, we establish the general principle that such a chemogenetic knock-in strategy can successfully define novel G-protein-coupled receptor (GPCR) biology and provide both target validation and establish therapeutic potential of a 'hard to target' GPCR.

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