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September 17, 2025Journal of Clinical Investigation0 citationsOpen Access

Fatty acid transport protein-2 inhibition enhances glucose tolerance through α-cell-mediated GLP-1 secretion

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SKShenaz KhanRGRobert J. GaivinZLZhiyu Liu

Key Points

  • Inhibition of FATP2 improves glucose tolerance attributed to increased GLP-1 secretion from α-cells.
  • FATP2 gene deletion in db/db mice resulted in reduced plasma glucose levels and enhanced insulin secretion.
  • FATP2KO db/db mice showed increased α-cell mass and glucagon-like peptide-1 (GLP-1) secretion compared to controls.
  • The results imply that targeting FATP2 could be a novel approach for improving glycemic control in diabetes.

Abstract

Type 2 diabetes affects more than 38 million people in the US, and a major complication is kidney disease. During the analysis of lipotoxicity in diabetic kidney disease, global fatty acid transport protein-2 (FATP2) gene deletion was noted to markedly reduce plasma glucose in db/db mice due to sustained insulin secretion. To identify the mechanism, we observed that islet FATP2 expression was restricted to α-cells, and α-cell FATP2 was functional. Basal glucagon and alanine-stimulated gluconeogenesis were reduced in FATP2KO db/db compared to db/db mice. Direct evidence of FATP2KO-induced α-cell-mediated glucagon-like peptide-1 (GLP-1) secretion included increased GLP-1-positive α-cell mass in FATP2KO db/db mice, small molecule FATP2 inhibitor enhancement of GLP-1 secretion in αTC1-6 cells and human islets, and exendin9-39-inhibitable insulin secretion in FATP2 inhibitor-treated human islets. FATP2-dependent enteroendocrine GLP-1 secretion was excluded by demonstration of similar glucose tolerance and plasma GLP-1 concentrations in db/db FATP2KO mice following oral versus intraperitoneal glucose loading, non-overlapping FATP2 and preproglucagon mRNA expression, and lack of FATP2/GLP-1 co-immunolocalization in intestine. We conclude that FATP2 deletion or inhibition exerts glucose-lowering effects through α-cell-mediated GLP-1 secretion and paracrine ß-cell insulin release.

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Cite This Study

Khan et al. (2025) studied this question.

synapsesocial.com/papers/68d45b2931b076d99fa5da10https://doi.org/10.1172/jci192011
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