Health & Medicinearticle2026-08-18

The metabokine β-aminoisobutyric acid mediates exercise performance and skeletal muscle adaptation through a PGC1α-BAIBA-PPARδ axis

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Abstract

Abstract Exercise orchestrates an interorgan communication network, in which skeletal muscle releases signaling molecules known as myokines that contribute to exercise training-induced adaptations. We identified the muscle-derived metabolite beta-aminoisobutyric acid (BAIBA) as a regulator of adipose and hepatic metabolic responses to exercise. Here, we demonstrate that BAIBA regulates muscle metabolism, morphology and function via peroxisome proliferator-activated receptor delta (PPARδ) to determine exercise performance in mice. BAIBA mitigates muscle dysfunction in a mouse model of diabetes. Physiologically, BAIBA exists as D- and L- enantiomers. We identify L-BAIBA as the primary mediator of muscular effects. Knockdown of L-BAIBA’s biosynthetic enzyme, 4-aminobutyrate aminotransferase, in mouse hindlimb muscle impairs exercise-induced adaptations and performance gains. L-BAIBA regulates human myotube fibertype and differentiation markers through Mas-related G-protein coupled receptor D. In humans, plasma L-BAIBA correlates with aerobic fitness and increases with endurance exercise training. BAIBA acts through the PGC1α-BAIBA-PPARδ axis to facilitate muscle adaptation and exercise performance.

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View paper (DOI)Open access versionOpenAlexNature CommunicationsPublished 2026-08-18

Authors: H.N. Daou, N.T. Watt, S.A. Gad, A.D.V. MacCannell, A.M. Ali, C. Cheng, R.L. Fernando, T.S. Futers, S.A. Khetarpal, H. Gallagher, L.D. Chinait, Moriscot A.S., P. Knuiman, K. Manusama, M. Mensink, I. Teh, J.E. Schneider, R. Cubbon, G.S. Taylor, D.J. West, D.J. Beech, T.S. Bowen, L.D. Roberts

Institutions: Universidade de São Paulo, Harvard University, Wageningen University & Research, University of Leeds, Mansoura University, Dana-Farber Cancer Institute, Newcastle University