Indole-3-propionic acid is an endogenic agonist of hypoxia-inducible factor-1α to protect the heart against hypoxia

Tryptophan catabolism by the gut microbiota is increasingly recognized as a hub connecting environmental challenges to cardiovascular health. By systematically profiling tryptophan metabolites in humans who had moved from low altitude to an altitude of 4300 m and in mice exposed to hypobaric hypoxia, we found that circulating and fecal levels of indole-3-propionic acid (IPA), a gut microbiota-derived tryptophan metabolite, are reduced in both settings, and these reductions correlate with the severity of cardiac injury. IPA supplementation in mice ameliorated hypobaric hypoxia-induced cardiac dysfunction. Mechanistically, IPA directly bound to hypoxia-inducible factor-1α (HIF-1α) at residue P564, competitively inhibiting its interaction with von Hippel-Lindau protein and preventing proteasomal degradation, thereby stabilizing HIF-1α. HIF-1α activation shifted cardiac metabolic substrate utilization from fatty acids to glucose and reduced oxygen consumption. Cardiomyocyte-specific HIF-1α knockout completely abolished IPA's cardioprotective effects. Moreover, gut microbiota depletion abrogated the protective effect of tryptophan against hypobaric hypoxia exposure. Finally, IPA protected against myocardial infarction in a HIF-1α-dependent manner. These results suggest that IPA is an endogenous HIF-1α agonist to protect the heart against hypoxia/ischemia, representing a promising therapeutic candidate for hypoxic/ischemic diseases.

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Publication Details

Journal
Protein & Cell
Published
2026-09-04
DOI
https://doi.org/10.1093/procel/pwag067
Primary Topic
Gut microbiota and health
Type
article
Field-Weighted Citation Impact
0.00

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article

Indole-3-propionic acid is an endogenic agonist of hypoxia-inducible factor-1α to protect the heart against hypoxia

Xing Zhang, Zi-ang Zhang, Zihang Feng, Xinghua Qin et al.
Protein & Cell
Gut microbiota and health
article

Indole-3-propionic acid is an endogenic agonist of hypoxia-inducible factor-1α to protect the heart against hypoxia

Xing Zhang, Zi-ang Zhang, Zihang Feng, Xinghua Qin, Feng Gao, Zhihui Feng, Pengfei Zhang, Shichao Sun, Xiangyang Qin, Sen Yu, Yong Liu, Lulu Gong, Jia Li, Yuan Xing, Han Li, Min Li
article en

Abstract

Tryptophan catabolism by the gut microbiota is increasingly recognized as a hub connecting environmental challenges to cardiovascular health. By systematically profiling tryptophan metabolites in humans who had moved from low altitude to an altitude of 4300 m and in mice exposed to hypobaric hypoxia, we found that circulating and fecal levels of indole-3-propionic acid (IPA), a gut microbiota-derived tryptophan metabolite, are reduced in both settings, and these reductions correlate with the severity of cardiac injury. IPA supplementation in mice ameliorated hypobaric hypoxia-induced cardiac dysfunction. Mechanistically, IPA directly bound to hypoxia-inducible factor-1α (HIF-1α) at residue P564, competitively inhibiting its interaction with von Hippel-Lindau protein and preventing proteasomal degradation, thereby stabilizing HIF-1α. HIF-1α activation shifted cardiac metabolic substrate utilization from fatty acids to glucose and reduced oxygen consumption. Cardiomyocyte-specific HIF-1α knockout completely abolished IPA's cardioprotective effects. Moreover, gut microbiota depletion abrogated the protective effect of tryptophan against hypobaric hypoxia exposure. Finally, IPA protected against myocardial infarction in a HIF-1α-dependent manner. These results suggest that IPA is an endogenous HIF-1α agonist to protect the heart against hypoxia/ischemia, representing a promising therapeutic candidate for hypoxic/ischemic diseases.

Protein & Cell
Ministry of Education of the People's Republic of China (CN), Northwestern Polytechnical University (CN), People's Liberation Army No. 150 Hospital (CN), Lanzhou University Second Hospital (CN), Lanzhou University (CN), Xi'an Jiaotong University (CN), Air Force Medical University (CN)
National Natural Science Foundation of China, Ministry of Education of the People's Republic of China, Fourth Military Medical University
Life in Land
Openalex Percentile: Top 18%
Gut microbiota and health
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