Author
Listed:
- Ana Paredes
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Raquel Justo-Méndez
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Daniel Jiménez-Blasco
(University of Salamanca, CSIC
Institute for Biomedical Research of Salamanca (IBSAL)
CIBER de Fragilidad y Envejecimiento Saludable (CIBERFES))
- Vanessa Núñez
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Irene Calero
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- María Villalba-Orero
(Centro Nacional de Investigaciones Cardiovasculares (CNIC)
Universidad Complutense de Madrid (UCM))
- Andrea Alegre-Martí
(Institute of Biomedicine (IBUB) of the University of Barcelona (UB))
- Thierry Fischer
(Centro Nacional de Biotecnología-Consejo Superior de Investigaciones Científicas (CNB/CSIC), Campus Universidad Autónoma de Madrid (UAM))
- Ana Gradillas
(Universidad San Pablo-CEU, CEU Universities)
- Viviane Aparecida Rodrigues Sant’Anna
(Universidad San Pablo-CEU, CEU Universities)
- Felipe Were
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Zhiqiang Huang
(Karolinska Institutet)
- Pablo Hernansanz-Agustín
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Carmen Contreras
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Fernando Martínez
(Centro Nacional de Investigaciones Cardiovasculares (CNIC)
CIBER de Enfermedades Cardiovasculares (CIBERCV))
- Emilio Camafeita
(CIBER de Enfermedades Cardiovasculares (CIBERCV)
Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Jesús Vázquez
(CIBER de Enfermedades Cardiovasculares (CIBERCV)
Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Jesús Ruiz-Cabello
(Basque Research and Technology Alliance (BRTA)
Basque Foundation for Science
CIBER de Enfermedades Respiratorias (CIBERES)
Universidad Complutense Madrid (UCM))
- Estela Area-Gómez
(Centro de Investigaciones Biológicas Margarita Salas-CSIC
Columbia University Medical Campus)
- Fátima Sánchez-Cabo
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
- Eckardt Treuter
(Karolinska Institutet)
- Juan Pedro Bolaños
(University of Salamanca, CSIC
Institute for Biomedical Research of Salamanca (IBSAL)
CIBER de Fragilidad y Envejecimiento Saludable (CIBERFES))
- Eva Estébanez-Perpiñá
(Institute of Biomedicine (IBUB) of the University of Barcelona (UB))
- Francisco Javier Rupérez
(Universidad San Pablo-CEU, CEU Universities)
- Coral Barbas
(Universidad San Pablo-CEU, CEU Universities)
- José Antonio Enríquez
(Centro Nacional de Investigaciones Cardiovasculares (CNIC)
CIBER de Fragilidad y Envejecimiento Saludable (CIBERFES))
- Mercedes Ricote
(Centro Nacional de Investigaciones Cardiovasculares (CNIC))
Abstract
Birth presents a metabolic challenge to cardiomyocytes as they reshape fuel preference from glucose to fatty acids for postnatal energy production1,2. This adaptation is triggered in part by post-partum environmental changes3, but the molecules orchestrating cardiomyocyte maturation remain unknown. Here we show that this transition is coordinated by maternally supplied γ-linolenic acid (GLA), an 18:3 omega-6 fatty acid enriched in the maternal milk. GLA binds and activates retinoid X receptors4 (RXRs), ligand-regulated transcription factors that are expressed in cardiomyocytes from embryonic stages. Multifaceted genome-wide analysis revealed that the lack of RXR in embryonic cardiomyocytes caused an aberrant chromatin landscape that prevented the induction of an RXR-dependent gene expression signature controlling mitochondrial fatty acid homeostasis. The ensuing defective metabolic transition featured blunted mitochondrial lipid-derived energy production and enhanced glucose consumption, leading to perinatal cardiac dysfunction and death. Finally, GLA supplementation induced RXR-dependent expression of the mitochondrial fatty acid homeostasis signature in cardiomyocytes, both in vitro and in vivo. Thus, our study identifies the GLA–RXR axis as a key transcriptional regulatory mechanism underlying the maternal control of perinatal cardiac metabolism.
Suggested Citation
Ana Paredes & Raquel Justo-Méndez & Daniel Jiménez-Blasco & Vanessa Núñez & Irene Calero & María Villalba-Orero & Andrea Alegre-Martí & Thierry Fischer & Ana Gradillas & Viviane Aparecida Rodrigues Sa, 2023.
"γ-Linolenic acid in maternal milk drives cardiac metabolic maturation,"
Nature, Nature, vol. 618(7964), pages 365-373, June.
Handle:
RePEc:nat:nature:v:618:y:2023:i:7964:d:10.1038_s41586-023-06068-7
DOI: 10.1038/s41586-023-06068-7
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