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A Network of Macrophages Supports Mitochondrial Homeostasis in the Heart
Author(s) -
José Ángel Nicolás-Avila,
Ana Victoria LechugaVieco,
Lorena EstebanMartínez,
María Sánchez-Díaz,
Elena DíazGarcía,
Demetrio J. Santiago,
Andrea Rubio-Ponce,
J Li,
Akhila Balachander,
Juan A. Quintana,
Raquel Martínez de Mena,
Beatriz CastejónVega,
Andrés Pun-García,
Paqui G. Través,
Elena BonzónKulichenko,
Fernando Jose Garcia-Marques,
Lorena Cussó,
Noelia A-González,
Andrés González-Guerra,
Marta Roche-Molina,
Sandra Martín-Salamanca,
Georgiana Crainiciuc,
Gabriela Guzmán,
Jagoba Larrazabal,
Elías HerreroGalán,
Jorge AlegreCebollada,
Greg Lemke,
Carla V. Rothlin,
Luis Jesús JiménezBorreguero,
Guillermo Reyes,
Antonio Castrillo,
Manuel Desco,
Pura Muñoz-Cánoves,
Borja Ibáñez,
Miguel Torres,
Lai Guan Ng,
Silvia G. Priori,
Héctor Bueno,
Jesús Vázquez,
Mario D. Cordero,
Juan A. Bernal,
José Antonio Enrı́quez,
Andrés Hidalgo
Publication year - 2020
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2020.08.031
Subject(s) - mitochondrion , biology , autophagy , microbiology and biotechnology , homeostasis , mertk , inflammasome , receptor , immunology , inflammation , signal transduction , biochemistry , apoptosis , receptor tyrosine kinase
Cardiomyocytes are subjected to the intense mechanical stress and metabolic demands of the beating heart. It is unclear whether these cells, which are long-lived and rarely renew, manage to preserve homeostasis on their own. While analyzing macrophages lodged within the healthy myocardium, we discovered that they actively took up material, including mitochondria, derived from cardiomyocytes. Cardiomyocytes ejected dysfunctional mitochondria and other cargo in dedicated membranous particles reminiscent of neural exophers, through a process driven by the cardiomyocyte's autophagy machinery that was enhanced during cardiac stress. Depletion of cardiac macrophages or deficiency in the phagocytic receptor Mertk resulted in defective elimination of mitochondria from the myocardial tissue, activation of the inflammasome, impaired autophagy, accumulation of anomalous mitochondria in cardiomyocytes, metabolic alterations, and ventricular dysfunction. Thus, we identify an immune-parenchymal pair in the murine heart that enables transfer of unfit material to preserve metabolic stability and organ function. VIDEO ABSTRACT.

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