TY - JOUR
T1 - A Network of Macrophages Supports Mitochondrial Homeostasis in the Heart
AU - Nicolás-Ávila, José A.
AU - Lechuga-Vieco, Ana V.
AU - Esteban-Martínez, Lorena
AU - Sánchez-Díaz, María
AU - Díaz-García, Elena
AU - Santiago, Demetrio J.
AU - Rubio-Ponce, Andrea
AU - Li, Jackson Liang Yao
AU - Balachander, Akhila
AU - Quintana, Juan A.
AU - Martínez-de-Mena, Raquel
AU - Castejón-Vega, Beatriz
AU - Pun-García, Andrés
AU - Través, Paqui G.
AU - Bonzón-Kulichenko, Elena
AU - García-Marqués, Fernando
AU - Cussó, Lorena
AU - A-González, Noelia
AU - González-Guerra, Andrés
AU - Roche-Molina, Marta
AU - Martin-Salamanca, Sandra
AU - Crainiciuc, Georgiana
AU - Guzmán, Gabriela
AU - Larrazabal, Jagoba
AU - Herrero-Galán, Elías
AU - Alegre-Cebollada, Jorge
AU - Lemke, Greg
AU - Rothlin, Carla V.
AU - Jimenez-Borreguero, Luis Jesús
AU - Reyes, Guillermo
AU - Castrillo, Antonio
AU - Desco, Manuel
AU - Muñoz-Cánoves, Pura
AU - Ibáñez, Borja
AU - Torres, Miguel
AU - Ng, Lai Guan
AU - Priori, Silvia G.
AU - Bueno, Héctor
AU - Vázquez, Jesús
AU - Cordero, Mario D.
AU - Bernal, Juan A.
AU - Enríquez, José A.
AU - Hidalgo, Andrés
N1 - Publisher Copyright:
© 2020 Elsevier Inc.
PY - 2020/10/1
Y1 - 2020/10/1
N2 - 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: [Figure presented] A system of macrophages in the heart supports cardiomyocyte health by phagocytosing exopher particles ejected from cardiomyocytes that contain defective mitochondria, among other cellular contents.
AB - 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: [Figure presented] A system of macrophages in the heart supports cardiomyocyte health by phagocytosing exopher particles ejected from cardiomyocytes that contain defective mitochondria, among other cellular contents.
KW - autophagy
KW - heart
KW - macrophage
KW - mitochondria
KW - phagocytosis
KW - proteostasis
UR - https://www.scopus.com/pages/publications/85091687279
U2 - 10.1016/j.cell.2020.08.031
DO - 10.1016/j.cell.2020.08.031
M3 - Article
C2 - 32937105
AN - SCOPUS:85091687279
SN - 0092-8674
VL - 183
SP - 94-109.e23
JO - Cell
JF - Cell
IS - 1
ER -