4.8 Article

Macrophage Akt1 Kinase-Mediated Mitophagy Modulates Apoptosis Resistance and Pulmonary Fibrosis

Journal

IMMUNITY
Volume 44, Issue 3, Pages 582-596

Publisher

CELL PRESS
DOI: 10.1016/j.immuni.2016.01.001

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Funding

  1. National Institute of Health [2R01ES015981-08, 2T32HL105346-06]
  2. Targeted Metabolomics and Proteonomics Laboratory [P30DK079337]
  3. UAB Lung Health Center
  4. UAB Center for Free Radical Biology
  5. Department of Veterans Affairs, Veterans Health Administration, Office of Research and Development, and Biological Laboratory Research and Development [BX001135-03]

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Idiopathic pulmonary fibrosis (IPF) is a devastating lung disorder with increasing incidence. Mitochondrial oxidative stress in alveolar macrophages is directly linked to pulmonary fibrosis. Mitophagy, the selective engulfment of dysfunctional mitochondria by autophagasomes, is important for cellular homeostasis and can be induced by mitochondrial oxidative stress. Here, we show Akt1 induced macrophage mitochondrial reactive oxygen species (ROS) and mitophagy. Mice harboring a conditional deletion of Akt1 in macrophages (Akt1(-/-)Lyz2-cre) and Park2(-/-) mice had impaired mitophagy and reduced active transforming growth factor-beta 1 (TGF-beta 1). Although Akt1 increased TGF-beta 1 expression, mitophagy inhibition in Akt1-overexpressing macrophages abrogated TGF-beta 1 expression and fibroblast differentiation. Importantly, conditional Akt1(-/-) Lyz2-cre mice and Park2(-/-) mice had increased macrophage apoptosis and were protected from pulmonary fibrosis. Moreover, IPF alveolar macrophages had evidence of increased mitophagy and displayed apoptosis resistance. These observations suggest that Akt1-mediated mitophagy contributes to alveolar macrophage apoptosis resistance and is required for pulmonary fibrosis development.

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