Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3)
Mitophagy (mitochondrial autophagy), which removes damaged, effete and superfluous mitochondria, has several distinct variants. In Type 1 mitophagy occurring during nutrient deprivation, preautophagic structures (PAS) grow into cup-shaped phagophores that surround and sequester individual mitochond...
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doaj-a3bab02d284541dcb23ebe48b09404b62020-11-25T02:01:22ZengElsevierRedox Biology2213-23172014-01-012C74975410.1016/j.redox.2014.06.004Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3)John J. Lemasters0Center for Cell Death, Injury & Regeneration, Department of Drug Discovery & Biomedical Sciences, Medical University of South Carolina, DD504 Drug Discovery Building, 70 President Street, MSC 140, Charleston, SC 29425, United States of America Mitophagy (mitochondrial autophagy), which removes damaged, effete and superfluous mitochondria, has several distinct variants. In Type 1 mitophagy occurring during nutrient deprivation, preautophagic structures (PAS) grow into cup-shaped phagophores that surround and sequester individual mitochondria into mitophagosomes, a process requiring phosphatidylinositol-3-kinase (PI3K) and often occurring in coordination with mitochondrial fission. After sequestration, the outer compartment of the mitophagosome acidifies, followed by mitochondrial depolarization and ultimately hydrolytic digestion in lysosomes. Mitochondrial damage stimulates Type 2 mitophagy. After photodamage to single mitochondria, depolarization occurs followed by decoration and then coalescence of autophagic LC3-containing structures on mitochondrial surfaces. Vesicular acidification then occurs. By contrast to Type 1 mitophagy, PI3K inhibition does not block Type 2 mitophagy. Further, Type 2 mitophagy is not associated with phagophore formation or mitochondrial fission. A third form of self-eating of mitochondria is formation of mitochondria-derived vesicles (MDVs) enriched in oxidized mitochondrial proteins that bud off and transit into multivesicular bodies. Topologically, the internalization of MDV by invagination of the surface of multivesicular bodies followed by vesicle scission into the lumen is a form of microautophagy, or micromitophagy (Type 3 mitophagy). Cell biological distinctions are the basis for these three types of mitophagy. Future studies are needed to better characterize the molecular and biochemical differences between Types 1, 2 and 3 mitophagy. http://www.sciencedirect.com/science/article/pii/S2213231714000767MicromitophagyMitochondria-derived vesiclesMitophagyNutrient deprivationPhotodamagePreautophagic structure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
John J. Lemasters |
spellingShingle |
John J. Lemasters Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3) Redox Biology Micromitophagy Mitochondria-derived vesicles Mitophagy Nutrient deprivation Photodamage Preautophagic structure |
author_facet |
John J. Lemasters |
author_sort |
John J. Lemasters |
title |
Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3) |
title_short |
Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3) |
title_full |
Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3) |
title_fullStr |
Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3) |
title_full_unstemmed |
Variants of mitochondrial autophagy: Types 1 and 2 mitophagy and micromitophagy (Type 3) |
title_sort |
variants of mitochondrial autophagy: types 1 and 2 mitophagy and micromitophagy (type 3) |
publisher |
Elsevier |
series |
Redox Biology |
issn |
2213-2317 |
publishDate |
2014-01-01 |
description |
Mitophagy (mitochondrial autophagy), which removes damaged, effete and superfluous mitochondria, has several distinct variants. In Type 1 mitophagy occurring during nutrient deprivation, preautophagic structures (PAS) grow into cup-shaped phagophores that surround and sequester individual mitochondria into mitophagosomes, a process requiring phosphatidylinositol-3-kinase (PI3K) and often occurring in coordination with mitochondrial fission. After sequestration, the outer compartment of the mitophagosome acidifies, followed by mitochondrial depolarization and ultimately hydrolytic digestion in lysosomes. Mitochondrial damage stimulates Type 2 mitophagy. After photodamage to single mitochondria, depolarization occurs followed by decoration and then coalescence of autophagic LC3-containing structures on mitochondrial surfaces. Vesicular acidification then occurs. By contrast to Type 1 mitophagy, PI3K inhibition does not block Type 2 mitophagy. Further, Type 2 mitophagy is not associated with phagophore formation or mitochondrial fission. A third form of self-eating of mitochondria is formation of mitochondria-derived vesicles (MDVs) enriched in oxidized mitochondrial proteins that bud off and transit into multivesicular bodies. Topologically, the internalization of MDV by invagination of the surface of multivesicular bodies followed by vesicle scission into the lumen is a form of microautophagy, or micromitophagy (Type 3 mitophagy). Cell biological distinctions are the basis for these three types of mitophagy. Future studies are needed to better characterize the molecular and biochemical differences between Types 1, 2 and 3 mitophagy.
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topic |
Micromitophagy Mitochondria-derived vesicles Mitophagy Nutrient deprivation Photodamage Preautophagic structure |
url |
http://www.sciencedirect.com/science/article/pii/S2213231714000767 |
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