Javascript must be enabled to continue!
The molecular mechanism of mitochondria autophagy in yeast
View through CrossRef
SummaryMitochondria are critical for supplying energy to the cell, but during catabolism this organelle also produces reactive oxygen species that can cause oxidative damage. Accordingly, quality control of mitochondria is important to maintain cellular homeostasis. It has been assumed that autophagy is the pathway for mitochondrial recycling, and that the selective degradation of mitochondria via autophagy (mitophagy) is the primary mechanism for mitochondrial quality control, although there is little experimental evidence to support this idea. Recent studies in yeast identified several mitophagy‐related genes and have uncovered components involved in the molecular mechanism and regulation of mitophagy. Similarly, studies of Parkinson disease and reticulocyte maturation reveal that Parkin and Nix, respectively, are required for mitophagy in mammalian cells, and these analyses have revealed important physiological roles for mitophagy. Here, we review the current knowledge on mitophagy, in particular on the molecular mechanism and regulation of mitophagy in yeast. We also discuss some of the differences between yeast and mammalian mitophagy.
Title: The molecular mechanism of mitochondria autophagy in yeast
Description:
SummaryMitochondria are critical for supplying energy to the cell, but during catabolism this organelle also produces reactive oxygen species that can cause oxidative damage.
Accordingly, quality control of mitochondria is important to maintain cellular homeostasis.
It has been assumed that autophagy is the pathway for mitochondrial recycling, and that the selective degradation of mitochondria via autophagy (mitophagy) is the primary mechanism for mitochondrial quality control, although there is little experimental evidence to support this idea.
Recent studies in yeast identified several mitophagy‐related genes and have uncovered components involved in the molecular mechanism and regulation of mitophagy.
Similarly, studies of Parkinson disease and reticulocyte maturation reveal that Parkin and Nix, respectively, are required for mitophagy in mammalian cells, and these analyses have revealed important physiological roles for mitophagy.
Here, we review the current knowledge on mitophagy, in particular on the molecular mechanism and regulation of mitophagy in yeast.
We also discuss some of the differences between yeast and mammalian mitophagy.
Related Results
ULK1 and ULK2 modulate different aspects of skeletal muscle autophagy
ULK1 and ULK2 modulate different aspects of skeletal muscle autophagy
<p>Macroautophagy, hereafter referred to as autophagy, is a catabolic process involving the degradation of cellular proteins and structures sequestered into a vesicle known a...
Identification of stress specific autophagy regulators from tandem CRISPR screens
Identification of stress specific autophagy regulators from tandem CRISPR screens
Abstract
Autophagy is a conserved degradative process that promotes cellular homeostasis under stress conditions. Under nutrient starvation autophagy is largely non...
British Food Journal Volume 49 Issue 8 1947
British Food Journal Volume 49 Issue 8 1947
In the good old days, before civilisation and artificial eating habits caught up with mankind, the majority of people in the world got all the Vitamin B and protein their bodies ne...
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
<div>Abstract<p>Autophagy is a mechanism by which cells degrade cellular material to provide nutrients and energy for survival during stress. The autophagy is thought t...
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
<div>Abstract<p>Autophagy is a mechanism by which cells degrade cellular material to provide nutrients and energy for survival during stress. The autophagy is thought t...
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract
Considering that a tumor promoting role for GSK3 has been suggested in pancreatic cancer (PC) cells and that GSK3 inhibitors are currently under clinical tr...
Abstract 1688: Autophagy inhibition enhances the antitumor effects of combretastatin A4 phosphate (CA4P).
Abstract 1688: Autophagy inhibition enhances the antitumor effects of combretastatin A4 phosphate (CA4P).
Abstract
Vascular disruptive agents such as CA4P cause an acute shutdown of the tumor vasculature resulting in metabolic stress and central tumor necrosis. However, ...
AUTOPHAGY CONTROLS EPITHELIAL PROTEOLYTIC HOMEOSTASIS OF THE INTESTINAL MUCOSA
AUTOPHAGY CONTROLS EPITHELIAL PROTEOLYTIC HOMEOSTASIS OF THE INTESTINAL MUCOSA
Background
Crohn's Disease (CD) is a chronic relapsing inflammatory bowel disease (IBD) with mucosal ulcerations affecting all of the digestive tract. Intestina...

