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In Vitro and In Vivo Detection of Mitophagy in Human Cells, C. Elegans, and Mice
Published on: November 22, 2017
Autophagy related genes mediated mitophagy in yeast, mammals and higher plants
Muhammad Riaz1, Razia Sultana2, Javed Ahmad3
1Wheat Research Institute, Ayyub Agriculture Research Institute, Faisalabad, 38040, Punjab, Pakistan. riaz_1964@yahoo.com.
Abstract:
Autophagy is classified into macro-autophagy and micro-autophagy. Two major types of autophagy in the complex eukaryotic organism are microautophagy and macroautophagy. During microautophagy, cytoplasmic components that need to be degraded are taken up by lysosomes in animals and by vacuole in yeast and plants via the invagination of tonoplast. While macroautophagy is initiated after the formation of a cup-shaped membrane structure, a phagophore develops at cargo that grows in size and is sealed by double-membrane vesicles to form autophagosome; a generalized mechanism for degradation of the organelle. Autophagic removal of damaged mitochondria is a conserved cellular process to maintain a healthy mitochondrion called Mitophagy. In plants and animals, mitophagy has crucial roles in stress responses, senescence, development, and programmed cell death. Mitophagy appears in mammals, fungi, and plants but many genes that controlled mitophagy are absent from plants. Numerous studies have been conducted by using ATG mutants for the identification of functional roles of Autophagy Related Genes (ATG) required during the autophagy process at various steps like; auto phagosome formation, ATG protein recruitment, etc. The role of more than 25 ATG genes in mitophagy has been discussed in this review paper. The main parameters, reviewed and summarized in this review paper, are the name of species, common name, function, domain, deletion, induction, and localization of these autophagy-related genes in the cell. This review will facilitate the students, researchers, and academics for their further research insights.
Insights
This review details autophagy, a cellular degradation process, focusing on mitophagy, the removal of damaged mitochondria. It examines over 25 Autophagy Related Genes (ATG) crucial for this process across various species.
Area of Science:
- Cellular Biology
- Molecular Biology
- Genetics
Background:
- Autophagy, encompassing microautophagy and macroautophagy, is a fundamental cellular process for degrading cytoplasmic components and organelles.
- Mitophagy, a specialized form of autophagy, is vital for maintaining mitochondrial health and plays key roles in stress responses, development, and programmed cell death in plants and animals.
Approach:
- This review synthesizes information on Autophagy Related Genes (ATG) involved in mitophagy.
- It analyzes the functional roles, domains, deletions, induction, and cellular localization of over 25 ATG genes.
Key Points:
- Mitophagy is conserved in mammals, fungi, and plants, though plant genomes show differences in mitophagy-related genes.
- Autophagy Related Genes (ATG) mutants are instrumental in identifying gene functions in autophagy and mitophagy.
- The review systematically summarizes parameters for numerous ATG genes, aiding research.
Conclusions:
- Understanding the roles of ATG genes in mitophagy is crucial for comprehending cellular maintenance and stress responses.
- This comprehensive review serves as a valuable resource for students, researchers, and academics in the field of autophagy.
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