scispace - formally typeset
Open AccessJournal ArticleDOI

The machinery of macroautophagy

Yuchen Feng, +3 more
- 01 Jan 2014 - 
- Vol. 24, Iss: 1, pp 24-41
TLDR
This review focuses on macroautophagy, briefly describing the discovery of this process in mammalian cells, discussing the current views concerning the donor membrane that forms the phagophore, and characterizing the autophagy machinery including the available structural information.
Abstract
Autophagy is a primarily degradative pathway that takes place in all eukaryotic cells. It is used for recycling cytoplasm to generate macromolecular building blocks and energy under stress conditions, to remove superfluous and damaged organelles to adapt to changing nutrient conditions and to maintain cellular homeostasis. In addition, autophagy plays a critical role in cytoprotection by preventing the accumulation of toxic proteins and through its action in various aspects of immunity including the elimination of invasive microbes and its participation in antigen presentation. The most prevalent form of autophagy is macroautophagy, and during this process, the cell forms a double-membrane sequestering compartment termed the phagophore, which matures into an autophagosome. Following delivery to the vacuole or lysosome, the cargo is degraded and the resulting macromolecules are released back into the cytosol for reuse. The past two decades have resulted in a tremendous increase with regard to the molecular studies of autophagy being carried out in yeast and other eukaryotes. Part of the surge in interest in this topic is due to the connection of autophagy with a wide range of human pathophysiologies including cancer, myopathies, diabetes and neurodegenerative disease. However, there are still many aspects of autophagy that remain unclear, including the process of phagophore formation, the regulatory mechanisms that control its induction and the function of most of the autophagy-related proteins. In this review, we focus on macroautophagy, briefly describing the discovery of this process in mammalian cells, discussing the current views concerning the donor membrane that forms the phagophore, and characterizing the autophagy machinery including the available structural information.

read more

Content maybe subject to copyright    Report

Citations
More filters
Journal ArticleDOI

Haplodeficiency of Cathepsin D does not affect cerebral amyloidosis and autophagy in APP/PS1 transgenic mice.

TL;DR: It is demonstrated that in wild‐type mice, Cat D protein levels are either in excess or redundant with other factors in the brain, and at least one allele of Ctsd is dispensable for cerebral β‐amyloidosis and autophagy in APP/PS1 transgenic mice.
Journal ArticleDOI

Role of AMPK in autophagy

TL;DR: In this article , the role of AMPK in different stages of autophagy is discussed, including activation of the autophagosome-lysosome fusion and activation of SIRT1 signaling pathway.
Posted ContentDOI

Selective autophagic clearance of protein aggregates is mediated by the autophagy receptor, TAX1BP1

TL;DR: A broad role is proposed for TAX1BP1 in the clearance of cytotoxic proteins, thus identifying a new mode of clearance of protein inclusions.
Journal ArticleDOI

The Tumorigenic Effect of Sphingosine Kinase 1 and Its Potential Therapeutic Target.

TL;DR: In this paper, the authors summarized the metabolic balance regulated by the SPHK1/S1P signaling pathway and highlighted the oncogenic mechanisms of SPHK 1 via the upregulation of autophagy, proliferation, and survival, migration, angiogenesis and inflammation, and inhibition of apoptosis.
References
More filters
Journal ArticleDOI

AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1

TL;DR: A molecular mechanism for regulation of the mammalian autophagy-initiating kinase Ulk1, a homologue of yeast ATG1, is demonstrated and a signalling mechanism for UlK1 regulation and autophagic induction in response to nutrient signalling is revealed.
Journal ArticleDOI

Mutations in the parkin gene cause autosomal recessive juvenile parkinsonism

TL;DR: Mutations in the newly identified gene appear to be responsible for the pathogenesis of Autosomal recessive juvenile parkinsonism, and the protein product is named ‘Parkin’.
Journal ArticleDOI

Tissue fractionation studies. 6. Intracellular distribution patterns of enzymes in rat-liver tissue

TL;DR: The results are shown to favour the ferryl ion structure, or an isomer of this structure, for the higher oxidation state, and theHigher oxidation state may provisionally be named ferrylmyoglobin.
Journal ArticleDOI

Autophagy: process and function

TL;DR: In this review, the process of autophagy is summarized, and the role of autophileagy is discussed in a process-based manner.
Related Papers (5)

Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)

Daniel J. Klionsky, +2522 more
- 21 Jan 2016 -