Abstract

Autophagy, as a type II programmed cell death, plays crucial roles with autophagy-related (ATG) proteins in cancer. Up to now, the dual role of autophagy both in cancer progression and inhibition remains controversial, in which the numerous ATG proteins and their core complexes including ULK1/2 kinase core complex, autophagy-specific class III PI3K complex, ATG9A trafficking system, ATG12 and LC3 ubiquitin-like conjugation systems, give multiple activities of autophagy pathway and are involved in autophagy initiation, nucleation, elongation, maturation, fusion and degradation. Autophagy plays a dynamic tumor-suppressive or tumor-promoting role in different contexts and stages of cancer development. In the early tumorigenesis, autophagy, as a survival pathway and quality-control mechanism, prevents tumor initiation and suppresses cancer progression. Once the tumors progress to late stage and are established and subjected to the environmental stresses, autophagy, as a dynamic degradation and recycling system, contributes to the survival and growth of the established tumors and promotes aggressiveness of the cancers by facilitating metastasis. This indicates that regulation of autophagy can be used as effective interventional strategies for cancer therapy.

Keywords

AutophagyBiologyULK1Cancer researchATG12Cell biologyCancerCarcinogenesisProgrammed cell deathPI3K/AKT/mTOR pathwayUbiquitinKinaseSignal transductionATG5Protein kinase AApoptosisBiochemistryGenetics

MeSH Terms

AnimalsAutophagyAutophagy-Related ProteinsHumansNeoplasmsSignal Transduction

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Publication Info

Year
2020
Type
review
Volume
19
Issue
1
Pages
12-12
Citations
1494
Access
Closed

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1494
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Cite This

Xiaohua Li, Shikun He, Binyun Ma (2020). Autophagy and autophagy-related proteins in cancer. Molecular Cancer , 19 (1) , 12-12. https://doi.org/10.1186/s12943-020-1138-4

Identifiers

DOI
10.1186/s12943-020-1138-4
PMID
31969156
PMCID
PMC6975070

Data Quality

Data completeness: 86%