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Beyond self-eating: The control of nonautophagic functions and signaling pathways by autophagy-related proteins.


ABSTRACT: The identification of conserved autophagy-related proteins (ATGs) that mediate bulk degradation of cytosolic material laid the foundation for breakthroughs linking autophagy to a litany of physiological processes and disease conditions. Recent discoveries are revealing that these same ATGs orchestrate processes that are related to, and yet clearly distinct from, classic autophagy. Autophagy-related functions include secretion, trafficking of phagocytosed material, replication and egress of viral particles, and regulation of inflammatory and immune signaling cascades. Here, we define common processes dependent on ATGs, and discuss the challenges in mechanistically separating autophagy from these related pathways. Elucidating the molecular events that distinguish how individual ATGs function promises to improve our understanding of the origin of diseases ranging from autoimmunity to cancer.

SUBMITTER: Cadwell K 

PROVIDER: S-EPMC5839790 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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Beyond self-eating: The control of nonautophagic functions and signaling pathways by autophagy-related proteins.

Cadwell Ken K   Debnath Jayanta J  

The Journal of cell biology 20171213 3


The identification of conserved autophagy-related proteins (ATGs) that mediate bulk degradation of cytosolic material laid the foundation for breakthroughs linking autophagy to a litany of physiological processes and disease conditions. Recent discoveries are revealing that these same ATGs orchestrate processes that are related to, and yet clearly distinct from, classic autophagy. Autophagy-related functions include secretion, trafficking of phagocytosed material, replication and egress of viral  ...[more]

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