Literature DB >> 28246201

Retrograde signaling from autophagy modulates stress responses.

Hans-Uwe Simon1, Robert Friis2, Stephen W G Tait3, Kevin M Ryan3.   

Abstract

Macroautophagy is a process in which cytoplasmic components, including whole organelles, are degraded within lysosomes. Basally, this process is essential for homeostasis and is constitutively functional in most cells, but it can also be implemented as part of stress responses. We discuss findings showing that autophagy proteins can modulate and amplify the activities of transcription factors involved in stress responses, such as those in the p53, FOXO, MiT/TFE, Nrf2, and NFκB/Rel families. Thus, transcription factors not only amplify stress responses and autophagy but are also subject to retrograde regulation by autophagy-related proteins. Physical interactions with autophagy-related proteins, competition for activating intermediates, and "signalphagy," which is the role autophagy plays in the degradation of specific signaling proteins, together provide powerful tools for implementing negative feedback or positive feed-forward loops on the transcription factors that regulate autophagy. We present examples illustrating how this network interacts to regulate metabolic and physiologic responses.
Copyright © 2017, American Association for the Advancement of Science.

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Year:  2017        PMID: 28246201     DOI: 10.1126/scisignal.aag2791

Source DB:  PubMed          Journal:  Sci Signal        ISSN: 1945-0877            Impact factor:   8.192


  24 in total

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2.  Neither eosinophils nor neutrophils require ATG5-dependent autophagy for extracellular DNA trap formation.

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Review 3.  Biological Functions of Autophagy Genes: A Disease Perspective.

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Review 6.  Regulation of the innate immune system by autophagy: neutrophils, eosinophils, mast cells, NK cells.

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7.  ATG5 promotes eosinopoiesis but inhibits eosinophil effector functions.

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Review 8.  Targeting autophagy in ischemic stroke: From molecular mechanisms to clinical therapeutics.

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Review 9.  Targeting autophagy in neurodegenerative diseases: From molecular mechanisms to clinical therapeutics.

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Review 10.  Epigenetic Treatment of Neurodegenerative Ophthalmic Disorders: An Eye Toward the Future.

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Journal:  Biores Open Access       Date:  2017-12-01
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