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Autophagy during viral infection - a double-edged sword

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TLDR
This Review focuses on the key regulatory steps during viral infection in which autophagy is involved and discusses the specific molecular mechanisms that diverse viruses use to repurposeautophagy for their life cycle and pathogenesis.
Abstract
Autophagy is a powerful tool that host cells use to defend against viral infection. Double-membrane vesicles, termed autophagosomes, deliver trapped viral cargo to the lysosome for degradation. Specifically, autophagy initiates an innate immune response by cooperating with pattern recognition receptor signalling to induce interferon production. It also selectively degrades immune components associated with viral particles. Following degradation, autophagy coordinates adaptive immunity by delivering virus-derived antigens for presentation to T lymphocytes. However, in an ongoing evolutionary arms race, viruses have acquired the potent ability to hijack and subvert autophagy for their benefit. In this Review, we focus on the key regulatory steps during viral infection in which autophagy is involved and discuss the specific molecular mechanisms that diverse viruses use to repurpose autophagy for their life cycle and pathogenesis.

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Autophagy and autophagy-related proteins in cancer

TL;DR: Regulation of autophagy can be used as effective interventional strategies for cancer therapy and contributes to the survival and growth of the established tumors and promotes aggressiveness of the cancers by facilitating metastasis.
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Histopathology and ultrastructural findings of fatal COVID-19 infections in Washington State: a case series

TL;DR: In this paper, the authors provide a clinicopathological report of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) cases by documenting histopathological changes and evidence of SARS CoV2 tissue tropism.
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Autophagy-Independent Functions of the Autophagy Machinery

TL;DR: Emerging data on the non-autophagic functions of autophagy-relevant proteins is discussed and it is suggested that most, if not all, components of the molecular machinery for Autophagy also mediate autophagic-independent functions.
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Autophagy in major human diseases

Daniel J. Klionsky, +71 more
- 01 Oct 2021 - 
TL;DR: In this paper, preclinical data linking autophagy dysfunction to the pathogenesis of major human disorders including cancer as well as cardiovascular, neurodegenerative, metabolic, pulmonary, renal, infectious, musculoskeletal, and ocular disorders.
References
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Journal ArticleDOI

Autophagy in the Pathogenesis of Disease

TL;DR: This Review summarizes recent advances in understanding the physiological functions of autophagy and its possible roles in the causation and prevention of human diseases.
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Bcl-2 antiapoptotic proteins inhibit Beclin 1-dependent autophagy.

TL;DR: Bcl-2 not only functions as an antiapoptotic protein, but also as an antiautophagy protein via its inhibitory interaction with Beclin 1, which may help maintain autophagy at levels that are compatible with cell survival, rather than cell death.
Journal ArticleDOI

Cyclic GMP-AMP Synthase is a Cytosolic DNA Sensor that Activates the Type-I Interferon Pathway

TL;DR: Results indicate that cGAS is a cytosolic DNA sensor that induces interferons by producing the second messenger cGAMP, which belongs to the nucleotidyltransferase family.
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Autophagy regulates lipid metabolism

TL;DR: A previously unknown function for autophagy in regulating intracellular lipid stores (macrolipophagy) is identified that could have important implications for human diseases with lipid over-accumulation such as those that comprise the metabolic syndrome.
Journal ArticleDOI

Autophagy in immunity and inflammation

TL;DR: A crucial role is revealed for the autophagy pathway and proteins in immunity and inflammation, and they balance the beneficial and detrimental effects of immunity andinflammation, and thereby may protect against infectious, autoimmune and inflammatory diseases.
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