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Limited and digestive proteolysis
by
Elena A. Minina
, Panagiotis N. Moschou
, Peter V. Bozhkov
in
Anatomical structures
/ Apoptosis
/ Autophagy
/ autophagy‐related (ATG) proteins
/ Biochemistry and Molecular Biology
/ Biodegradation
/ Biokemi och molekylärbiologi
/ Cell Biology
/ Cellbiologi
/ Crosstalk
/ Degradation
/ Evolution, Molecular
/ Evolutionary conservation
/ limited proteolysis
/ Mammals
/ Models, Biological
/ pexophagy
/ Phagocytosis
/ Phosphorylation
/ Polypeptides
/ proteases
/ Proteasome Endopeptidase Complex - metabolism
/ Proteasomes
/ protein degradation
/ proteinases
/ Proteins
/ Proteolysis
/ proteophagy
/ Specificity
/ Substrates
/ Tansley insight
/ Ubiquitin
/ Ubiquitin - metabolism
/ ubiquitin code
/ ubiquitin–proteasome system (UPS)
2017
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Limited and digestive proteolysis
by
Elena A. Minina
, Panagiotis N. Moschou
, Peter V. Bozhkov
in
Anatomical structures
/ Apoptosis
/ Autophagy
/ autophagy‐related (ATG) proteins
/ Biochemistry and Molecular Biology
/ Biodegradation
/ Biokemi och molekylärbiologi
/ Cell Biology
/ Cellbiologi
/ Crosstalk
/ Degradation
/ Evolution, Molecular
/ Evolutionary conservation
/ limited proteolysis
/ Mammals
/ Models, Biological
/ pexophagy
/ Phagocytosis
/ Phosphorylation
/ Polypeptides
/ proteases
/ Proteasome Endopeptidase Complex - metabolism
/ Proteasomes
/ protein degradation
/ proteinases
/ Proteins
/ Proteolysis
/ proteophagy
/ Specificity
/ Substrates
/ Tansley insight
/ Ubiquitin
/ Ubiquitin - metabolism
/ ubiquitin code
/ ubiquitin–proteasome system (UPS)
2017
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Limited and digestive proteolysis
by
Elena A. Minina
, Panagiotis N. Moschou
, Peter V. Bozhkov
in
Anatomical structures
/ Apoptosis
/ Autophagy
/ autophagy‐related (ATG) proteins
/ Biochemistry and Molecular Biology
/ Biodegradation
/ Biokemi och molekylärbiologi
/ Cell Biology
/ Cellbiologi
/ Crosstalk
/ Degradation
/ Evolution, Molecular
/ Evolutionary conservation
/ limited proteolysis
/ Mammals
/ Models, Biological
/ pexophagy
/ Phagocytosis
/ Phosphorylation
/ Polypeptides
/ proteases
/ Proteasome Endopeptidase Complex - metabolism
/ Proteasomes
/ protein degradation
/ proteinases
/ Proteins
/ Proteolysis
/ proteophagy
/ Specificity
/ Substrates
/ Tansley insight
/ Ubiquitin
/ Ubiquitin - metabolism
/ ubiquitin code
/ ubiquitin–proteasome system (UPS)
2017
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Journal Article
Limited and digestive proteolysis
2017
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Overview
Proteases can either digest target proteins or perform the so-called ‘limited proteolysis’ by cleaving polypeptide chains at specific site(s). Autophagy and the ubiquitin–proteasome system (UPS) are two main mechanisms carrying out digestive proteolysis. While the net outcome of digestive proteolysis is the loss of function of protein substrates, limited proteolysis can additionally lead to gain or switch of function. Recent evidence of crosstalk between autophagy, UPS and limited proteolysis indicates that these pathways are parts of the same proteolytic nexus. Here, we focus on three emerging themes within this area: limited proteolysis as a mechanism modulating autophagy; interplay between autophagy and UPS, including autophagic degradation of proteasomes (proteophagy); and specificity of protein degradation during bulk autophagy.
Publisher
New Phytologist Trust,Wiley Subscription Services, Inc
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