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The lowdown on breakdown: Open questions in plant proteolysis
Nancy A. Eckardt
*
,
Tamar Avin-Wittenberg
, Diane C. Bassham
, Poyu Chen
, Qian Chen
, Jun Fang
, Pascal Genschik
, Abi S. Ghifari
, Angelica M. Guercio
, Daniel J. Gibbs
, Maren Heese
, R. Paul Jarvis
, Simon Michaeli
, Monika W. Murcha
, Sergey Mursalimov
, Sandra Noir
, Malathy Palayam
, Bruno Peixoto
, Pedro L. Rodriguez
, Andreas Schaller
Arp Schnittger, Giovanna Serino, Nitzan Shabek, Annick Stintzi, Frederica L. Theodoulou, Suayib Üstün, Klaas J. van Wijk, Ning Wei, Qi Xie, Feifei Yu, Hongtao Zhang
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*
Corresponding author for this work
Department of Plant and Environmental Sciences (Natural Sciences)
Research output
:
Contribution to journal
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Review article
›
peer-review
16
Scopus citations
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Keyphrases
Proteolysis
100%
Chloroplast
50%
N-degron Pathway
50%
Amino Acids
25%
Protein Degradation
25%
Peptidase
25%
Metabolic Signaling
25%
Drought Tolerance
25%
Plant Response
25%
Living Organisms
25%
DNA Damage Response
25%
Degrons
25%
Endoplasmic Reticulum-associated Degradation
25%
Post-translational
25%
Mitochondrial Function
25%
Pathway Signaling
25%
Sugar Metabolism
25%
Environmental Signals
25%
Abscisic Acid Signaling
25%
Photomorphogenesis
25%
Proteolytic Processing
25%
Functional Diversification
25%
Developmental Signaling Pathways
25%
Protein Acetylation
25%
Strigolactone Receptors
25%
Acid Recycling
25%
Growth-defense Trade-off
25%
Biochemistry, Genetics and Molecular Biology
Proteolysis
100%
N-Terminus
50%
Chloroplast
50%
Amino Acids
25%
Metabolic Pathway
25%
Cell Cycle
25%
Protein Catabolism
25%
Plant Response
25%
Drought Tolerance
25%
DNA Damage Response
25%
Acetylation
25%
Endoplasmic-Reticulum-Associated Protein Degradation
25%
Growth, Development and Aging
25%
Peptidase
25%
Photomorphogenesis
25%
Proteolytic Processing
25%
Arginine
25%
Abscisic Acid
25%
Immunology and Microbiology
Protein Degradation
100%
Amino Terminal Sequence
40%
Chloroplast
40%
Drought Tolerance
20%
Cell Cycle
20%
DNA Damage Response
20%
Growth, Development and Aging
20%
Acetylation
20%
Proteolytic Processing
20%
Photomorphogenesis
20%
Endoplasmic Reticulum Associated Degradation
20%
Amino Acid
20%