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Vacuolar processing enzymes in the plant life cycle
by
Hara-Nishimura, Ikuko
, Tarnawska-Glatt, Katarzyna
, Yamada, Kenji
, Goto-Yamada, Shino
, Basak, Arpan Kumar
in
Angiospermae
/ Animals
/ Apoptosis
/ Asparagine
/ asparaginyl endopeptidase
/ Aspartic acid
/ Body organs
/ Cell death
/ cyclic peptide
/ cyclic peptides
/ Cysteine Endopeptidases
/ cysteine proteinases
/ cysteine‐type endopeptidase
/ Endopeptidases
/ Enzymes
/ evolution
/ Homology
/ Life cycle
/ Life Cycle Stages
/ Life cycles
/ Maturation
/ Organs
/ Peptides
/ Plant Proteins
/ Plant species
/ Plants
/ programmed cell death
/ programmed cell death (PCD)
/ Proteins
/ Proteolysis
/ seed storage protein
/ Specialization
/ Specificity
/ Storage organs
/ substrate specificity
/ Substrates
/ Tansley review
/ vacuolar processing enzyme (VPE)
/ vacuolar protein maturation
/ vacuole
/ Vacuoles
2020
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Vacuolar processing enzymes in the plant life cycle
by
Hara-Nishimura, Ikuko
, Tarnawska-Glatt, Katarzyna
, Yamada, Kenji
, Goto-Yamada, Shino
, Basak, Arpan Kumar
in
Angiospermae
/ Animals
/ Apoptosis
/ Asparagine
/ asparaginyl endopeptidase
/ Aspartic acid
/ Body organs
/ Cell death
/ cyclic peptide
/ cyclic peptides
/ Cysteine Endopeptidases
/ cysteine proteinases
/ cysteine‐type endopeptidase
/ Endopeptidases
/ Enzymes
/ evolution
/ Homology
/ Life cycle
/ Life Cycle Stages
/ Life cycles
/ Maturation
/ Organs
/ Peptides
/ Plant Proteins
/ Plant species
/ Plants
/ programmed cell death
/ programmed cell death (PCD)
/ Proteins
/ Proteolysis
/ seed storage protein
/ Specialization
/ Specificity
/ Storage organs
/ substrate specificity
/ Substrates
/ Tansley review
/ vacuolar processing enzyme (VPE)
/ vacuolar protein maturation
/ vacuole
/ Vacuoles
2020
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Vacuolar processing enzymes in the plant life cycle
by
Hara-Nishimura, Ikuko
, Tarnawska-Glatt, Katarzyna
, Yamada, Kenji
, Goto-Yamada, Shino
, Basak, Arpan Kumar
in
Angiospermae
/ Animals
/ Apoptosis
/ Asparagine
/ asparaginyl endopeptidase
/ Aspartic acid
/ Body organs
/ Cell death
/ cyclic peptide
/ cyclic peptides
/ Cysteine Endopeptidases
/ cysteine proteinases
/ cysteine‐type endopeptidase
/ Endopeptidases
/ Enzymes
/ evolution
/ Homology
/ Life cycle
/ Life Cycle Stages
/ Life cycles
/ Maturation
/ Organs
/ Peptides
/ Plant Proteins
/ Plant species
/ Plants
/ programmed cell death
/ programmed cell death (PCD)
/ Proteins
/ Proteolysis
/ seed storage protein
/ Specialization
/ Specificity
/ Storage organs
/ substrate specificity
/ Substrates
/ Tansley review
/ vacuolar processing enzyme (VPE)
/ vacuolar protein maturation
/ vacuole
/ Vacuoles
2020
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Journal Article
Vacuolar processing enzymes in the plant life cycle
2020
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Overview
Vacuolar processing enzyme (VPE) is a cysteine-type endopeptidase that has a substrate-specificity for asparagine or aspartic acid residues and cleaves peptide bonds at their carboxylterminal side. Various vacuolar proteins are synthesized as larger proprotein precursors, and VPE is an important initiator of maturation and activation of these proteins. It mediates programmed cell death (PCD) by provoking vacuolar rupture and initiating the proteolytic cascade leading to PCD. Vacuolar processing enzyme also possesses a peptide ligation activity, which is responsible for producing cyclic peptides in several plant species. These unique functions of VPE support developmental and environmental responses in plants. The number of VPE homologues is higher in angiosperm species, indicating that there has been differentiation and specialization of VPE function over the course of evolution. Angiosperm VPEs are separated into two major types: the γ-type VPEs, which are expressed mainly in vegetative organs, and the β-type VPEs, whose expression occurs mainly in storage organs; in eudicots, the δ-type VPEs are further separated within γ-type VPEs. This review also considers the importance of processing and peptide ligation by VPE in vacuolar protein maturation.
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