Data extracted from this reference:
Cloned(Commentary)
gene CpXCP7, genotyping using the peptidase_C1 domain, phylogenetic analysis and tree, quantitative real-time PCR enzyme expression analysis
Carica papaya
Localization
extracellular
Carica papaya
Organism
Carica papaya
P05994
var. Zhonghuang
Purification (Commentary)
native enzyme from latex
Carica papaya
Source Tissue
fruit
green fruit skin has the highest enzyme content, ripening decreases the enzyme level
Carica papaya
latex
Papaya latex is usually harvested from fruit skin of green papaya fruits by mechanical wounding
Carica papaya
additional information
gene expression patterns of the papaya PLCP genes in different tissues are assessed by transcriptome sequencing and quantitative RT-PCR. Most of the papaya PLCP genes of subfamily III are expressed at high levels in leaf and green fruit tissues
Carica papaya
Synonyms
Papaya proteinase 4
UniProt
Carica papaya
Cloned(Commentary) (protein specific)
gene CpXCP7, genotyping using the peptidase_C1 domain, phylogenetic analysis and tree, quantitative real-time PCR enzyme expression analysis
Carica papaya
Localization (protein specific)
extracellular
Carica papaya
Purification (Commentary) (protein specific)
native enzyme from latex
Carica papaya
Source Tissue (protein specific)
fruit
green fruit skin has the highest enzyme content, ripening decreases the enzyme level
Carica papaya
latex
Papaya latex is usually harvested from fruit skin of green papaya fruits by mechanical wounding
Carica papaya
additional information
gene expression patterns of the papaya PLCP genes in different tissues are assessed by transcriptome sequencing and quantitative RT-PCR. Most of the papaya PLCP genes of subfamily III are expressed at high levels in leaf and green fruit tissues
Carica papaya
General Information
evolution
all four major papain-like cysteine proteases (PLCPs) purified from papaya latex, including papain, chymopapain, glycyl endopeptidase and caricain, are grouped into the lineage-specific expansion branch in the subfamily III of papain-like cysteine proteases (PLCPs). Tandem duplications play the dominant role in affecting copy number of PLCPs in plants. Significant variations in size of the PLCP subfamilies among species may reflect genetic adaptation of plant species to different environments. The lineage-specific expansion of papaya PLCPs of subfamily III might have been promoted by the continuous reciprocal selective effects of herbivore attack and plant defense. Phylogenetic analysis, conserved domain identification, gene duplication analysis, and chromosomal distribution of PLCPs, overview
Carica papaya
metabolism
papain-like cysteine proteases (PLCPs), a large group of cysteine proteases structurally related to papain, play important roles in plant development, senescence, and defense responses
Carica papaya
General Information (protein specific)
evolution
all four major papain-like cysteine proteases (PLCPs) purified from papaya latex, including papain, chymopapain, glycyl endopeptidase and caricain, are grouped into the lineage-specific expansion branch in the subfamily III of papain-like cysteine proteases (PLCPs). Tandem duplications play the dominant role in affecting copy number of PLCPs in plants. Significant variations in size of the PLCP subfamilies among species may reflect genetic adaptation of plant species to different environments. The lineage-specific expansion of papaya PLCPs of subfamily III might have been promoted by the continuous reciprocal selective effects of herbivore attack and plant defense. Phylogenetic analysis, conserved domain identification, gene duplication analysis, and chromosomal distribution of PLCPs, overview
Carica papaya
metabolism
papain-like cysteine proteases (PLCPs), a large group of cysteine proteases structurally related to papain, play important roles in plant development, senescence, and defense responses
Carica papaya
Other publictions for EC 3.4.22.25
753097
Liu
Papain-like cysteine protease ...
Carica papaya
BMC Genomics
19
26
2018
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733902
Karnjanapratum
Glycyl endopeptidase from papa ...
Carica papaya
Food Chem.
165
403-411
2014
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679571
Chaiwut
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Solid-to-solid peptide synthes ...
Carica papaya
Enzyme Microb. Technol.
40
954-960
2007
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667431
Huet
Structural characterization of ...
Carica papaya
Biochem. Biophys. Res. Commun.
341
620-626
2006
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668767
Buttle
-
Glycyl endopeptidase ...
Carica papaya
Handbook of Proteolytic Enzymes (Barrett, A.J., Rawlings, N.D., Woessner, J.F., eds)
2
1132-1134
2004
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652619
Azarkan
Fractionation and purification ...
Carica papaya
J. Chromatogr. B
790
229-238
2003
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Visal
The proregion of papaya protei ...
Carica papaya
FEBS Lett.
434
401-405
1998
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30148
Dekeyser
Kinetic constants for the hydr ...
Carica papaya
Arch. Biochem. Biophys.
320
375-379
1995
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30150
O'Hara
Crystal structure of glycyl en ...
Carica papaya
Biochemistry
34
13190-13195
1995
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30151
Thomas
The structural origins of the ...
Carica papaya
Biochem. J.
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1995
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30155
Taylor
Expression of the pro-regions ...
Carica papaya
Biochem. Soc. Trans.
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1995
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30146
Buttle
Glycyl endopeptidase ...
Carica papaya
Methods Enzymol.
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539-555
1994
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Thomas
Structure of chymopapain M the ...
Carica papaya
Biochem. J.
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Sumner
Factors effecting the thermost ...
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Buttle
Selective cleavage of glycyl b ...
Carica papaya
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Buttle
Interactions of papaya protein ...
Carica papaya
FEBS Lett.
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58-60
1990
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Topham
Three-dimensional structure an ...
Carica papaya
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Ritonja
Papaya proteinase IV amino aci ...
Carica papaya
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Buttle
Affinity purification of the n ...
Carica papaya
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30154
Goodenough
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Chromatographic and electropho ...
Carica papaya
Phytochemistry
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75-79
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30142
Polgar
Isolation of highly active pap ...
Carica papaya
Biochim. Biophys. Acta
658
262-269
1981
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