3.1.1.42: chlorogenate hydrolase
This is an abbreviated version!
For detailed information about chlorogenate hydrolase, go to the full flat file.
Word Map on EC 3.1.1.42
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3.1.1.42
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pulse-labeled
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cycloheximide
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35smethionine
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oligosaccharide
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actinomycin
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lipoprotein
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endosomes
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hepatocytes
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granule
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phospholipid
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chasing
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endoglycosidase
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autoradiography
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tunicamycin
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proteoglycans
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endocytosis
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n-linked
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apolipoproteins
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endocytic
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3hleucine
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brefeldin
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monensin
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virion
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prey
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chondroitin
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35s-labeled
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trans-golgi
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nonradioactive
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35ssulfate
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hunt
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philadelphia
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proinsulin
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fluorography
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high-mannose
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avidin
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precursor-product
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3hmannose
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prelabeled
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35smethionine-labeled
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endo-beta-n-acetylglucosaminidase
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3hglucosamine
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post-golgi
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fluid-phase
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complex-type
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chondroitinase
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actuarial
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castanospermine
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unassembled
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lysosomotropic
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gambling
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degradation
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food industry
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synthesis
- 3.1.1.42
-
pulse-labeled
- cycloheximide
-
35smethionine
- oligosaccharide
- actinomycin
- lipoprotein
-
endosomes
- hepatocytes
- granule
- phospholipid
-
chasing
-
endoglycosidase
-
autoradiography
- tunicamycin
- proteoglycans
-
endocytosis
-
n-linked
-
apolipoproteins
-
endocytic
-
3hleucine
- brefeldin
- monensin
- virion
-
prey
- chondroitin
-
35s-labeled
-
trans-golgi
-
nonradioactive
-
35ssulfate
-
hunt
-
philadelphia
- proinsulin
-
fluorography
-
high-mannose
- avidin
-
precursor-product
-
3hmannose
-
prelabeled
-
35smethionine-labeled
-
endo-beta-n-acetylglucosaminidase
-
3hglucosamine
-
post-golgi
-
fluid-phase
-
complex-type
- chondroitinase
-
actuarial
- castanospermine
-
unassembled
-
lysosomotropic
-
gambling
- degradation
- food industry
- synthesis
Reaction
Synonyms
CHase, chlE, chlorogenase, chlorogenate esterase, chlorogenate hydrolase, chlorogenic acid esterase, chlorogenic acid hydrolase, Cinnamoyl esterase, FAE3, hydrolase, chlorogenate, KX091144
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Application
Application on EC 3.1.1.42 - chlorogenate hydrolase
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degradation
food industry
the treatment of the wheat dough with the recombinant enzyme causes a softening. The enzyme does not increase the specific bread volume, but improves dough handling. The enzyme may be effective to improve the taste and digestibility of coffee beverages
synthesis
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development of a convenient one-pot procedure for conversion of 5-caffeoylquinic acid, from coffee beans, to 3-cyclohexylpropyl caffeate, which exhibits an antiproliferative effect toward various human tumor cells. The procedure comprises of two consecutive reactions by chlorogenate hydrolase from Aspergillus japonicus and Candida antarctica lipase B, and is performed using an ionic liquid, 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide, as the reaction solvent, method optimization, overview. The system provides 12.8 mM 3-cyclohexylpropyl caffeate from 15 mM 5-caffeoylquinic acid with conversion yield of 85.3%. The reaction scarcely proceeds in 1-butyl-3-methylimidazolium tetrafluoroborate, evaluation of several ionic liquids, overview
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use of yerba mate as source of chlorogenate and degradation by crude enzyme extract. Application to mass processing for a plant scale production of quinic acid
degradation
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use of yerba mate as source of chlorogenate and degradation by crude enzyme extract. Application to mass processing for a plant scale production of quinic acid
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