2.7.1.30: glycerol kinase
This is an abbreviated version!
For detailed information about glycerol kinase, go to the full flat file.
Word Map on EC 2.7.1.30
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2.7.1.30
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glycerol-3-phosphate
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triglyceride
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adrenal
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hypoplasia
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dystrophy
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muscular
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adipose
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3-phosphate
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duchenne
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lipase
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phosphoenolpyruvate
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hexokinase
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x-linked
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dihydroxyacetone
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contiguous
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adipocytes
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triacylglycerols
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carboxykinase
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congenita
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gluconeogenesis
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glycerophosphate
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lipolysis
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hpr
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iiaglc
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1,6-bisphosphate
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hypogonadism
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co-immobilized
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phosphocarrier
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glyceroneogenesis
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hypogonadotropic
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glycosomes
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dissimilation
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triolein
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1,3-propanediol
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glucose-specific
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aquaglyceroporins
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d-glyceraldehyde
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phosphoenolpyruvate:sugar
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dhap
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phosphoenolpyruvate-dependent
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sn-glycerol-3-phosphate
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sn-glycerol
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drug development
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diagnostics
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synthesis
- 2.7.1.30
- glycerol-3-phosphate
- triglyceride
- adrenal
- hypoplasia
- dystrophy
- muscular
- adipose
- 3-phosphate
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duchenne
- lipase
- phosphoenolpyruvate
- hexokinase
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x-linked
- dihydroxyacetone
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contiguous
- adipocytes
- triacylglycerols
-
carboxykinase
- congenita
-
gluconeogenesis
- glycerophosphate
-
lipolysis
- hpr
- iiaglc
- 1,6-bisphosphate
- hypogonadism
-
co-immobilized
-
phosphocarrier
-
glyceroneogenesis
-
hypogonadotropic
- glycosomes
-
dissimilation
- triolein
- 1,3-propanediol
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glucose-specific
-
aquaglyceroporins
- d-glyceraldehyde
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phosphoenolpyruvate:sugar
- dhap
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phosphoenolpyruvate-dependent
- sn-glycerol-3-phosphate
- sn-glycerol
- drug development
- diagnostics
- synthesis
Reaction
Synonyms
AFUB_068560, ASTP
ECTree
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Organism
Organism on EC 2.7.1.30 - glycerol kinase
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there are five glycerol kinase-like genes in Drosophila melanogaster. The locus CG18374, located at 61B2, is the closest homolog to the X-linked glycosyl kinase gene in Homo sapiens, sharing 53% identity. Another close homolog CG7995 (located at 62B1) shares 48% homology to the human glycerol kinase. Three other loci CG1271 at 63A3, CG1216 at 61B2, and CG8298 at 48D5 do not share the same degree of homology. Most key functional residues are missing in CG1216 suggesting it has no glycerol kinase activity.; there are five glycerol kinase-like genes in Drosophila melanogaster.
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glycerol kinase from Cellulomonas sp. is used to develop a bisensor based on flow calorimetry for quantitative analysis of glycerol during bioconversion process. Thermomeric glycerol sensor employs flow calorimeter equipped with a column packed with immobilized glycerol kinase. The glycerol kinase from Escherichia coli is able to detect glycerol in samples, but the linearity range and sensitibity are rather low and the calibration line does not pass through the origin of calibration dependence. The enzyme from Cellulomonas sp. provides a similar trend but significantly better results. The immobilized enzyme stability is excellent. The immobilized enzyme column is stored at 4°C. It can do 1 month of total operation time at 30°C with no significant loss of sensitivity. No interference with 1,3-propanediol and fermentation medium is observable.
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glycerol kinase from Escherichia coli is tested to develop a bisensor based on flow calorimetry for quantitative analysis of glycerol during bioconversion process. Thermomeric glycerol sensor employs flow calorimeter equipped with a column packed with immobilized glycerol kinase. The glycerol kinase from Escherichia coli is able to detect glycerol in samples, but the linearity range and sensitibity are rather low and the calibration line does not pass through the origin of calibration dependence, so that the Escherichia coli enzyme is not used.
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B6D2F1 (C57BL/6 × DBA2) mice or ICR mice, and B6D2-Tg(CAG/ Su9-DsRed2, Acr3-EGFP)RBGS002Osb (RBGS, Red Body Green Sperm) mice
UniProt
Long-Evans Tokushima Otsuka, Otsuka Long-Evans Tokushima Fatty and rosiglitazone-treated Otsuka Long-Evans Tokushima Fatty rats, all male and 4 weeks old.
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