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Literature summary for 2.5.1.117 extracted from

  • Sadre, R.; Gruber, J.; Frentzen, M.
    Characterization of homogentisate prenyltransferases involved in plastoquinone-9 and tocochromanol biosynthesis (2006), FEBS Lett., 580, 5357-5362.
    View publication on PubMed

Cloned(Commentary)

Cloned (Comment) Organism
expression in Escherichia coli Chlamydomonas reinhardtii
expression in Escherichia coli Arabidopsis thaliana

Localization

Localization Comment Organism GeneOntology No. Textmining

Metals/Ions

Metals/Ions Comment Organism Structure
Mg2+ required Chlamydomonas reinhardtii
Mg2+ required Arabidopsis thaliana

Natural Substrates/ Products (Substrates)

Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
all-trans-nonaprenyl diphosphate + homogentisate Chlamydomonas reinhardtii the enzyme is involved in biosynthesis pathway of plastoquinol-9 diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2
-
?
all-trans-nonaprenyl diphosphate + homogentisate Arabidopsis thaliana the enzyme is involved in biosynthesis pathway of plastoquinol-9 diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2
-
?
all-trans-nonaprenyl diphosphate + homogentisate Chlamydomonas reinhardtii CC-1690 the enzyme is involved in biosynthesis pathway of plastoquinol-9 diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2
-
?

Organism

Organism UniProt Comment Textmining
Arabidopsis thaliana Q9SF04
-
-
Chlamydomonas reinhardtii A1JHN0
-
-
Chlamydomonas reinhardtii CC-1690 A1JHN0
-
-

Substrates and Products (Substrate)

Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
all-trans-nonaprenyl diphosphate + homogentisate the enzyme is involved in biosynthesis pathway of plastoquinol-9 Chlamydomonas reinhardtii diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2
-
?
all-trans-nonaprenyl diphosphate + homogentisate the enzyme is involved in biosynthesis pathway of plastoquinol-9 Arabidopsis thaliana diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2
-
?
all-trans-nonaprenyl diphosphate + homogentisate highest activities with solanesyl diphosphate, hardly active with phytyl diphosphat Arabidopsis thaliana diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol i.e. 2-methyl-6-solanesylbenzene-1,4-diol ?
all-trans-nonaprenyl diphosphate + homogentisate highest activity with solanesyl diphosphate, hardly active with phytyl diphosphat Chlamydomonas reinhardtii diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol i.e. 2-methyl-6-solanesylbenzene-1,4-diol ?
all-trans-nonaprenyl diphosphate + homogentisate the enzyme is involved in biosynthesis pathway of plastoquinol-9 Chlamydomonas reinhardtii CC-1690 diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2
-
?
all-trans-nonaprenyl diphosphate + homogentisate highest activity with solanesyl diphosphate, hardly active with phytyl diphosphat Chlamydomonas reinhardtii CC-1690 diphosphate + 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol + CO2 2-methyl-6-all-trans-nonaprenylbenzene-1,4-diol i.e. 2-methyl-6-solanesylbenzene-1,4-diol ?

Synonyms

Synonyms Comment Organism
At3g11950
-
Arabidopsis thaliana
AtHST
-
Arabidopsis thaliana
CrHST
-
Chlamydomonas reinhardtii
HST
-
Chlamydomonas reinhardtii
PDS2
-
Chlamydomonas reinhardtii

Temperature Optimum [°C]

Temperature Optimum [°C] Temperature Optimum Maximum [°C] Comment Organism
28
-
assay at Chlamydomonas reinhardtii
28
-
assay at Arabidopsis thaliana

pH Optimum

pH Optimum Minimum pH Optimum Maximum Comment Organism
8.5
-
assay at Chlamydomonas reinhardtii
8.5
-
assay at Arabidopsis thaliana

General Information

General Information Comment Organism
physiological function the enzyme is involved in biosynthesis pathway of plastoquinol-9 Chlamydomonas reinhardtii
physiological function the enzyme is involved in biosynthesis pathway of plastoquinol-9. Overexpression of At3g11950 in Arabidopsis thaliana, however, suggests that the solanesyltransferase can affect tocopherol biosynthesis as well Arabidopsis thaliana