Characterization of a membrane-bound C-glucosyltransferase responsible for carminic acid biosynthesis in Dactylopius coccus Costa

Carminic acid, a glucosylated anthraquinone found in scale insects like Dactylopius coccus, has since ancient times been used as a red colorant in various applications. Here we show that a membrane-bound C-glucosyltransferase, isolated from D. coccus and designated DcUGT2, catalyzes the glucosylation of flavokermesic acid and kermesic acid into their respective C-glucosides dcII and carminic acid. DcUGT2 is predicted to be a type I integral endoplasmic reticulum (ER) membrane protein, containing a cleavable N-terminal signal peptide and a C-terminal transmembrane helix that anchors the protein... Mehr ...

Verfasser: Kannangara, Rubini
Siukstaite, Lina
Borch-Jensen, Jonas
Madsen, Bjorn
Kongstad, Kenneth T.
Stærk, Dan
Bennedsen, Mads
Okkels, Finn T.
Rasmussen, Silas Anselm
Larsen, Thomas Ostenfeld
Frandsen, Rasmus John Normand
Møller, Birger Lindberg
Dokumenttyp: Artikel
Erscheinungsdatum: 2017
Reihe/Periodikum: Kannangara , R , Siukstaite , L , Borch-Jensen , J , Madsen , B , Kongstad , K T , Stærk , D , Bennedsen , M , Okkels , F T , Rasmussen , S A , Larsen , T O , Frandsen , R J N & Møller , B L 2017 , ' Characterization of a membrane-bound C-glucosyltransferase responsible for carminic acid biosynthesis in Dactylopius coccus Costa ' , Nature Communications , vol. 8 , no. 1 , 1987 . https://doi.org/10.1038/s41467-017-02031-z
Schlagwörter: Journal Article / MULTIDISCIPLINARY / UDP-GLUCURONOSYLTRANSFERASE UGT1A6 / PERFORMANCE LIQUID-CHROMATOGRAPHY / ENDOPLASMIC-RETICULUM / PEDERIN BIOSYNTHESIS / PAEDERUS-SABAEUS / SIGNAL SEQUENCE / COCHINEAL DYE / IDENTIFICATION / HEMOCYTES / CHEMISTRY
Sprache: Englisch
Permalink: https://search.fid-benelux.de/Record/base-27641347
Datenquelle: BASE; Originalkatalog
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Link(s) : https://orbit.dtu.dk/en/publications/85b93fee-7364-4889-ac44-8d9c32489f14

Carminic acid, a glucosylated anthraquinone found in scale insects like Dactylopius coccus, has since ancient times been used as a red colorant in various applications. Here we show that a membrane-bound C-glucosyltransferase, isolated from D. coccus and designated DcUGT2, catalyzes the glucosylation of flavokermesic acid and kermesic acid into their respective C-glucosides dcII and carminic acid. DcUGT2 is predicted to be a type I integral endoplasmic reticulum (ER) membrane protein, containing a cleavable N-terminal signal peptide and a C-terminal transmembrane helix that anchors the protein to the ER, followed by a short cytoplasmic tail. DcUGT2 is found to be heavily glycosylated. Truncated DcUGT2 proteins synthesized in yeast indicate the presence of an internal ER-targeting signal. The cleavable N-terminal signal peptide is shown to be essential for the activity of DcUGT2, whereas the transmembrane helix/cytoplasmic domains, although important, are not crucial for its catalytic function.