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Literature summary for 2.4.3.1 extracted from

  • Harduin-Lepers, A.; Mollicone, R.; Delannoy, P.; Oriol, R.
    The animal sialyltransferases and sialyltransferase-related genes: a phylogenetic approach (2005), Glycobiology, 15, 805-817.
    View publication on PubMed

Cloned(Commentary)

Cloned (Comment) Organism
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Rattus norvegicus
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Homo sapiens
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Bos taurus
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Pan troglodytes
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Mus musculus
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Gallus gallus
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Danio rerio
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Oryzias latipes
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Takifugu rubripes
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Xenopus tropicalis
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Drosophila pseudoobscura
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Drosophila melanogaster
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Drosophila yakuba
DNA and amino acid sequence analysis, detailed phylogenetic analysis of the ST6GalNAc family and the four subfamilies, sialyltransferases show a common genetic origin, by successive duplications of an ancestral gene, followed by divergent evolution, overview Anopheles gambiae

Localization

Localization Comment Organism GeneOntology No. Textmining
Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Rattus norvegicus 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Homo sapiens 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Bos taurus 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Pan troglodytes 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Mus musculus 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Gallus gallus 139
-
Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Danio rerio 139
-
Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Oryzias latipes 139
-
Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Takifugu rubripes 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Xenopus tropicalis 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Drosophila pseudoobscura 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Drosophila melanogaster 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Drosophila yakuba 139
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Golgi membrane the enzyme is a Golgi type II transmembrane glycosyltransferase Anopheles gambiae 139
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Organism

Organism UniProt Comment Textmining
Anopheles gambiae Q683N9 fragment
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Bos taurus A5D7T4 ST6GAL2, fragment
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Bos taurus O18974 ST6GAL1
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Danio rerio Q6KB61 ST6GAL1
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Danio rerio Q701R2 ST6GAL2, fragment
-
Drosophila melanogaster Q9GU23
-
-
Drosophila pseudoobscura Q683P0
-
-
Drosophila yakuba Q683P1
-
-
Gallus gallus Q701R0 ST6GAL2, fragment
-
Gallus gallus Q92182 ST6GAL1
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Homo sapiens P15907 ST6GAL1
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Homo sapiens Q96JF0 ST6GAL2
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Mus musculus Q64685 ST6GAL1
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Oryzias latipes Q5K027 ST6GAL2; medaka fish, Japanese ricefish
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Oryzias latipes Q5K028 ST6GAL1; medaka fish, Japanese ricefish
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Pan troglodytes Q701R4 ST6GAL2, fragment; chimpanzee
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Pan troglodytes Q701R5 ST6GAL1, fragment; chimpanzee
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Rattus norvegicus P13721 ST6GAL1
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Rattus norvegicus Q701R3 ST6GAL2, fragment
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Takifugu rubripes Q5QQ37 ST6GAL2, fragment; i.e. Takifugu rubripes, Japanese pufferfish
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Takifugu rubripes Q6KB62 ST6GAL1; i.e. Takifugu rubripes, Japanese pufferfish
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Xenopus tropicalis Q701R1 ST6GAL2, fragment; i.e. Silurana tropicalis, western clawed frog
-

Subunits

Subunits Comment Organism
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Rattus norvegicus
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Homo sapiens
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Bos taurus
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Pan troglodytes
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Mus musculus
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Gallus gallus
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Danio rerio
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Oryzias latipes
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Takifugu rubripes
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Xenopus tropicalis
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Drosophila pseudoobscura
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Drosophila melanogaster
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Drosophila yakuba
More the enzymes contain four conserved peptide motifs: L/large, S/small, motif III, and motif VS/very small Anopheles gambiae

Synonyms

Synonyms Comment Organism
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Rattus norvegicus
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Homo sapiens
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Bos taurus
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Pan troglodytes
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Mus musculus
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Gallus gallus
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Danio rerio
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Oryzias latipes
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Takifugu rubripes
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Xenopus tropicalis
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Drosophila pseudoobscura
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Drosophila melanogaster
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Drosophila yakuba
More ST6Gal I-IV subfamilies of the sialyltransferase family ST6Gal Anopheles gambiae
ST6Gal
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Rattus norvegicus
ST6Gal
-
Homo sapiens
ST6Gal
-
Bos taurus
ST6Gal
-
Pan troglodytes
ST6Gal
-
Mus musculus
ST6Gal
-
Gallus gallus
ST6Gal
-
Danio rerio
ST6Gal
-
Oryzias latipes
ST6Gal
-
Takifugu rubripes
ST6Gal
-
Xenopus tropicalis
ST6Gal
-
Drosophila pseudoobscura
ST6Gal
-
Drosophila melanogaster
ST6Gal
-
Drosophila yakuba
ST6Gal
-
Anopheles gambiae