Organisms | Evidence |
---|---|
Ovis aries (sheep) | |
Cricetulus griseus (Chinese hamster) | |
Mus musculus (house mouse) | |
Bos taurus (domestic cattle) | |
Escherichia coli |
Gene Symbol | Donor | Acceptor | Reducing terminal(Acceptor) | Product | Reducing terminal(Product) | Reference |
---|---|---|---|---|---|---|
C1GALT1 | (not applicable) |
|
Ser/Thr |
|
Ser/Thr | |
ST6GALNAC1 | CMP-Neu5Ac |
|
Ser/Thr |
|
Ser/Thr | |
ST6GALNAC1 | CMP-Neu5Ac |
|
O-glycan Synthesis |
|
O-glycan Synthesis | |
B3GNT6 | UDP-GlcNAc |
|
[alpha]-pNP |
|
[alpha]-pNP |
Gene Symbol | Donor | Acceptor | Reducing terminal(Acceptor) | Product | Reducing terminal(Product) | Reference |
---|---|---|---|---|---|---|
C1GALT1 | UDP-Gal |
|
PSGL-1(EYEYLDYDFLPETEPPEM) |
|
PSGL-1(EYEYLDYDFLPETEPPEM) | |
C1GALT1 | UDP-Gal |
|
O-glycan Synthesis |
|
O-glycan Synthesis | |
B3GNT6 | UDP-GlcNAc |
|
O-glycan Synthesis |
|
O-glycan Synthesis | |
B3GNT6 | UDP-GlcNAc |
|
[alpha]-pNP |
|
[alpha]-pNP |
Gene Symbol | Donor | Acceptor | Reducing terminal(Acceptor) | Reference |
---|---|---|---|---|
ST6GALNAC3 | CMP-Neu5Ac |
|
Ser/Thr | |
ST6GAL2 | CMP-Neu5Ac |
|
para-nitrophenol | |
ST6GALNAC2 | CMP-Neu5Ac |
|
benzyl | |
ST6GALNAC1 | CMP-Neu5Ac |
|
[alpha]-Bz | |
ST6GALNAC2 | CMP-Neu5Ac |
|
Ser/Thr |
Pathway Name | Organism |
---|---|
E.coli O101 | Escherichia coli |
E.coli O103 | Escherichia coli |
E.coli O107 | Escherichia coli |
E.coli O112ab | Escherichia coli |
E.coli O112ac | Escherichia coli |
E.coli O116 | Escherichia coli |
E.coli O117 | Escherichia coli |
E.coli O125ab | Escherichia coli |
E.coli O127 | Escherichia coli |
E.coli O128ab-H27 | Escherichia coli |
RES 1b:a-dgal-HEX-1:5 2s:n-acetyl LIN 1:1d(2+1)2n
PubMed ID | Title | First Author | Publication Date | Source |
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25142839 | Goblet Cells and Mucus Types in the Digestive Intestine and Respiratory Intestine in Bronze Corydoras (Callichthyidae: Teleostei) | Leknes IL | 2014 Aug 21 |
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24816108 | Insights into the binding specificity and catalytic mechanism ofN-acetylhexosamine 1-phosphate kinases through multiple reaction complexes | Wang KC | 2014 Apr 30 |
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25117234 | Equilibrium Dialysis Using Chromophoric Sugar Derivatives | Hatakeyama T | 2014 |
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23987472 | Inhibition of Mucin-Type O-Glycosylation through Metabolic Processing and Incorporation of N-Thioglycolyl-<scp>d</scp>-galactosamine Peracetate (Ac5GalNTGc) | Agarwal K | 2013 Sep 16 |
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23993335 | Incorporation of glycosylated amino acid into protein by an in vitro translation system | Matsubara T | 2013 Oct 15 |
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24147780 | N-Acetylgalactosamino Dendrons as Clearing Agents to Enhance Liver Targeting of Model Antibody-Fusion Protein | Yoo B | 2013 Nov 18 |
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24128043 | Structural and Biochemical Characterization of a Bifunctional Ketoisomerase/N-Acetyltransferase from Shewanella denitrificans | Chantigian DP | 2013 Nov 04 |
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23642228 | Imaging Cell Surface Glycosylation in Vivo Using “Double Click” Chemistry | Neves AA | 2013 May 16 |
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23652482 | Metal ions in sugar binding, sugar specificity and structural stability of Spatholobus parviflorus seed lectin | Abhilash J | 2013 May 08 |
|
23634833 | Genetic analysis of the roles of agaA, agaI, and agaS genes in the N-acetyl-D-galactosamine and D-galactosamine catabolic pathways in Escherichia coli strains O157:H7 and C | Hu Z | 2013 May 01 |
|
Title | Authors | Source | Publication Date | PubMed ID |
---|---|---|---|---|
Tn-syndrome. |
|
Biochim Biophys Acta | 1999 Oct 8 | 10571017 |
Application of chemically desialylated and degalactosylated human glycophorin for induction and characterization of anti-Tn monoclonal antibodies. |
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Glycoconj J | 1992 Jun | 1422133 |
Specificity of Amaranthus leucocarpus lectin. |
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Glycoconj J | 1992 Aug | 1422141 |
Blood group Tn-active macromolecules from human carcinomas and erythrocytes: characterization of and specific reactivity with mono- and poly-clonal anti-Tn antibodies induced by various immunogens. |
|
Carbohydr Res | 1988 Jul 15 | 3056614 |
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Supported by JST NBDC Grant Number JPMJND2204
Partly supported by NIH Common Fund Grant #1U01GM125267-01
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