Organisms | Evidence |
---|---|
Mus musculus (house mouse) | |
Rattus norvegicus (Norway rat) | |
Homo sapiens (human) | |
Drosophila melanogaster (fruit fly) | |
Streptococcus pneumoniae |
Gene Symbol | Donor | Acceptor | Reducing terminal(Acceptor) | Product | Reducing terminal(Product) | Reference |
---|---|---|---|---|---|---|
B4GALT5 | (not applicable) |
|
[beta]-S-pNP |
|
[beta]-S-pNP | |
B3GALT2 | UDP-Gal |
|
Lemieux |
|
Lemieux | |
B4GALT2 | UDP-Gal |
|
Benzyl-[beta] |
|
Benzyl-[beta] | |
B4GALT1 | UDP-Gal |
|
R |
|
R | |
B3GALT5 | UDP-Gal |
|
R |
|
R |
Gene Symbol | Donor | Acceptor | Reducing terminal(Acceptor) | Product | Reducing terminal(Product) | Reference |
---|---|---|---|---|---|---|
B4GALT5 | (not applicable) |
|
[beta]-S-pNP |
|
[beta]-S-pNP | |
B4GALT3 | UDP-Gal |
|
Benzyl-[beta] |
|
Benzyl-[beta] | |
B4GALT4 | UDP-Gal |
|
[beta]-1-Benzl |
|
[beta]-1-Benzl | |
B3GALT2 | UDP-Gal |
|
Lemieux |
|
Lemieux | |
B4GALT4 | UDP-Gal |
|
[beta]-1-4-methyl-umbelliferyl |
|
[beta]-1-4-methyl-umbelliferyl |
Pathway Name | Organism |
---|---|
Ficolins bind to repetitive carbohydrate structures on the target cell surface | Rattus norvegicus |
Initial triggering of complement | Sus scrofa |
Initial triggering of complement | Xenopus tropicalis |
Initial triggering of complement | Gallus gallus |
Initial triggering of complement | Homo sapiens |
Initial triggering of complement | Bos taurus |
Initial triggering of complement | Mus musculus |
Initial triggering of complement | Rattus norvegicus |
Initial triggering of complement | Canis familiaris |
Lectin pathway of complement activation | Sus scrofa |
RES 1b:b-dglc-HEX-1:5 2s:n-acetyl LIN 1:1d(2+1)2n
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39298584 | Large library docking identifies positive allosteric modulators of the calcium-sensing receptor | Liu F | 2024 Sep 20 |
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37662363 | The resting and ligand-bound states of the membrane-embedded human T-cell receptor–CD3 complex | Notti RQ | 2024 Sep 20 |
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39302247 | Systematic Evaluation of Affinity Enrichment Methods for O-GlcNAc Proteomics | Hou C | 2024 Sep 20 |
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39300054 | Association between O-GlcNAc levels and platelet function in obese insulin-resistant subjects | Hernández-Huerta MT | 2024 Sep 20 |
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39291732 | O‐<scp>GlcNAc</scp> modification of <scp>HSP27</scp> alters its protein interactions and promotes refolding of proteins through the <scp>BAG3</scp>/<scp>HSP70</scp> co‐chaperone | Javed A | 2024 Sep 18 |
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39292388 | Genome-based taxonomy and functional prediction of Sphingomonas fuzhouensis sp. nov. and Massilia phyllosphaerae sp. nov. isolated from Pennisetum sp. with plant growth-promoting potential | Yao L | 2024 Sep 18 |
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39287665 | A Bioorthogonal Precision Tool for Human N-Acetylglucosaminyltransferase V | Liu Y | 2024 Sep 17 |
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38880081 | Intermediate open state of CD4-bound HIV-1 env heterotrimers in asia CRFs | Li D | 2024 Sep 17 |
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39269642 | Yunchengibacter salinarum gen. nov., sp. nov., a novel bacterium of the family Kordiimonadaceae isolated from sediment in Yuncheng salt lake | Guo HR | 2024 Sep 13 |
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J Biol Chem | 2010 Dec 3 | 20926386 |
Dynamic O-glycosylation of nuclear and cytosolic proteins: further characterization of the nucleocytoplasmic beta-N-acetylglucosaminidase, O-GlcNAcase. |
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J Biol Chem | 2002 Jan 18 | 11788610 |
Increased N-acetyl-beta-glucosaminidase activity in primary breast carcinomas corresponds to a decrease in N-acetylglucosamine containing proteins. |
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|
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Supported by JST NBDC Grant Number JPMJND2204
Partly supported by NIH Common Fund Grant #1U01GM125267-01
This work is licensed under Creative Commons Attribution 4.0 International
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