Strain-Promoted Alkyne-Azide Cycloadditions (SPAAC) Reveal New Features of Glycoconjugate Biosynthesis
Тип публикации: Journal Article
Дата публикации: 2011-06-09
scimago Q1
wos Q3
БС2
SJR: 0.844
CiteScore: 5.2
Impact factor: 2.8
ISSN: 14394227, 14397633
PubMed ID:
21661087
Organic Chemistry
Biochemistry
Molecular Biology
Molecular Medicine
Краткое описание
We have shown that 4-dibenzocyclooctynol (DIBO), which can easily be obtained by a streamlined synthesis approach, reacts exceptionally fast in the absence of a Cu(I) catalyst with azido-containing compounds to give stable triazoles. Chemical modifications of DIBO, such as oxidation of the alcohol to a ketone, increased the rate of strain promoted azide-alkyne cycloadditions (SPAAC). Installment of a ketone or oxime in the cyclooctyne ring resulted in fluorescent active compounds whereas this property was absent in the corresponding cycloaddition adducts; this provides the first example of a metal-free alkyne-azide fluoro-switch click reaction. The alcohol or ketone functions of the cyclooctynes offer a chemical handle to install a variety of different tags, and thereby facilitate biological studies. It was found that DIBO modified with biotin combined with metabolic labeling with an azido-containing monosaccharide can determine relative quantities of sialic acid of living cells that have defects in glycosylation (Lec CHO cells). A combined use of metabolic labeling/SPAAC and lectin staining of cells that have defects in the conserved oligomeric Golgi (COG) complex revealed that such defects have a greater impact on O-glycan sialylation than galactosylation, whereas sialylation and galactosylation of N-glycans was similarly impacted. These results highlight the fact that the fidelity of Golgi trafficking is a critical parameter for the types of oligosaccharides being biosynthesized by a cell. Furthermore, by modulating the quantity of biosynthesized sugar nucleotide, cells might have a means to selectively alter specific glycan structures of glycoproteins.
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Mbua N. E. et al. Strain-Promoted Alkyne-Azide Cycloadditions (SPAAC) Reveal New Features of Glycoconjugate Biosynthesis // ChemBioChem. 2011. Vol. 12. No. 12. pp. 1912-1921.
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Mbua N. E., Guo J., Wolfert M., Steet R., Boons G. Strain-Promoted Alkyne-Azide Cycloadditions (SPAAC) Reveal New Features of Glycoconjugate Biosynthesis // ChemBioChem. 2011. Vol. 12. No. 12. pp. 1912-1921.
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TY - JOUR
DO - 10.1002/cbic.201100117
UR - https://doi.org/10.1002/cbic.201100117
TI - Strain-Promoted Alkyne-Azide Cycloadditions (SPAAC) Reveal New Features of Glycoconjugate Biosynthesis
T2 - ChemBioChem
AU - Mbua, Ngalle Eric
AU - Guo, Jun
AU - Wolfert, Margreet
AU - Steet, Richard
AU - Boons, Geert-Jan
PY - 2011
DA - 2011/06/09
PB - Wiley
SP - 1912-1921
IS - 12
VL - 12
PMID - 21661087
SN - 1439-4227
SN - 1439-7633
ER -
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BibTex (до 50 авторов)
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@article{2011_Mbua,
author = {Ngalle Eric Mbua and Jun Guo and Margreet Wolfert and Richard Steet and Geert-Jan Boons},
title = {Strain-Promoted Alkyne-Azide Cycloadditions (SPAAC) Reveal New Features of Glycoconjugate Biosynthesis},
journal = {ChemBioChem},
year = {2011},
volume = {12},
publisher = {Wiley},
month = {jun},
url = {https://doi.org/10.1002/cbic.201100117},
number = {12},
pages = {1912--1921},
doi = {10.1002/cbic.201100117}
}
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MLA
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Mbua, Ngalle Eric, et al. “Strain-Promoted Alkyne-Azide Cycloadditions (SPAAC) Reveal New Features of Glycoconjugate Biosynthesis.” ChemBioChem, vol. 12, no. 12, Jun. 2011, pp. 1912-1921. https://doi.org/10.1002/cbic.201100117.