Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2024 Aug 22;5(10):1002-1009.
doi: 10.1039/d4cb00093e. Online ahead of print.

Expanding the repertoire of GalNAc analogues for cell-specific bioorthogonal tagging of glycoproteins

Affiliations

Expanding the repertoire of GalNAc analogues for cell-specific bioorthogonal tagging of glycoproteins

Abdul Zafar et al. RSC Chem Biol. .

Abstract

Glycosylation is a ubiquitous modification of proteins, necessitating approaches for its visualization and characterization. Bioorthogonally tagged monosaccharides have been instrumental to this end, offering a chemical view into the cell biology of glycans. Understanding the use of such monosaccharides by cellular biosynthetic pathways has expanded their applicability in cell biology, for instance through the strategy named Bio-Orthogonal Cell-specific TAgging of Glycoproteins (BOCTAG). Here, we show that the cellular use of two azide-tagged analogues of the monosaccharide N-acetylgalactosamine (GalNAzMe and GalNPrAz) can be promoted through expression of two biosynthetic enzymes. More precisely, cellular expression of the bacterial kinase NahK and the engineered human pyrophosphorylase AGX1F383A led to biosynthesis of the corresponding activated nucleotide-sugars and subsequent bioorthogonal tagging of the cellular glycoproteome. We explore the use of both sugars for BOCTAG, demonstrating the visualization of cell surface glycosylation tagged with GalNPrAz in a specific cell line in a co-culture system. Our work adds to the toolbox of glycoprotein analysis in biomedicine.

PubMed Disclaimer

Conflict of interest statement

S. A. M. is an inventor on a Stanford patent related to the use of mucinase digestion for glycoproteomic analysis and is a consultant for InterVenn Biosciences.

Figures

Fig. 1
Fig. 1. Engineered biosynthesis for UDP-GalNAc analogues. (A) Biosynthetic pathways. UDP-GalNAc is biosynthesized by GALK2 and AGX1 activities, while modifications often require the enzymes NahK and AGX1F383A. (B) Acceptance of GalNAc as well as azide-tagged analogues by sugar-1-kinases as measured by UPLC-MS in 16 h reactions. Data are individual data points with means + SD from three independent replicates. (C) Acceptance of GalNAc-1-phosphate as well as azide-tagged analogues by AGX1 constructs as assessed by UPLC. GalNAc-1-phosphate analogues were generated in situ by reaction of the corresponding monosaccharides with NahK as shown in (B). Data are individual data points with means + SD from three independent replicates.
Fig. 2
Fig. 2. Engineered cellular biosynthesis of UDP-GalNAzMe and UDP-GalNPrAz in K-562 cells. (A) Experimental layout and synthetic compounds used. (B) Biosynthesis of UDP-GalNAzMe in stably transfected cells as measured by HPAEC. Cells were fed with 50 μM synthetic compounds or DMSO. Data are from one representative out of at least two replicates. Asterisk denotes a peak likely due to an artifact of chromatography conditions. (C) Biosynthesis of UDP-GalNPrAz in stably transfected cells as measured by HPAEC. Cells were fed with 50 μM compound 2 or DMSO. Data are from one representative out of at least two independent replicates.
Fig. 3
Fig. 3. Cell surface incorporation and cell-specific bioorthogonal tagging of azidosugars. (A) Dose-dependent incorporation of GalNAzMe (left) and GalNPrAz (right) into the cell surface glycoproteome of stably transfected K-562 cells as assessed by in-gel fluorescence. Cells were fed with the indicated concentrations of compounds 1 or 2, subjected to cell-surface CuAAC with CF680-alkyne and glycosylation detected by fluorescence scanning. Data are one representative out of two independent replicates. (B) Comparison of stably transfected K-562 cell lines for incorporation of GalNAzMe or GalNPrAz based on optimised feeding concentrations. Data are one representative out of two independent replicates. (C) Comparison of different glycoprotease or glycosidase digestions on lysates of cells expressing both NahK and AGX1F383A fed with per-acetylated GalNAc analogues assessed by in-gel fluorescence.
Fig. 4
Fig. 4. Cell-specific bioorthogonal tagging of glycoproteins with GalNPrAz. (A) Schematic describing set-up of a co-culture system between stably transfected murine 4T1-GFP cancer cells and MLg murine fibroblasts. Cells were fed with compound 2 (62.5 μM), Ac4ManNAz (10 μM) or an equivalent volume of DMSO, subjected to on-cell CuAAC with biotin-alkyne, and imaged using fluorescently labelled streptavidin. (B) Microscopy data from one experiment. Scale bar set to 100 μm.

Similar articles

Cited by

References

    1. Varki A. and Kornfeld S., in Essentials of Glycobiology, ed. A. Varki, P. Stanley, R. D. Cummings, G. W. Hart and J. D. Esko, Cold Spring Harbor Laboratory Press, Cold Spring Harbour, 4th edn, 2022
    1. Agard N. J. Prescher J. A. Bertozzi C. R. J. Am. Chem. Soc. 2004;126:15046–15047. doi: 10.1021/ja044996f. - DOI - PubMed
    1. Debets M. F. Tastan O. Y. Wisnovsky S. P. Malaker S. A. Angelis N. Moeckl L. K. R. Choi J. Flynn H. Wagner L. J. S. Bineva-Todd G. Antonopoulos A. Cioce A. Browne W. M. Li Z. Briggs D. C. Douglas H. L. Hess G. T. Agbay A. J. Roustan C. Kjaer S. Haslam S. M. Snijders A. P. Bassik M. C. Moerner W. E. Li V. S. W. Bertozzi C. R. Schumann B. Proc. Natl. Acad. Sci. U. S. A. 2020;117:25293–25301. doi: 10.1073/pnas.2007297117. - DOI - PMC - PubMed
    1. Kufleitner M. Haiber L. M. Wittmann V. Chem. Soc. Rev. 2023;52:510–535. doi: 10.1039/D2CS00764A. - DOI - PubMed
    1. Parker C. G. Pratt M. R. Cell. 2020;180:605–632. doi: 10.1016/j.cell.2020.01.025. - DOI - PMC - PubMed

LinkOut - more resources