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Isolation of Viable Glycosylation-Specific Cell Populations for Further In Vitro or In Vivo Analysis Using Lectin-Coated Magnetic Beads

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Histochemistry of Single Molecules

Part of the book series: Methods in Molecular Biology ((MIMB,volume 1560))

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Abstract

The glycans displayed on the cell surface are highly heterogeneous and their function in cell recognition, identity, signaling, adhesion, and behavior is increasingly recognized. Moreover, as it is yet incompletely understood, it is a topic of significant current interest. Lectins (naturally occurring carbohydrate-binding proteins) are very useful tools for exploring cellular glycosylation. Cell populations, within or between different tissues or species, and in development, health and disease, exhibit different glycosylation and thus distinct lectin-binding characteristics. Even monoclonal cell populations of established cell lines feature subpopulations with strikingly different glycosylation characteristics, and these differences may reflect differences in behavior or function. By separating cell populations on the basis of their cell surface glycosylation, the functional significance of glycosylation can be investigated in in vitro or in vivo models. Also, factors affecting glycosylation, which are also incompletely understood, can be explored or manipulated. In the protocol given here, cells can be separated into subpopulations on the basis of their recognition by a specific biotinylated lectin of choice immobilized on avidin-coated magnetic beads. Importantly, the protocol has been optimized such that lectin-binding and non-binding cells remain viable such that they can be further cultured, if necessary, for subsequent investigations.

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References

  1. Brooks SA (2017) Lectin histochemistry: historical perspectives, state of the art and the future. Methods Mol Biol 1560:93–107

    Google Scholar 

  2. Goldstein IJ, Poretz RD (1986) Isolation, physiochemical characterization, and carbohydrate-binding specificity of lectins. In: Liener IR, Sharon N, Goldstein IJ (eds) The lectins: properties, functions and applications in biology and medicine. Academic Press, London, pp 35–250

    Google Scholar 

  3. Brooks SA, Dwek MV, Schumacher U (2002) Carbohydrate-binding proteins (lectins) in functional and molecular glycobiology. Bios Scientific Publishers Ltd, Oxford, pp 227–247

    Google Scholar 

  4. Aub JC, Tieslau C, Lankester A (1963) Reactions of normal and tumour cell surfaces to enzymes. I wheat-germ lipase and associated mucopolysaccharides. Proc Natl Acad Sci U S A 50:613–619

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  5. Inbar M, Sachs L (1969) Interaction of the carbohydrate-binding protein concanavalin A with normal and transformed cells. Proc Natl Acad Sci U S A 63:1418–1425

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  6. Sela BA, Lis H, Sharon N et al (1970) Different locations of carbohydrate-containing sites at the surface membrane of normal and transformed mammalian cells. J Membr Biol 3:267–279

    Article  CAS  PubMed  Google Scholar 

  7. Brooks SA, Hall DMS, Buley I (2001) GalNAc glycoprotein expression by breast cell lines, primary breast cancer and normal breast epithelial membrane. BJC 85:1014–1022

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  8. Brooks SA (2000) The involvement of Helix pomatia lectin (HPA) binding N-acetylgalactosamine glycans in cancer progression. Histol Histopathol 15:143–158

    CAS  PubMed  Google Scholar 

  9. Schumacher U, Adam E, Brooks SA et al (1995) Lectin-binding properties of human breast cancer cell lines and human milk with particular reference to Helix pomatia agglutinin. J Histochem Cytochem 43:275–281

    Article  CAS  PubMed  Google Scholar 

  10. Leathem A, Dokal I, Atkins N (1983) Lectin binding to normal and malignant breast tissue. Diagn Histopathol 6:171–180

    CAS  PubMed  Google Scholar 

  11. Bard F, Chia J (2016) Cracking the glycome encoder: signalling, trafficking, and glycosylation. Trends Cell Biol 26:379–388

    Article  CAS  PubMed  Google Scholar 

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Correspondence to Susan A. Brooks .

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Beaman, EM., Carter, D.R.F., Brooks, S.A. (2017). Isolation of Viable Glycosylation-Specific Cell Populations for Further In Vitro or In Vivo Analysis Using Lectin-Coated Magnetic Beads. In: Pellicciari, C., Biggiogera, M. (eds) Histochemistry of Single Molecules. Methods in Molecular Biology, vol 1560. Humana Press, New York, NY. https://doi.org/10.1007/978-1-4939-6788-9_7

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  • DOI: https://doi.org/10.1007/978-1-4939-6788-9_7

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  • Publisher Name: Humana Press, New York, NY

  • Print ISBN: 978-1-4939-6787-2

  • Online ISBN: 978-1-4939-6788-9

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