A solid-phase lectin-binding assay for the characterization of glycan terminator on cell surface

Authors

  • Haitham. A. Badr Department of Molecular Biology and Genetics, Faculty of Biology and Biotechnology Al-Farabi Kazakh National University, Kazakhstan. Laboratory of Molecular Genetics, Institute of General Genetics and Cytology, Department of Biochemistry and Molecular Biology, University of Maryland, School of Medicine
  • Leyla B. Djansugurova Department of Molecular Biology and Genetics, Faculty of Biology and Biotechnology Al-Farabi Kazakh National University, Kazakhstan. Laboratory of Molecular Genetics, Institute of General Genetics and Cytology
  • Hafiz Ahmad Department of Biochemistry and Molecular Biology, University of Maryland, School of Medicine

Keywords:

cancer biomarkers, sialyltransferases, glycan terminator, lectins, starvation.

Abstract

Cell surface proteins in mammals are typically elaborated with a complex array of glycans. N-acetyl neuraminic acids (abbreviated as Sialic acids), are usually found at the non-reducing terminal position of these glycans. This terminal glycan sialylation imparts a negative charge at physiological pH values and mediates many biological functions. Here,we utilize two human mammary epithelial cell lines, MCF10A (breast normal cells) and MCF7 (breast cancer cells)as a model system to show differential glycan terminator when treated with sialic acid under nutrient deprivation.Under starved condition, sialic acid treatment of both cells resulted increased activities of α2→3/6 sialyltransferases as demonstrated by lectin solid phase assay. The presence of increased sialyltransferase expression is corroborated by stronger binding with sialic acid-specific lectins such as (Sambucus nigra agglutinin, SNA) and (Maackia amurensis agglutinin I, MAL-I). However, MAL-I binding discriminates malignant cells from normal cells suggesting a preferential increase of Neu5Acα2→3Gal on the SA-treated malignant cell surface.

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Section

HUMAN and ANIMAL PHYSIOLOGY

How to Cite

A solid-phase lectin-binding assay for the characterization of glycan terminator on cell surface. (2015). Experimental Biology, 57(1). https://bb.kaznu.kz/index.php/biology/article/view/228

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