4.6 Article

Tumor cell migration and invasion are regulated by expression of variant integrin glycoforms

Journal

EXPERIMENTAL CELL RESEARCH
Volume 314, Issue 16, Pages 2941-2950

Publisher

ELSEVIER INC
DOI: 10.1016/j.yexcr.2008.07.021

Keywords

ras; integrin; sialic acid; metastasis; collagen; colonocytes

Funding

  1. NIH [R01CA84248]
  2. Mizutani Foundation for Glycoscience
  3. American Heart Association

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The ST6Gal-I glycosyltransferase, which adds alpha 2-6-linked sialic acids to glycoproteins, is overexpressed in colon adenocarcinoma, and enzyme activity is correlated with tumor cell invasiveness. Previously we reported that forced expression of oncogenic ras in HD3 colonocytes causes upregulation of ST6Gal-I, leading to increased alpha 2-6 sialylation of beta 1 integrins. To determine whether ras-induced sialylation is involved in promoting the tumor cell phenotype, we used shRNA to downregulate ST6Gal-I in ras-expressors, and then monitored integrin-dependent responses. Here we show that forced ST6Gal-I downregulation, leading to diminished alpha 2-6 sialylation of integrins, inhibits cell adhesion to Collagen 1, a beta 1 ligand. Correspondingly, collagen binding is reduced by enzymatic removal of cell surface sialic acids from ras-expressors with high ST6Gal-I levels (i.e., no shRNA). Cells with forced ST6Gal-I downregulation also exhibit decreased migration on collagen I and diminished invasion through Matrigel. Importantly, GD25 cells, which lack beta 1 integrins (and ST6Gal-I), do not demonstrate differential invasiveness when forced to express ST6Gal-I, suggesting that the effects of variant sialylation are mediated specifically by beta 1 integrins. The observation that cell migration and invasion can be blocked in oncogenic ras-expressing cells by forcing ST6Gal-I downregulation implicates differential sialylation as an important ras effector, and also suggests that ST6Gal-I is a promising therapeutic target. (C) 2008 Elsevier Inc. All rights reserved.

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