4.4 Article

Fucosyltransferase 8 deficiency suppresses breast cancer cell migration by interference of the FAK/integrin pathway

Journal

CANCER BIOMARKERS
Volume 25, Issue 4, Pages 303-311

Publisher

IOS PRESS
DOI: 10.3233/CBM-190209

Keywords

FUT8; breast cancer; cells migration; FAK/integrin pathway

Categories

Funding

  1. Scientific Research Startup Foundation for Postdoctoral of Heilongjiang Province [LBH-Q17178]
  2. National Natural Science Foundation of China [81802834, 81202084]
  3. University Nursing Program for Young Scholars with Creative Talents in Heilongjiang Province [UNPYSCT-2018035]
  4. Key Program from Qiqihar Medical University of China [QY2014Z-01]

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BACKGROUND AND OBJECTIVE: Fucosyltranferase 8 (FUT8), which catalyzes core fucosylation of glycopeptides, plays important roles in cancer development. In this study, we aimed to explore the influence of FUT8 expression on migration ability of human breast cancer cells and its potential mechanisms. METHODS: The core fucosylation levels in normal and FUT8 deficient MCF-7 cells were analyzed by lectin LCA blots. Then, the cell adhesion assay, transwell and wound healing experiments were conducted. The phosphorylation of FAK and core fucosylation of E-cadherin and its downstream integrins in the FAK/integrin pathway were measured. Moreover, the expression levels of nuclear beta-catenin, MMP-2, and MMP-9 were also measured. RESULTS: The core fucosylation levels were significantly reduced by inhibited FUT8. FUT8 deficiency suppressed the adhesion, migration and invasion of MCF-7 cells; the potential mechanisms might involve three aspects. FUT8 deficiency inhibited FAK/integrin pathway by suppressing core fucosylation of E-cadherin. In addition, FUT8 deficiency reduced nuclear beta-catenin accumulation. The suppression of MMP-2 and MMP-9 expression also accounted for FUT8 deficiency inhibiting breast cancer cells migration. CONCLUSIONS: FUT8 deficiency suppressed migration of MCF-7 cells by impacting core fucosylation of E-cadherin and the downstream FAK/integrin pathway. Therefore, FUT8 is a potential biomarker for breast cancer detection and treatment.

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