4.7 Article

Aberrant Glycosylation Promotes Lung Cancer Metastasis through Adhesion to Galectins in the Metastatic Niche

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CANCER DISCOVERY
卷 5, 期 2, 页码 168-181

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/2159-8290.CD-13-0760

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  1. Koch Institute Support (core) Grant from the NCI [P30-CA14051]
  2. Ludwig Center for Molecular Oncology Graduate Fellowship
  3. Stand Up To Cancer Dream Team Translational Research Grant (Stand Up To Cancer is a program of the Entertainment Industry Foundation) [SU2C-AACR-DT0309]
  4. HHMI
  5. Koch CTC Project

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Metastasis is the leading cause of cancer-associated deaths. Although dissemination of tumor cells likely occurs early in tumorigenesis, the constituents of the microenvironment play essential rate-limiting roles in determining whether these cells will form clinically relevant tumors. Recent studies have uncovered many molecular factors that contribute to the establishment of a protumorigenic metastatic niche. Here, we demonstrate that galectin-3, whose expression has clinical associations with advanced malignancy and poor outcome, contributes to metastatic niche formation by binding to carbohydrates on metastatic cells. We show that galectin-3 is expressed early during tumorigenesis by both CD11b(+)Gr-1(+) and CD11b(+)Ly-6C(hi) leukocytes. Tumors mobilize these myeloid populations through secretion of soluble factors, including IL6. We find that metastatic cancer cells exhibit elevated presentation of the oncofetal galectin-3 carbohydrate ligand, the Thomsen-Friedenreich antigen, on their surfaces as a result of altered C2GnT2 and St6GalNAc4 glycosyltransferase activity that inhibits further glycosylation of this carbohydrate motif and promotes metastasis. SIGNIFICANCE: Although clinical observations of elevated serum galectin-3 levels and altered glycosylation have been associated with malignancy, we identify novel roles for glycosyltransferases in promoting adhesion to galectins in the metastatic niche. This identification of a cytokine-leukocyte-glycosylation axis in metastasis provides mechanistic explanations for clinical associations between malignancy and aberrant glycosylation. (C) 2014 AACR.

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