Targeting Aberrant Sialylation in Cancer Cells Using a Fluorinated Sialic Acid Analog Impairs Adhesion, Migration, and In Vivo Tumor Growth

被引:163
作者
Bull, Christian [1 ]
Boltje, Thomas J. [2 ]
Wassink, Melissa [1 ]
de Graaf, Annemarie M. A. [1 ]
van Delft, Floris L. [2 ]
den Brok, Martijn H. [1 ]
Adema, Gosse J. [1 ]
机构
[1] Radboud Univ Nijmegen, Dept Tumor Immunol, Nijmegen Ctr Mol Life Sci, Med Ctr, NL-6500 HB Nijmegen, Netherlands
[2] Radboud Univ Nijmegen, Inst Mol & Mat, NL-6500 HB Nijmegen, Netherlands
关键词
MYELOID FIBRONECTIN RECEPTORS; SURFACE SIALYLATION; MELANOMA-CELLS; EXPRESSION; CARCINOMA; BIOSYNTHESIS; PROGRESSION; GLYCANS; KINASE; SIALYLTRANSFERASE;
D O I
10.1158/1535-7163.MCT-13-0279
中图分类号
R73 [肿瘤学];
学科分类号
100214 [肿瘤学];
摘要
Cancer cells decorate their surface with a dense layer of sialylated glycans by upregulating the expression of sialyltransferases and other glycogenes. Although sialic acids play a vital role in many biologic processes, hypersialylation in particular has been shown to contribute to cancer cell progression and metastasis. Accordingly, selective strategies to interfere with sialic acid synthesis might offer a powerful approach in cancer therapy. In the present study, we assessed the potential of a recently developed fluorinated sialic acid analogue (P-3F(ax)-Neu5Ac) to block the synthesis of sialoglycans in murine melanoma cells and the consequences on cell adhesion, migration, and in vivo growth. The results showed that P-3F(ax)-Neu5Ac readily caused depletion of alpha 2,3-/alpha 2,6-linked sialic acids in B16F10 cells for several days. Long-term inhibition of sialylation for 28 days was feasible without affecting cell viability or proliferation. Moreover, P-3F(ax)-Neu5Ac proved to be a highly potent inhibitor of sialylation even at high concentrations of competing sialyltransferase substrates. P-3F(ax)-Neu5Ac-treated cancer cells exhibited impaired binding to poly-L-lysine, type I collagen, and fibronectin and diminished migratory capacity. Finally, blocking sialylation of B16F10 tumor cells with this novel sialic acid analogue reduced their growth in vivo. These results indicate that P-3F(ax)-Neu5Ac is a powerful glycomimetic capable of inhibiting aberrant sialylation that can potentially be used for anticancer therapy. (c) 2013 AACR.
引用
收藏
页码:1935 / 1946
页数:12
相关论文
共 48 条
[1]
Metabolic Flux Increases Glycoprotein Sialylation: Implications for Cell Adhesion and Cancer Metastasis [J].
Almaraz, Ruben T. ;
Tian, Yuan ;
Bhattarcharya, Rahul ;
Tan, Elaine ;
Chen, Shih-Hsun ;
Dallas, Matthew R. ;
Chen, Li ;
Zhang, Zhen ;
Zhang, Hui ;
Konstantopoulos, Konstantinos ;
Yarema, Kevin J. .
MOLECULAR & CELLULAR PROTEOMICS, 2012, 11 (07)
[2]
Tumour suppressor p16INK4a-anoikis-favouring decrease in N/O-glycan/cell surface sialylation by down-regulation of enzymes in sialic acid biosynthesis in tandem in a pancreatic carcinoma model [J].
Amano, Maho ;
Eriksson, Hanna ;
Manning, Joachim C. ;
Detjen, Katharina M. ;
Andre, Sabine ;
Nishimura, Shin-Ichiro ;
Lehtio, Janne ;
Gabius, Hans-Joachim .
FEBS JOURNAL, 2012, 279 (21) :4062-4080
[3]
Glycoprofiling with micro-arrays of glycoconjugates and lectins [J].
Angeloni, S ;
Ridet, JL ;
Kusy, N ;
Gao, H ;
Crevoisier, F ;
Guinchard, S ;
Kochhar, S ;
Sigrist, H ;
Sprenger, N .
GLYCOBIOLOGY, 2005, 15 (01) :31-41
[4]
Lectin-based three-color flow cytometric approach for studying cell surface glycosylation changes that occur during apoptosis [J].
Batisse, C ;
Marquet, J ;
Greffard, A ;
Fleury-Feith, J ;
Jaurand, MC ;
Pilatte, Y .
CYTOMETRY PART A, 2004, 62A (02) :81-88
[5]
A new method for the synthesis of fluoro-carbohydrates and glycosides using selectfluor [J].
Burkart, MD ;
Zhang, ZY ;
Hung, SC ;
Wong, CH .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1997, 119 (49) :11743-11746
[6]
Soyasaponin I decreases the expression of α2,3-linked sialic acid on the cell surface and suppresses the metastatic potential of B16F10 melanoma cells [J].
Chang, WW ;
Yu, CY ;
Lin, TW ;
Wang, PH ;
Tsai, YC .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2006, 341 (02) :614-619
[7]
Inhibition of CMP-sialic acid transport into Golgi vesicles by nucleoside monophosphates [J].
Chiaramonte, M ;
Koviach, JL ;
Moore, C ;
Iyer, VV ;
Wagner, CR ;
Halcomb, RL ;
Miller, W ;
Melançon, P ;
Kuchta, RD .
BIOCHEMISTRY, 2001, 40 (47) :14260-14267
[8]
THE SPECIFICITY OF VIRAL AND BACTERIAL SIALIDASES FOR ALPHA-(2-3)-LINKED AND ALPHA-(2-6)-LINKED SIALIC ACIDS IN GLYCOPROTEINS [J].
CORFIELD, AP ;
HIGA, H ;
PAULSON, JC ;
SCHAUER, R .
BIOCHIMICA ET BIOPHYSICA ACTA, 1983, 744 (02) :121-126
[9]
Differential expression of the α2,3-sialic acid residues in breast cancer is associated with metastatic potential [J].
Cui, Hongxia ;
Lin, Yu ;
Yue, Liling ;
Zhao, Xuemei ;
Liu, Jicheng .
ONCOLOGY REPORTS, 2011, 25 (05) :1365-1371
[10]
Ras oncogene induces β-galactoside α2,6-sialyltransferase (ST6Gal I) via a RalGEF-mediated signal to its housekeeping promoter [J].
Dalziel, M ;
Dall'Olio, F ;
Mungul, A ;
Piller, V ;
Piller, F .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 2004, 271 (18) :3623-3634