» Articles » PMID: 18647941

Analysis of Glycosyltransferase Expression in Metastatic Prostate Cancer Cells Capable of Rolling Activity on Microvascular Endothelial (E)-selectin

Overview
Journal Glycobiology
Date 2008 Jul 24
PMID 18647941
Citations 32
Authors
Affiliations
Soon will be listed here.
Abstract

Prostate cancer (PCa) cell tethering and rolling on microvascular endothelium has been proposed to promote the extravasation of PCa cells. We have shown that these adhesive events are mediated through binding interactions between endothelial (E)-selectin and Lewis carbohydrates on PCa cells. Prior data indicate that E-selectin-mediated rolling of bone-metastatic PCa MDA PCa 2b (MDA) cells is dependent on sialyl Lewis X (sLe(X))-bearing glycoproteins. To explore the molecular basis of sLe(X) synthesis and E-selectin ligand (ESL) activity on PCa cells, we compared and contrasted the expression level of glycosyltransferases, characteristically involved in sLe(X) and ESL synthesis, in ESL(+) MDA cells among other ESL(-) metastatic PCa cell lines. We also created and examined ESL(hi) and ESL(lo) variants of MDA cells to provide a direct comparison of the glycosyltransferase expression level. We found that normal prostate tissue and all metastatic PCa cell lines expressed glycosyltransferases required for sialo-lactosamine synthesis, including N-acetylglucosaminyl-, galactosyl-, and sialyltransferases. However, compared with expression in normal prostate tissue, ESL(+) MDA cells expressed a 31- and 10-fold higher level of alpha1,3 fucosyltransferases (FT) 3 and 6, respectively. Moreover, FT3 and FT6 were expressed at 2- to 354-fold lower levels in ESL(-) PCa cell lines. Consistent with these findings, ESL(hi) MDA cells expressed a 131- and 51-fold higher level of FT3 and FT6, respectively, compared with expression in ESL(lo) MDA cells. We also noted that alpha1,3 FT7 was expressed at a 5-fold greater level in ESL(hi) MDA cells. Furthermore, ESL(lo) MDA cells did not display sLe(X) on glycoproteins capable of bearing sLe(X), notably P-selectin glycoprotein ligand-1. These results implicate the importance of alpha1,3 FT3, FT6, and/or FT7 in sLe(X) and ESL synthesis on metastatic PCa cells.

Citing Articles

: An Underexplored p53 Target Gene Linking Glycosylation and Cancer Progression.

Hu D, Kobayashi N, Ohki R Cancers (Basel). 2024; 16(15).

PMID: 39123480 PMC: 11311387. DOI: 10.3390/cancers16152753.


Prostate cancer bone metastases biology and clinical management (Review).

Goode E, Wang N, Munkley J Oncol Lett. 2023; 25(4):163.

PMID: 36960185 PMC: 10028493. DOI: 10.3892/ol.2023.13749.


Glycosylation as a regulator of site-specific metastasis.

Bindeman W, Fingleton B Cancer Metastasis Rev. 2021; 41(1):107-129.

PMID: 34967926 PMC: 8930623. DOI: 10.1007/s10555-021-10015-1.


Re-Expression of Poly/Oligo-Sialylated Adhesion Molecules on the Surface of Tumor Cells Disrupts Their Interaction with Immune-Effector Cells and Contributes to Pathophysiological Immune Escape.

Jarahian M, Marofi F, Maashi M, Ghaebi M, Khezri A, Berger M Cancers (Basel). 2021; 13(20).

PMID: 34680351 PMC: 8534074. DOI: 10.3390/cancers13205203.


3'-Sulfo-TF Antigen Determined by GAL3ST2/ST3GAL1 Is Essential for Antitumor Activity of Fungal Galectin AAL/AAGL.

Li Y, Li Y, Xia J, Yang Q, Chen Y, Sun H ACS Omega. 2021; 6(27):17379-17390.

PMID: 34278124 PMC: 8280635. DOI: 10.1021/acsomega.1c01544.


References
1.
Kikuchi J, Shinohara H, Nonomura C, Ando H, Takaku S, Nojiri H . Not core 2 beta 1,6-N-acetylglucosaminyltransferase-2 or -3 but -1 regulates sialyl-Lewis x expression in human precursor B cells. Glycobiology. 2004; 15(3):271-80. DOI: 10.1093/glycob/cwi005. View

2.
Taichman R, Cooper C, Keller E, Pienta K, Taichman N, McCauley L . Use of the stromal cell-derived factor-1/CXCR4 pathway in prostate cancer metastasis to bone. Cancer Res. 2002; 62(6):1832-7. View

3.
Miyoshi E, Moriwaki K, Nakagawa T . Biological function of fucosylation in cancer biology. J Biochem. 2008; 143(6):725-9. DOI: 10.1093/jb/mvn011. View

4.
Hidalgo A, Weiss L, Frenette P . Functional selectin ligands mediating human CD34(+) cell interactions with bone marrow endothelium are enhanced postnatally. J Clin Invest. 2002; 110(4):559-69. PMC: 150411. DOI: 10.1172/JCI14047. View

5.
Naiyer A, Jo D, Ahn J, Mohle R, Peichev M, Lam G . Stromal derived factor-1-induced chemokinesis of cord blood CD34(+) cells (long-term culture-initiating cells) through endothelial cells is mediated by E-selectin. Blood. 1999; 94(12):4011-9. View