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Specific Posttranslational Modification Regulates Early Events in Mammary Carcinoma Formation

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Specialty Science
Date 2010 Nov 17
PMID 21078982
Citations 23
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Abstract

The expression of an enzyme, GnT-V, that catalyzes a specific posttranslational modification of a family of glycoproteins, namely a branched N-glycan, is transcriptionally up-regulated during breast carcinoma oncogenesis. To determine the molecular basis of how early events in breast carcinoma formation are regulated by GnT-V, we studied both the early stages of mammary tumor formation by using 3D cell culture and a her-2 transgenic mouse mammary tumor model. Overexpression of GnT-V in MCF-10A mammary epithelial cells in 3D culture disrupted acinar morphogenesis with impaired hollow lumen formation, an early characteristic of mammary neoplastic transformation. The disrupted acinar morphogenesis of mammary tumor cells in 3D culture caused by her-2 expression was reversed in tumors that lacked GnT-V expression. Moreover, her-2-induced mammary tumor onset was significantly delayed in the GnT-V null tumors, evidence that the lack of the posttranslational modification catalyzed by GnT-V attenuated tumor formation. Inhibited activation of both PKB and ERK signaling pathways was observed in GnT-V null tumor cells. The proportion of tumor-initiating cells (TICs) in the mammary tumors from GnT-V null mice was significantly reduced compared with controls, and GnT-V null TICs displayed a reduced ability to form secondary tumors in NOD/SCID mice. These results demonstrate that GnT-V expression and its branched glycan products effectively modulate her-2-mediated signaling pathways that, in turn, regulate the relative proportion of tumor initiating cells and the latency of her-2-driven tumor onset.

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References
1.
Brockhausen I, CARVER J, SCHACHTER H . Control of glycoprotein synthesis. The use of oligosaccharide substrates and HPLC to study the sequential pathway for N-acetylglucosaminyltransferases I, II, III, IV, V, and VI in the biosynthesis of highly branched N-glycans by hen oviduct membranes. Biochem Cell Biol. 1988; 66(10):1134-51. DOI: 10.1139/o88-131. View

2.
Sorkin A, Goh L . Endocytosis and intracellular trafficking of ErbBs. Exp Cell Res. 2009; 315(4):683-96. DOI: 10.1016/j.yexcr.2008.07.029. View

3.
Granovsky M, Fata J, Pawling J, Muller W, Khokha R, Dennis J . Suppression of tumor growth and metastasis in Mgat5-deficient mice. Nat Med. 2000; 6(3):306-12. DOI: 10.1038/73163. View

4.
Al-Hajj M, Wicha M, Benito-Hernandez A, Morrison S, Clarke M . Prospective identification of tumorigenic breast cancer cells. Proc Natl Acad Sci U S A. 2003; 100(7):3983-8. PMC: 153034. DOI: 10.1073/pnas.0530291100. View

5.
Yokoe S, Takahashi M, Asahi M, Lee S, Li W, Osumi D . The Asn418-linked N-glycan of ErbB3 plays a crucial role in preventing spontaneous heterodimerization and tumor promotion. Cancer Res. 2007; 67(5):1935-42. DOI: 10.1158/0008-5472.CAN-06-3023. View