S100A4 Is a Biomarker and Regulator of Glioma Stem Cells That Is Critical for Mesenchymal Transition in Glioblastoma

Kin-Hoe Chow(Jackson Laboratory), Hee Jung Park(Jackson Laboratory), Joshy George(Jackson Laboratory), Keiko Yamamoto(Jackson Laboratory), Andrew D. Gallup(Jackson Laboratory), Joel H. Graber(Jackson Laboratory), Yuanxin Chen(Mayo Clinic), Wen Jiang(The University of Texas MD Anderson Cancer Center), Dennis A. Steindler(Tufts University), Eric G. Neilson(Northwestern University), Betty Y.S. Kim(Mayo Clinic), Kyuson Yun(Cornell University)
Cancer Research
August 14, 2017
Cited by 132Open Access
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Abstract

Abstract Glioma stem cells (GSC) and epithelial–mesenchymal transition (EMT) are strongly associated with therapy resistance and tumor recurrence, but the underlying mechanisms are incompletely understood. Here, we show that S100A4 is a novel biomarker of GSCs. S100A4+ cells in gliomas are enriched with cancer cells that have tumor-initiating and sphere-forming abilities, with the majority located in perivascular niches where GSCs are found. Selective ablation of S100A4-expressing cells was sufficient to block tumor growth in vitro and in vivo. We also identified S100A4 as a critical regulator of GSC self-renewal in mouse and patient-derived glioma tumorspheres. In contrast with previous reports of S100A4 as a reporter of EMT, we discovered that S100A4 is an upstream regulator of the master EMT regulators SNAIL2 and ZEB along with other mesenchymal transition regulators in glioblastoma. Overall, our results establish S100A4 as a central node in a molecular network that controls stemness and EMT in glioblastoma, suggesting S100A4 as a candidate therapeutic target. Cancer Res; 77(19); 5360–73. ©2017 AACR.


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