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Up-Regulation of PI 3-Kinases and the Activation of PI3K-Akt Signaling Pathway in Cancer Stem-Like Cells Through DNA Hypomethylation Mediated by the Cancer Microenvironment
Authors:Aung Ko Ko Oo  Anna Sanchez Calle  Neha Nair  Hafizah Mahmud  Arun Vaidyanath  Junya Yamauchi  Aprilliana Cahya Khayrani  Juan Du  Md Jahangir Alam  Akimasa Seno  Akifumi Mizutani  Hiroshi Murakami  Yoshiaki Iwasaki  Ling Chen  Tomonari Kasai  Masaharu Seno
Institution:2. Department of Biotechnology, Mandalay Technological University, Mandalay, Myanmar;3. Division of Molecular and Cellular Medicine, National Cancer Center Research Institute, Tokyo 104-0045, Japan;4. Department of Gastroenterology and Hepatology, Graduate School of Medicine, Okayama University, Okayama 700-8558, Japan;5. Department of Pathology, Tianjin Central Hospital of Gynecology Obstetrics, Tianjin 300100, People’s Republic of China
Abstract:Previously, we have succeeded in converting induced pluripotent stem cells (iPSCs) into cancer stem cells (CSCs) by treating the iPSCs with conditioned medium of Lewis lung carcinoma (LLC) cells. The converted CSCs, named miPS-LLCcm cells, exhibited the self-renewal, differentiation potential, and potential to form malignant tumors with metastasis. In this study, we further characterized miPS-LLCcm cells both in vivo and in vitro. The tumors formed by subcutaneous injection showed the structures with pathophysiological features consisting of undifferentiated and malignant phenotypes generally found in adenocarcinoma. Metastasis in the lung was also observed as nodule structures. Excising from the tumors, primary cultured cells from the tumor and the nodule showed self-renewal, differentiation potential as well as tumor forming ability, which are the essential characters of CSCs. We then characterized the epigenetic regulation occurring in the CSCs. By comparing the DNA methylation level of CG rich regions, the differentially methylated regions (DMRs) were evaluated in all stages of CSCs when compared with the parental iPSCs. In DMRs, hypomethylation was found superior to hypermethylation in the miPS-LLCcm cells and its derivatives. The hypo- and hypermethylated genes were used to nominate KEGG pathways related with CSC. As a result, several categories were defined in the KEGG pathways from which most related with cancers, significant and high expression of components was PI3K-AKT signaling pathway. Simultaneously, the AKT activation was also confirmed in the CSCs. The PI3K-Akt signaling pathway should be an important pathway for the CSCs established by the treatment with conditioned medium of LLC cells.
Keywords:Address all correspondence to: Masaharu Seno  Department of Medical Bioengineering  Graduate School of Natural Science and Technology  Okayama University  Bldg ENG-6  Room 460  3  1  1 Tsushima-Naka  Kita  Okayama 700-8530  Japan  
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