KLF5 promotes cell proliferation and tumorigenesis through gene regulation in the TSU-Pr1 human bladder cancer cell line

KLF5 is a transcription factor that plays important roles in multiple physical and pathological processes, including cell growth, cell cycle regulation, and angiogenesis. To better characterize KLF5 function in bladder carcinogenesis, we established stable TSU-Pr1 cell clones expressing different le...

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Veröffentlicht in:International journal of cancer 2006-03, Vol.118 (6), p.1346-1355
Hauptverfasser: CHEN, Ceshi, BENJAMIN, Michael S, DONG, Jin-Tang, XIAODONG SUN, OTTO, Kristen B, PENG GUO, DONG, Xue-Yuan, YONGDE BAO, ZHONGMEI ZHOU, XIAOHONG CHENG, SIMONS, Jonathan W
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Sprache:eng
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Zusammenfassung:KLF5 is a transcription factor that plays important roles in multiple physical and pathological processes, including cell growth, cell cycle regulation, and angiogenesis. To better characterize KLF5 function in bladder carcinogenesis, we established stable TSU-Pr1 cell clones expressing different levels of KLF5. These clones were then characterized for cell growth, cell cycle progression, tumorigenesis, and alteration in gene expression. Overexpression of KLF5 promoted tumorigenesis of the TSU-Pr1 cancer cells in mice. Consistently, KLF5 increased G1 to S phase transition, which was accompanied by the upregulation of cyclin D1, phosphorylation of MAPK and Akt, and reduced protein levels for CDK inhibitors p27 and p15. Microarray analysis combined with expression verification in different cell systems identified a number of additional genes that are potentially regulated by KLF5, including HBP17, ITGA6, and RAIG1. These findings suggest that the KLF5 transcription factor plays an oncogenic role in the TSU-Pr1 bladder cancer cell line through the regulation of a subset of genes.
ISSN:0020-7136
1097-0215
DOI:10.1002/ijc.21533