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Thyroid Transcription Factor-1-regulated MicroRNA-532-5p Targets KRAS and MKL2 Oncogenes and Induces Apoptosis in Lung Adenocarcinoma Cells

Overview
Journal Cancer Sci
Specialty Oncology
Date 2017 May 6
PMID 28474808
Citations 20
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Abstract

Thyroid transcription factor-1 (TTF-1), also known as NKX2-1, plays a role as a lineage-survival oncogene in lung adenocarcinoma that possesses double-edged sword characteristics. Although evidence from previous studies has steadily accumulated regarding the roles of TTF-1 in transcriptional regulation of protein-coding genes, little is known about its regulatory relationship with microRNAs. Here, we utilized an integrative approach designed to extract maximal information from expression profiles of both patient tumors in vivo and TTF-1-inducible cell lines in vitro, which identified microRNA (miR)-532-5p as a novel transcriptional target of TTF-1. We found that miR-532-5p is directly regulated by TTF-1 through its binding to a genomic region located 8 kb upstream of miR-532-5p, which appears to impose transcriptional regulation independent of that of CLCN5, a protein-coding gene harboring miR-532-5p in its intron 3. Furthermore, our results identified KRAS and MKL2 as novel direct targets of miR-532-5p. Introduction of miR-532-5p mimics markedly induced apoptosis in KRAS-mutant as well as KRAS wild-type lung adenocarcinoma cell lines. Interestingly, miR-532-5p showed effects on MEK-ERK pathway signaling, specifically in cell lines sensitive to siKRAS treatment, whereas those miR-532-5p-mediated effects were clearly rendered as phenocopies by repressing expression or inhibiting the function of MKL2 regardless of KRAS mutation status. In summary, our findings show that miR-532-5p is a novel transcriptional target of TTF-1 that plays a tumor suppressive role by targeting KRAS and MKL2 in lung adenocarcinoma.

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References
1.
Jung M, Mollenkopf H, Grimm C, Wagner I, Albrecht M, Waller T . MicroRNA profiling of clear cell renal cell cancer identifies a robust signature to define renal malignancy. J Cell Mol Med. 2009; 13(9B):3918-28. PMC: 4516539. DOI: 10.1111/j.1582-4934.2009.00705.x. View

2.
Yamaguchi T, Hosono Y, Yanagisawa K, Takahashi T . NKX2-1/TTF-1: an enigmatic oncogene that functions as a double-edged sword for cancer cell survival and progression. Cancer Cell. 2013; 23(6):718-23. DOI: 10.1016/j.ccr.2013.04.002. View

3.
Dong J, Jiang G, Asmann Y, Tomaszek S, Jen J, Kislinger T . MicroRNA networks in mouse lung organogenesis. PLoS One. 2010; 5(5):e10854. PMC: 2877109. DOI: 10.1371/journal.pone.0010854. View

4.
Cox A, Der C . Ras family signaling: therapeutic targeting. Cancer Biol Ther. 2003; 1(6):599-606. DOI: 10.4161/cbt.306. View

5.
Kendall J, Liu Q, Bakleh A, Krasnitz A, Nguyen K, Lakshmi B . Oncogenic cooperation and coamplification of developmental transcription factor genes in lung cancer. Proc Natl Acad Sci U S A. 2007; 104(42):16663-8. PMC: 2034240. DOI: 10.1073/pnas.0708286104. View