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Nkx3.1 and Myc crossregulate shared target genes in mouse and human prostate tumorigenesis
Philip D. Anderson, … , Isam-Eldin Eltoum, Sarki A. Abdulkadir
Philip D. Anderson, … , Isam-Eldin Eltoum, Sarki A. Abdulkadir
Published April 9, 2012
Citation Information: J Clin Invest. 2012;122(5):1907-1919. https://doi.org/10.1172/JCI58540.
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Research Article Oncology Article has an altmetric score of 5

Nkx3.1 and Myc crossregulate shared target genes in mouse and human prostate tumorigenesis

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Abstract

Cooperativity between oncogenic mutations is recognized as a fundamental feature of malignant transformation, and it may be mediated by synergistic regulation of the expression of pro- and antitumorigenic target genes. However, the mechanisms by which oncogenes and tumor suppressors coregulate downstream targets and pathways remain largely unknown. Here, we used ChIP coupled to massively parallel sequencing (ChIP-seq) and gene expression profiling in mouse prostates to identify direct targets of the tumor suppressor Nkx3.1. Further analysis indicated that a substantial fraction of Nkx3.1 target genes are also direct targets of the oncoprotein Myc. We also showed that Nkx3.1 and Myc bound to and crossregulated shared target genes in mouse and human prostate epithelial cells and that Nkx3.1 could oppose the transcriptional activity of Myc. Furthermore, loss of Nkx3.1 cooperated with concurrent overexpression of Myc to promote prostate cancer in transgenic mice. In human prostate cancer patients, dysregulation of shared NKX3.1/MYC target genes was associated with disease relapse. Our results indicate that NKX3.1 and MYC coregulate prostate tumorigenesis by converging on, and crossregulating, a common set of target genes. We propose that coregulation of target gene expression by oncogenic/tumor suppressor transcription factors may represent a general mechanism underlying the cooperativity of oncogenic mutations during tumorigenesis.

Authors

Philip D. Anderson, Sydika A. McKissic, Monica Logan, Meejeon Roh, Omar E. Franco, Jie Wang, Irina Doubinskaia, Riet van der Meer, Simon W. Hayward, Christine M. Eischen, Isam-Eldin Eltoum, Sarki A. Abdulkadir

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Figure 1

Analysis of genome-wide Nkx3.1-binding sites in the mouse prostate.

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Analysis of genome-wide Nkx3.1-binding sites in the mouse prostate.
(A) ...
(A) Visualization of Nkx3.1-binding sites across all mouse chromosomes in Nkx3.1+/+ (WT), Nkx3.1+/– (HET), and Nkx3.1–/– (KO) mouse prostates. Not to scale. (B) High reproducibility in Nkx3.1-binding sites among biological replicates and genotypes. Chromosome 1 is shown as an example. (C) Integrated Genome Browser (IGB) shots showing Nkx3.1-binding sites near the Pbsn and Ar genes. (D) Euler diagram showing overlap of Nkx3.1-binding sites in WT and HET mouse prostates. See also Supplemental Figure 1 and Supplemental Table 1.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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