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NKX6.1 functions as a metastatic suppressor through epigenetic regulation of the epithelial-mesenchymal transition.


ABSTRACT: The transcription factor NKX6.1 (NK6 homeobox 1) is important in the development of pancreatic ?-cells and neurons. Although recent publications show that NKX6.1 is hypermethylated and downregulated during tumorigenesis, the function of NKX6.1 in carcinogenesis remains elusive. Here, we address the metastasis suppressor function of human NKX6.1 using cell, animal and clinical analyses. Our data show that NKX6.1 represses tumor formation and metastatic ability both in vitro and in vivo. Mechanistically, NKX6.1 suppresses cell invasion by inhibiting the epithelial-to-mesenchymal transition (EMT). NKX6.1 directly enhances the mRNA level of E-cadherin by recruiting BAF155 coactivator and represses that of vimentin and N-cadherin by recruiting RBBP7 (retinoblastoma binding protein 7) corepressor. Clinical cancer tumors with metastasis show low NKX6.1 protein expression coinciding with low E-cadherin and high vimentin expression. Our results demonstrate that NKX6.1 functions as an EMT suppressor by interacting with different epigenetic modifiers, making it a potential novel therapeutic option.

SUBMITTER: Li HJ 

PROVIDER: S-EPMC4855079 | biostudies-literature | 2016 Apr

REPOSITORIES: biostudies-literature

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NKX6.1 functions as a metastatic suppressor through epigenetic regulation of the epithelial-mesenchymal transition.

Li H-J HJ   Yu P-N PN   Huang K-Y KY   Su H-Y HY   Hsiao T-H TH   Chang C-P CP   Yu M-H MH   Lin Y-W YW  

Oncogene 20150810 17


The transcription factor NKX6.1 (NK6 homeobox 1) is important in the development of pancreatic β-cells and neurons. Although recent publications show that NKX6.1 is hypermethylated and downregulated during tumorigenesis, the function of NKX6.1 in carcinogenesis remains elusive. Here, we address the metastasis suppressor function of human NKX6.1 using cell, animal and clinical analyses. Our data show that NKX6.1 represses tumor formation and metastatic ability both in vitro and in vivo. Mechanist  ...[more]

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