1. Academic Validation
  2. Checkpoint suppressor 1 suppresses transcriptional activity of ERα and breast cancer cell proliferation via deacetylase SIRT1

Checkpoint suppressor 1 suppresses transcriptional activity of ERα and breast cancer cell proliferation via deacetylase SIRT1

  • Cell Death Dis. 2018 May 1;9(5):559. doi: 10.1038/s41419-018-0629-3.
Zhaowei Xu 1 Yangyang Yang 1 Bowen Li 1 Yanan Li 1 Kangkai Xia 1 Yuxi Yang 1 Xiahui Li 1 Miao Wang 1 Shujing Li 1 Huijian Wu 2
Affiliations

Affiliations

  • 1 School of Life Science and Biotechnology, Dalian University of Technology, Dalian, China.
  • 2 School of Life Science and Biotechnology, Dalian University of Technology, Dalian, China. [email protected].
Abstract

Breast Cancer is a highly heterogeneous carcinoma in women worldwide, but the underlying mechanisms that account for breast Cancer initiation and development have not been fully established. Mounting evidence indicates that Checkpoint suppressor 1 (CHES1) is tightly associated with tumorigenesis and prognosis in many types of Cancer. However, the definitive function of CHES1 in breast Cancer remains to be explored. Here we showed that CHES1 had a physical interaction with estrogen receptor-α (ERα) and repressed the transactivation of ERα in breast Cancer cells. Mechanistically, the interaction between CHES1 and ERα enhanced the recruitment of nicotinamide adenine dinucleotide (NAD+) deacetylase Sirtuin 1 (SIRT1), and it further induced SIRT1-mediated ERα deacetylation and repression on the promoter-binding enrichment of ERα. In addition, we also found that the expression of CHES1 was repressed by estrogen-ERα signaling and the expression level of CHES1 was significantly downregulated in ERα-positive breast Cancer. The detailed mechanism was that ERα may directly bind to CHES1 potential promoter via recognizing the conserved estrogen response element (ERE) motif in response to estrogen stimulation. Functionally, CHES1 inhibited ERα-mediated proliferation and tumorigenesis of breast Cancer cells in vivo and in vitro. Totally, these results identified a negative cross-regulatory loop between ERα and CHES1 that was required for growth of breast Cancer cells, it might uncover novel insight into molecular mechanism of CHES1 involved in breast Cancer and provide new avenues for molecular-targeted therapy in hormone-regulated breast Cancer.

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