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The degradation of EZH2 mediated by lncRNA ANCR attenuated the invasion and metastasis of breast cancer

机译:LNCRNA ANCR介导的EZH2的降解减弱了乳腺癌的侵袭和转移

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摘要

EZH2 (the Enhancer of Zeste Homolog 2), as a key epigenetic regulator and EMT inducer, participates in a variety of cancer metastasis. EZH2 stability is regulated by several types of post-translational modifications (PTMs). The long non-coding RNAs (IncRNA) have been implicated to have critical roles in multiple carcinogenesis through a wide range of mechanisms, including modulating the stability of proteins. To date, whether the stability of EZH2 protein is regulated by IncRNAs remains unexplored. Here we report the discovery of ANCR modulating the stability of EZH2, and hence in the invasion and metastasis of breast cancer cells. We determined that ANCR potentiated the CDK1-EZH2 interaction, which then increased the intensity of phosphorylation at Thr-345 and Thr-487 sites of EZH2, facilitating EZH2 ubiquitination and hence its degradation. Moreover, we also uncover ANCR is an important player in breast cancer progression and metastasis mainly through decreasing EZH2 stability. More specifically, we initially found that ANCR level was lower in breast cancer tissues and breast cancer cell lines, in contrast to their normal counterparts. We then demonstrated that knockdown of ANCR induced an EMT program and promoted cell migration and invasion in MCF10A (epithelial cells), whereas ectopic expression of ANCR repressed breast cancer cells migration and invasion. Furthermore, we validated in a nude mouse model that overexpression of ANCR in highly malignant and invasive MDA-MB-231 breast cancer cells significantly reduced the ability of the cells to form tumors and prevented the lung metastasis in vivo. Based on these data, our findings define a new mechanism underlying modulation of EZH2 stability by linking ANCR interaction with EZH2 to promote its phosphorylation that facilitates EZH2 degradation and suppresses breast cancer progression.
机译:EZH2(Zeste同源物的增强剂2),作为关键的表观遗传调节剂和EMT诱导剂,参与各种癌症转移。 EZH2稳定性由几种类型的翻译后修饰(PTM)调节。长期的非编码RNA(IncRNA)涉及通过各种机制在多种癌发生中具有关键作用,包括调节蛋白质的稳定性。迄今为止,ICZH2蛋白的稳定性是由Incrnas调节的,仍未探讨。在这里,我们报告了ANCR调节EZH2的稳定性的发现,因此在乳腺癌细胞的侵袭和转移中。我们确定ANCR加强了CDK1-EZH2相互作用,然后在eZH2的THR-345和THR-487位点上增加了磷酸化强度,促进了EZH2泛素,因此降解了其降解。此外,我们还发现ANCR是乳腺癌进展和转移的重要球员,主要是通过降低EZH2稳定性。更具体地说,我们最初发现乳腺癌组织和乳腺癌细胞系中的ANCR水平较低,与其正常的对应物相比。然后,我们证明了ANCR的敲低诱导了MCF10A(上皮细胞)中的EMT程序和促进细胞迁移和侵袭,而ANCR压抑的乳腺癌细胞迁移和侵袭的异位表达。此外,我们在高度恶性和侵袭性MDA-231乳腺癌细胞中过表达ANCR的裸鼠模型中验证,显着降低了细胞形成肿瘤的能力,并在体内预防肺转移。基于这些数据,我们的发现通过将AnCR相互作用与EZH2连接促进其促进EZH2降解并抑制乳腺癌进展的磷酸化来定义EZH2稳定性的新机制。

著录项

  • 来源
    《Cell death and differentiation》 |2017年第1期|共13页
  • 作者单位

    Northeast Normal Univ Key Lab Mol Epigenet Minist Educ MOE Changchun 130024 Peoples R China;

    Northeast Normal Univ Inst Cytol &

    Genet 5268 Renmin St Changchun 130024 Peoples R China;

    Northeast Normal Univ Key Lab Mol Epigenet Minist Educ MOE Changchun 130024 Peoples R China;

    Northeast Normal Univ Key Lab Mol Epigenet Minist Educ MOE Changchun 130024 Peoples R China;

    Tumor Hosp Jilin Prov Breast Surg Changchun Peoples R China;

    Northeast Normal Univ Inst Cytol &

    Genet 5268 Renmin St Changchun 130024 Peoples R China;

    Northeast Normal Univ Key Lab Mol Epigenet Minist Educ MOE Changchun 130024 Peoples R China;

    Northeast Normal Univ Natl Engn Lab Druggable Gene &

    Prot Screening Changchun Peoples R China;

    Northeast Normal Univ Natl Engn Lab Druggable Gene &

    Prot Screening Changchun Peoples R China;

    Northeast Normal Univ Inst Cytol &

    Genet 5268 Renmin St Changchun 130024 Peoples R China;

    Northeast Normal Univ Key Lab Mol Epigenet Minist Educ MOE Changchun 130024 Peoples R China;

    Univ Auckland Liggins Inst Auckland New Zealand;

    Northeast Normal Univ Inst Cytol &

    Genet 5268 Renmin St Changchun 130024 Peoples R China;

    Northeast Normal Univ Key Lab Mol Epigenet Minist Educ MOE Changchun 130024 Peoples R China;

    Northeast Normal Univ Inst Cytol &

    Genet 5268 Renmin St Changchun 130024 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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