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miR-200 可通过非 ZEB1 依赖但肌球蛋白依赖的途径抑制乳腺癌转移。

MiR-200 can repress breast cancer metastasis through ZEB1-independent but moesin-dependent pathways.

机构信息

Division of Human Immunology, Centre for Cancer Biology, SA Pathology, Adelaide, South Australia, Australia.

1] Peter MacCallum Cancer Centre, St Andrews Place, East Melbourne, Victoria, Australia [2] Sir Peter MacCallum Department of Oncology, The University of Melbourne, Parkville, Victoria, Australia [3] Department of Pathology, The University of Melbourne, Parkville, Victoria, Australia [4] Department of Pharmacology, The University of Melbourne, Parkville, Victoria, Australia.

出版信息

Oncogene. 2014 Jul 31;33(31):4077-88. doi: 10.1038/onc.2013.370. Epub 2013 Sep 16.

Abstract

The microRNA-200 (miR-200) family has a critical role in regulating epithelial-mesenchymal transition and cancer cell invasion through inhibition of the E-cadherin transcriptional repressors ZEB1 and ZEB2. Recent studies have indicated that the miR-200 family may exert their effects at distinct stages in the metastatic process, with an overall effect of enhancing metastasis in a syngeneic mouse breast cancer model. We find in a xenograft orthotopic model of breast cancer metastasis that ectopic expression of members of the miR-200b/200c/429, but not the miR-141/200a, functional groups limits tumour cell invasion and metastasis. Despite modulation of the ZEB1-E-cadherin axis, restoration of ZEB1 in miR-200b-expressing cells was not able to alter metastatic potential suggesting that other targets contribute to this process. Instead, we found that miR-200b repressed several actin-associated genes, with the knockdown of the ezrin-radixin-moesin family member moesin alone phenocopying the repression of cell invasion by miR-200b. Moesin was verified to be directly targeted by miR-200b, and restoration of moesin in miR-200b-expressing cells was sufficient to alleviate metastatic repression. In breast cancer cell lines and patient samples, the expression of moesin significantly inversely correlated with miR-200 expression, and high levels of moesin were associated with poor relapse-free survival. These findings highlight the context-dependent effects of miR-200 in breast cancer metastasis and demonstrate the existence of a moesin-dependent pathway, distinct from the ZEB1-E-cadherin axis, through which miR-200 can regulate tumour cell plasticity and metastasis.

摘要

miR-200(微小 RNA-200)家族通过抑制 E-钙黏蛋白转录抑制因子 ZEB1 和 ZEB2,在调控上皮-间充质转化和癌细胞侵袭方面发挥着关键作用。最近的研究表明,miR-200 家族可能在转移过程的不同阶段发挥作用,在同基因小鼠乳腺癌模型中总体上增强转移。我们在乳腺癌转移的异种移植原位模型中发现,miR-200b/200c/429 成员的异位表达,但不是 miR-141/200a 的功能群,限制了肿瘤细胞的侵袭和转移。尽管调节了 ZEB1-E-钙黏蛋白轴,但在 miR-200b 表达细胞中恢复 ZEB1 并不能改变转移潜能,这表明其他靶标也参与了这个过程。相反,我们发现 miR-200b 抑制了几个与肌动蛋白相关的基因,敲低 ezrin-radixin-moesin 家族成员 moesin 本身就可以模拟 miR-200b 对细胞侵袭的抑制作用。Moesin 被证实是 miR-200b 的直接靶标,在 miR-200b 表达细胞中恢复 moesin 足以缓解转移抑制。在乳腺癌细胞系和患者样本中,moesin 的表达与 miR-200 的表达显著负相关,高水平的 moesin 与无病生存期差相关。这些发现强调了 miR-200 在乳腺癌转移中的上下文依赖性效应,并证明了存在一个依赖 moesin 的途径,与 ZEB1-E-钙黏蛋白轴不同,miR-200 可以通过该途径调节肿瘤细胞的可塑性和转移。

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