RAC1 activation mediates Twist1-induced cancer cell migration

被引:0
|
作者
Wen-Hao Yang
Hsin-Yi Lan
Chi-Hung Huang
Shyh-Kuan Tai
Cheng-Hwai Tzeng
Shou-Yen Kao
Kou-Juey Wu
Mien-Chie Hung
Muh-Hwa Yang
机构
[1] Institute of Clinical Medicine,Department of Otolaryngology
[2] National Yang-Ming University,Division of Hematology
[3] Taiwan Advance Biopharm,Oncology, Departments of Medicine
[4] Graduate School of Biotechnology,Department of Stomatology
[5] Hung-Kuang University,Department of Molecular and Cellular Oncology
[6] Taipei Veterans General Hospital,undefined
[7] Taipei Veterans General Hospital,undefined
[8] Taipei Veterans General Hospital,undefined
[9] Institute of Biochemistry and Molecular Biology,undefined
[10] National Yang-Ming University,undefined
[11] Head And Neck Cancer Research Program,undefined
[12] National Yang-Ming University,undefined
[13] The University of Texas M.D. Anderson Cancer Center,undefined
[14] The Center for Molecular Medicine,undefined
[15] Graduate Institute of Cancer Biology,undefined
[16] China Medical University,undefined
[17] Institute of Biotechnology in Medicine,undefined
[18] National Yang-Ming University,undefined
[19] Present address: Institute of Clinical Medicine,undefined
[20] National Yang-Ming University,undefined
[21] No. 155,undefined
[22] Sec. 2,undefined
[23] Li-Nong St.,undefined
[24] Peitou,undefined
[25] Taipei 112,undefined
[26] Taiwan,undefined
来源
Nature Cell Biology | 2012年 / 14卷
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摘要
Epithelial–mesenchymal transition (EMT), which is characterized by the suppression of the adhesion protein E-cadherin, is a crucial process that promotes metastasis and stem-like properties of cancer cells. However, the dissociation of cellular aggregates is not sufficient to explain why cancer cells move, and the motile nature of cancer cells undergoing EMT remains elusive. Here, we identify a mechanism in which the EMT inducer Twist1 elicits cancer cell movement through activation of RAC1. Twist1 cooperates with BMI1 to suppress let-7i expression, which results in upregulation of NEDD9 and DOCK3, leading to RAC1 activation and enabling mesenchymal-mode movement in three-dimensional environments. Moreover, the suppression of let-7i contributes to Twist1-induced stem-like properties. Clinically, activation of the Twist1–let-7i–NEDD9 axis in head and neck cancer patients correlates with tumour invasiveness and worse outcome. Our results uncover an essential mechanism to explain how Twist1 induces the motile stem-like cancer cell phenotype beyond simply suppressing E-cadherin.
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页码:366 / 374
页数:8
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