Kpetemey Marilyne, Chaudhary Pankaj, Van Treuren Timothy, Vishwanatha Jamboor K
Department of Molecular and Medical Genetics, Institute for Cancer Research, and The Texas Center for Health Disparities, University of North Texas Health Science Center, Fort Worth, TX 76107, USA.
Oncotarget. 2016 Aug 23;7(34):54913-54924. doi: 10.18632/oncotarget.10798.
Migration and invasion enhancer 1 (MIEN1) is an important regulator of cell migration and invasion. MIEN1 overexpression represents an oncogenic event that promotes tumor cell dissemination and metastasis. The underlying mechanism by which MIEN1 regulates migration and invasion has yet to be deciphered. Here, we demonstrate that MIEN1 acts as a cytoskeletal-signaling adapter protein to drive breast cancer cell migration. MIEN1 localization is concentrated underneath the actin-enriched protrusive structures of the migrating breast cancer cells. Depletion of MIEN1 led to the loss of actin-protrusive structures whereas the over-expression of MIEN1 resulted in rich and thick membrane extensions. Knockdown of MIEN1 also decreased the cell-substratum adhesion, suggesting a role for MIEN1 in actin cytoskeletal dynamics. Our results show that MIEN1 supports the transition of G-actin to F-actin polymerization and stabilizes F-actin polymers. Additionally, MIEN1 promotes cellular adhesion and actin dynamics by inducing phosphorylation of FAK at Tyr-925 and reducing phosphorylation of cofilin at Ser-3, which results in breast cancer cell migration. Collectively, our data show that MIEN1 plays an essential role in maintaining the plasticity of the dynamic membrane-associated actin cytoskeleton, which leads to an increase in cell motility. Hence, targeting MIEN1 might represent a promising means to prevent breast tumor metastasis.
迁移和侵袭增强因子1(MIEN1)是细胞迁移和侵袭的重要调节因子。MIEN1的过表达代表一种致癌事件,可促进肿瘤细胞的扩散和转移。MIEN1调节迁移和侵袭的潜在机制尚未完全阐明。在此,我们证明MIEN1作为一种细胞骨架信号衔接蛋白来驱动乳腺癌细胞迁移。MIEN1定位于迁移的乳腺癌细胞中富含肌动蛋白的突出结构下方。MIEN1的缺失导致肌动蛋白突出结构的丧失,而MIEN1的过表达则导致丰富且粗大的膜延伸。敲低MIEN1也会降低细胞与基质的黏附,表明MIEN1在肌动蛋白细胞骨架动力学中发挥作用。我们的结果表明,MIEN1支持G-肌动蛋白向F-肌动蛋白聚合的转变并稳定F-肌动蛋白聚合物。此外,MIEN1通过诱导FAK在Tyr-925位点的磷酸化和减少cofilin在Ser-3位点的磷酸化来促进细胞黏附和肌动蛋白动力学,从而导致乳腺癌细胞迁移。总体而言,我们的数据表明MIEN1在维持动态膜相关肌动蛋白细胞骨架的可塑性中起重要作用,这导致细胞运动性增加。因此,靶向MIEN1可能是预防乳腺肿瘤转移的一种有前景的方法。