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ERK2 通过抑制 Rab17 和 liprin-β2 的表达来驱动肿瘤细胞在三维微环境中的迁移。

ERK2 drives tumour cell migration in three-dimensional microenvironments by suppressing expression of Rab17 and liprin-β2.

机构信息

Beatson Institute for Cancer Research, Glasgow, G61 1BD, UK.

出版信息

J Cell Sci. 2012 Mar 15;125(Pt 6):1465-77. doi: 10.1242/jcs.092916. Epub 2012 Feb 10.

Abstract

Upregulation of the extracellular signal-regulated kinase (ERK) pathway has been shown to contribute to tumour invasion and progression. Because the two predominant ERK isoforms (ERK1 and ERK2, also known as MAPK3 and MAPK1, respectively) are highly homologous and have indistinguishable kinase activities in vitro, both enzymes were believed to be redundant and interchangeable. To challenge this view, we show that ERK2 silencing inhibits invasive migration of MDA-MB-231 cells, and re-expression of ERK2 but not ERK1 restores the normal invasive phenotype. A detailed quantitative analysis of cell movement on 3D matrices indicates that ERK2 knockdown impairs cellular motility by decreasing the migration velocity as well as increasing the time that cells spend not moving. Using gene expression arrays we found that the expression of the genes for Rab17 and liprin-β2 was increased by knockdown of ERK2 and restored to normal levels following re-expression of ERK2, but not ERK1. Both play inhibitory roles in the invasive behaviour of three independent cancer cell lines. Importantly, knockdown of either Rab17 or liprin-β2 restores invasiveness of ERK2-depleted cells, indicating that ERK2 drives invasion of MDA-MB-231 cells by suppressing expression of these genes.

摘要

细胞外信号调节激酶(ERK)通路的上调已被证明有助于肿瘤的侵袭和进展。由于两种主要的 ERK 同工型(ERK1 和 ERK2,也分别称为 MAPK3 和 MAPK1,在体外具有高度同源性和不可区分的激酶活性),因此两种酶被认为是冗余和可互换的。为了挑战这一观点,我们表明 ERK2 沉默抑制 MDA-MB-231 细胞的侵袭性迁移,并且 ERK2 的重新表达而不是 ERK1 恢复正常的侵袭表型。对细胞在 3D 基质上的运动进行详细的定量分析表明,ERK2 敲低通过降低迁移速度以及增加细胞不运动的时间来损害细胞的迁移能力。使用基因表达谱分析,我们发现 Rab17 和 liprin-β2 的基因表达在 ERK2 敲低后增加,并在 ERK2 重新表达后恢复正常水平,但 ERK1 则不然。这两者在三种独立的癌细胞系的侵袭行为中都起到抑制作用。重要的是,Rab17 或 liprin-β2 的敲低恢复了 ERK2 耗尽细胞的侵袭性,表明 ERK2 通过抑制这些基因的表达来驱动 MDA-MB-231 细胞的侵袭。

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