Institute of Drug Research, School of Pharmacy, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem, Israel.
Clin Exp Metastasis. 2010 Mar;27(3):161-72. doi: 10.1007/s10585-010-9315-2. Epub 2010 Mar 7.
The present study investigated the intracellular regulation of E-cadherin in ovarian carcinoma. E-cadherin expression and regulation by Snail and Pak1 were studied in ES-2 and OVCAR-3 ovarian cancer cells in vitro. Twist1, Zeb1 and Vimentin mRNA expression and HIF-1alpha protein expression were analyzed in 80 and 189 clinical specimens, respectively. OVCAR-3 cells incubated with an anti-E-cadherin antibody formed smaller and looser spheroids compared to controls. Snail silencing using Small Hairpin RNA in ES-2 cells reduced invasion and MMP-2 activity, with unaltered cellular morphology. Using dominant negative (DN) and constitutively active (CA) Pak1 constructs, we found that DN Pak1 ES-2 and OVCAR-3 clones had reduced attachment to matrix proteins, invasion and MMP-2 activity compared to CA and wild-type cells. DN Pak1 ES-2 cells also bound less to LP9 mesothelial cells. DN Pak1 OVCAR-3 cells had lower Vimentin levels. Snail expression was lower in cultured effusions compared to primary carcinomas, and was cytoplasmic rather than nuclear. Twist1 (P < 0.001), Zeb1 (P = 0.003) and Vimentin (P = 0.03) mRNA expression was significantly higher in solid metastases compared to primary carcinomas and effusions. HIF-1alpha protein expression was lower in effusions compared to primary carcinomas and solid metastases (P = 0.033). Our data suggest that the previously reported E-cadherin re-expression in ovarian carcinoma effusions is regulated by Pak1. The transient nature of E-cadherin expression during ovarian carcinoma progression is probably the result of partial epithelial-to-mesenchymal transition (EMT) and the reverse process of mesenchymal-to-epithelial-like transition (MET). Expression of the EMT-related molecules Twist, Zeb1, Vimentin and HIF-1alpha is anatomic site-dependent in ovarian carcinoma.
本研究探讨了卵巢癌中 E-钙黏蛋白的细胞内调控。在体外研究了 ES-2 和 OVCAR-3 卵巢癌细胞中 Snail 和 Pak1 对 E-钙黏蛋白表达和调节的作用。分析了 80 例和 189 例临床标本中 Twist1、Zeb1 和 Vimentin mRNA 的表达和 HIF-1alpha 蛋白的表达。与对照组相比,用抗 E-钙黏蛋白抗体孵育的 OVCAR-3 细胞形成的球体更小、更疏松。用小发夹 RNA 沉默 ES-2 细胞中的 Snail 可减少侵袭和 MMP-2 活性,而细胞形态不变。使用显性失活(DN)和组成型激活(CA)Pak1 构建体,我们发现与 CA 和野生型细胞相比,DN Pak1 ES-2 和 OVCAR-3 克隆对基质蛋白的附着、侵袭和 MMP-2 活性降低。DN Pak1 ES-2 细胞与 LP9 间皮细胞的结合也较少。DN Pak1 OVCAR-3 细胞的 Vimentin 水平较低。与原发性癌相比,培养渗出液中的 Snail 表达较低,且位于细胞质中而不是细胞核中。与原发性癌和渗出液相比,实体转移中的 Twist1(P < 0.001)、Zeb1(P = 0.003)和 Vimentin(P = 0.03)mRNA 表达显著升高。与原发性癌和实体转移相比,渗出液中的 HIF-1alpha 蛋白表达较低(P = 0.033)。我们的数据表明,先前报道的卵巢癌渗出液中 E-钙黏蛋白的重新表达受 Pak1 调节。卵巢癌进展过程中 E-钙黏蛋白表达的短暂性可能是部分上皮-间充质转化(EMT)和间充质-上皮样转化(MET)的反向过程的结果。EMT 相关分子 Twist、Zeb1、Vimentin 和 HIF-1alpha 的表达在卵巢癌中与解剖部位有关。