Andéol Yannick, Bonneau Jessica, M Gagné Laurence, Jacquet Kevin, Rivest Véronique, Huot Marc-Étienne, Séguin Carl
a Équipe Enzymologie de l'ARN, ER6, 9 quai St Bernard, Faculté des Sciences et Technologies, Sorbonne-Université, 75252 Paris, Cedex 05, France.
b Département de biologie moléculaire, de biochimie médicale et de pathologie, Faculté de médecine, Université Laval and Centre de recherche du CHU de Québec, Axe Oncologie, Hôtel Dieu de Québec, 9 rue McMahon, Québec, QC G1R 3S3, Canada.
Biochem Cell Biol. 2018 Apr 30:1-8. doi: 10.1139/bcb-2018-0073.
Metal-responsive transcription factor-1 (MTF-1) is a metal-regulatory transcription factor essential for induction of the genes encoding metallothioneins (MTs) in response to transition metal ions. Activation of MTF-1 is dependent on the interaction of zinc with the zinc fingers of the protein. In addition, phosphorylation is essential for MTF-1 transactivation. We previously showed that inhibition of phosphoinositide 3-kinase (PI3K) abrogated Mt expression and metal-induced MTF-1 activation in human hepatocellular carcinoma (HCC) HepG2 and mouse L cells, thus showing that the PI3K signaling pathway positively regulates MTF-1 activity and Mt gene expression. However, it has also been reported that inhibition of PI3K has no significant effects on Mt expression in immortalized epithelial cells and increases Mt expression in HCC cells. To further characterize the role of the PI3K pathway on the activity of MTF-1, transfection experiments were performed in HEK293 and HepG2 cells in presence of glycogen synthase kinase-3 (GSK-3), mTOR-C1, and mTOR-C2 inhibitors, as well as of siRNAs targeting Phosphatase and TENsin homolog (PTEN). We showed that inhibition of the mTOR-C2 complex inhibits the activity of MTF-1 in HepG2 and HEK293 cells, while inhibition of the mTOR-C1 complex or of PTEN stimulates MTF-1 activity in HEK293 cells. These results confirm that the PI3K pathway positively regulates MTF-1 activity. Finally, we showed that GSK-3 is required for MTF-1 activation in response to zinc ions.
金属反应转录因子1(MTF-1)是一种金属调节转录因子,对于响应过渡金属离子诱导编码金属硫蛋白(MTs)的基因至关重要。MTF-1的激活依赖于锌与该蛋白锌指的相互作用。此外,磷酸化对于MTF-1的反式激活必不可少。我们之前表明,抑制磷酸肌醇3激酶(PI3K)可消除人肝癌(HCC)HepG2细胞和小鼠L细胞中Mt的表达以及金属诱导的MTF-1激活,从而表明PI3K信号通路正向调节MTF-1活性和Mt基因表达。然而,也有报道称抑制PI3K对永生化上皮细胞中Mt的表达没有显著影响,而在HCC细胞中会增加Mt的表达。为了进一步阐明PI3K通路对MTF-1活性的作用,在糖原合酶激酶-3(GSK-3)、mTOR-C1和mTOR-C2抑制剂以及靶向磷酸酶和张力蛋白同源物(PTEN)的小干扰RNA(siRNA)存在的情况下,在HEK293和HepG2细胞中进行了转染实验。我们发现抑制mTOR-C2复合物可抑制HepG2和HEK293细胞中MTF-1的活性,而抑制mTOR-C1复合物或PTEN可刺激HEK293细胞中MTF-1的活性。这些结果证实PI3K通路正向调节MTF-1活性。最后,我们表明GSK-3是MTF-1响应锌离子激活所必需的。