Department of Medicine, University of Wisconsin, Carbone Cancer Center, Madison, Wisconsin, USA.
Department of Dermatology, University of Wisconsin, Madison, Wisconsin, USA.
J Invest Dermatol. 2013 Mar;133(3):759-767. doi: 10.1038/jid.2012.355. Epub 2012 Oct 25.
Melanoma-associated antigen-encoding (MAGE) genes are expressed in melanoma and other cancers but not in normal somatic cells. MAGE expression is associated with aggressive tumor growth, poor clinical outcome, and resistance to chemotherapy, but the mechanisms have not been completely elucidated. In this study, we show that downregulation of MAGE-C2 in A375 melanoma cells and low-passage cultures from human metastatic melanomas (MRA cells) results in increased apoptosis and decreased growth of tumor xenografts in athymic nude mice. Previously, we showed that MAGE-C2 binds KAP1, a scaffolding protein that regulates DNA repair. Phosphorylation of KAP1-Serine 824 (Ser824) by ataxia-telangiectasia-mutated (ATM) kinase is necessary for repair of DNA double-strand breaks (DSBs); now we show that MAGE-C2 knockdown reduces, whereas MAGE-C2 overexpression increases, ATM kinase-dependent phosphorylation of KAP1-Ser824. We demonstrate that MAGE-C2 increases co-precipitation of KAP1 with ATM and that binding of MAGE-C2 to KAP1 is necessary for increased KAP1-Ser824 phosphorylation. Furthermore, ectopic expression of MAGE-C2 enhances repair of I-SceI endonuclease-induced DSBs in U-2OS cells. As phosphorylation of KAP1-Ser824 facilitates relaxation of heterochromatin, which is necessary for DNA repair and cellular proliferation, our results suggest that MAGE-C2 can promote tumor growth by phosphorylation of KAP1-Ser824 and by enhancement of DNA damage repair.
黑色素瘤相关抗原编码(MAGE)基因在黑色素瘤和其他癌症中表达,但不在正常体细胞中表达。MAGE 表达与肿瘤生长侵袭性、不良临床预后和化疗耐药相关,但机制尚未完全阐明。在本研究中,我们发现下调 A375 黑色素瘤细胞和人转移性黑色素瘤低传代培养物(MRA 细胞)中的 MAGE-C2 可导致裸鼠异种移植肿瘤细胞凋亡增加和生长减少。此前,我们发现 MAGE-C2 与 KAP1 结合,KAP1 是一种调节 DNA 修复的支架蛋白。ATM 激酶对 KAP1 丝氨酸 824(Ser824)的磷酸化是修复 DNA 双链断裂(DSBs)所必需的;现在我们发现 MAGE-C2 敲低会减少,而 MAGE-C2 过表达会增加,ATM 激酶依赖性 KAP1-Ser824 磷酸化。我们证明 MAGE-C2 减少了 KAP1 与 ATM 的共沉淀,而 MAGE-C2 与 KAP1 的结合对于增加 KAP1-Ser824 磷酸化是必需的。此外,外源性表达 MAGE-C2 增强了 U-2OS 细胞中 I-SceI 内切酶诱导的 DSBs 的修复。由于 KAP1-Ser824 的磷酸化促进异染色质松弛,这对于 DNA 修复和细胞增殖是必需的,我们的结果表明,MAGE-C2 可以通过 KAP1-Ser824 的磷酸化和增强 DNA 损伤修复来促进肿瘤生长。