Division of Pharmacology and Toxicology, Center for Molecular and Cellular Toxicology, College of Pharmacy, The University of Texas at Austin, Austin, Texas, United States of America.
PLoS One. 2010 May 3;5(5):e10443. doi: 10.1371/journal.pone.0010443.
Oncogenes induce cell proliferation leading to replicative stress, DNA damage and genomic instability. A wide variety of cellular stresses activate c-Jun N-terminal kinase (JNK) proteins, but few studies have directly addressed the roles of JNK isoforms in tumor development. Herein, we show that jnk2 knockout mice expressing the Polyoma Middle T Antigen transgene developed mammary tumors earlier and experienced higher tumor multiplicity compared to jnk2 wildtype mice. Lack of jnk2 expression was associated with higher tumor aneuploidy and reduced DNA damage response, as marked by fewer pH2AX and 53BP1 nuclear foci. Comparative genomic hybridization further confirmed increased genomic instability in PyV MT/jnk2-/- tumors. In vitro, PyV MT/jnk2-/- cells underwent replicative stress and cell death as evidenced by lower BrdU incorporation, and sustained chromatin licensing and DNA replication factor 1 (CDT1) and p21(Waf1) protein expression, and phosphorylation of Chk1 after serum stimulation, but this response was not associated with phosphorylation of p53 Ser15. Adenoviral overexpression of CDT1 led to similar differences between jnk2 wildtype and knockout cells. In normal mammary cells undergoing UV induced single stranded DNA breaks, JNK2 localized to RPA (Replication Protein A) coated strands indicating that JNK2 responds early to single stranded DNA damage and is critical for subsequent recruitment of DNA repair proteins. Together, these data support that JNK2 prevents replicative stress by coordinating cell cycle progression and DNA damage repair mechanisms.
癌基因诱导细胞增殖,导致复制应激、DNA 损伤和基因组不稳定性。许多细胞应激都会激活 c-Jun N 端激酶(JNK)蛋白,但很少有研究直接探讨 JNK 同工型在肿瘤发生中的作用。本文中,我们发现表达 Polyoma Middle T Antigen 转基因的 jnk2 敲除小鼠比 jnk2 野生型小鼠更早地发展出乳腺肿瘤,并且肿瘤多发性更高。缺乏 jnk2 表达与更高的肿瘤非整倍体和降低的 DNA 损伤反应有关,表现为更少的 pH2AX 和 53BP1 核焦点。比较基因组杂交进一步证实了 PyV MT/jnk2-/- 肿瘤中基因组不稳定性的增加。在体外,PyV MT/jnk2-/-细胞经历了复制应激和细胞死亡,这表现为 BrdU 掺入减少,并且持续的染色质许可和 DNA 复制因子 1(CDT1)和 p21(Waf1)蛋白表达,以及血清刺激后 Chk1 的磷酸化,但这种反应与 p53 Ser15 的磷酸化无关。CDT1 的腺病毒过表达导致 jnk2 野生型和敲除细胞之间出现类似差异。在经历 UV 诱导的单链 DNA 断裂的正常乳腺细胞中,JNK2 定位于 RPA(复制蛋白 A)包被的链上,表明 JNK2 对单链 DNA 损伤早期反应,并对随后的 DNA 修复蛋白募集至关重要。综上所述,这些数据支持 JNK2 通过协调细胞周期进程和 DNA 损伤修复机制来防止复制应激。