Lee Changrim, Hong Seokbong, Lee Min Hye, Koo Hyeon-Sook
Department of Biochemistry, College of Life Science & Biotechnology, Yonsei University, Seoul, Republic of Korea.
PLoS One. 2015 Apr 8;10(4):e0123865. doi: 10.1371/journal.pone.0123865. eCollection 2015.
PHF8 is a JmjC domain-containing histone demethylase, defects in which are associated with X-linked mental retardation. In this study, we examined the roles of two PHF8 homologs, JMJD-1.1 and JMJD-1.2, in the model organism C. elegans in response to DNA damage. A deletion mutation in either of the genes led to hypersensitivity to interstrand DNA crosslinks (ICLs), while only mutation of jmjd-1.1 resulted in hypersensitivity to double-strand DNA breaks (DSBs). In response to ICLs, JMJD-1.1 did not affect the focus formation of FCD-2, a homolog of FANCD2, a key protein in the Fanconi anemia pathway. However, the dynamic behavior of RPA-1 and RAD-51 was affected by the mutation: the accumulations of both proteins at ICLs appeared normal, but their subsequent disappearance was retarded, suggesting that later steps of homologous recombination were defective. Similar changes in the dynamic behavior of RPA-1 and RAD-51 were seen in response to DSBs, supporting a role of JMJD-1.1 in homologous recombination. Such a role was also supported by our finding that the hypersensitivity of jmjd-1.1 worms to ICLs was rescued by knockdown of lig-4, a homolog of Ligase 4 active in nonhomologous end-joining. The hypersensitivity of jmjd-1.1 worms to ICLs was increased by rad-54 knockdown, suggesting that JMJD-1.1 acts in parallel with RAD-54 in modulating chromatin structure. Indeed, the level of histone H3 Lys9 tri-methylation, a marker of heterochromatin, was higher in jmjd-1.1 cells than in wild-type cells. We conclude that the histone demethylase JMJD-1.1 influences homologous recombination either by relaxing heterochromatin structure or by indirectly regulating the expression of multiple genes affecting DNA repair.
PHF8是一种含JmjC结构域的组蛋白去甲基化酶,其缺陷与X连锁智力迟钝相关。在本研究中,我们检测了两种PHF8同源物JMJD-1.1和JMJD-1.2在模式生物秀丽隐杆线虫中对DNA损伤的反应中的作用。任一基因的缺失突变都会导致对链间DNA交联(ICL)超敏,而只有jmjd-1.1的突变会导致对双链DNA断裂(DSB)超敏。在对ICL的反应中,JMJD-1.1不影响FCD-2(范可尼贫血途径中的关键蛋白FANCD2的同源物)的焦点形成。然而,RPA-1和RAD-51的动态行为受到该突变的影响:两种蛋白在ICL处的积累看起来正常,但它们随后的消失延迟,这表明同源重组的后期步骤存在缺陷。在对DSB的反应中也观察到了RPA-1和RAD-51动态行为的类似变化,支持了JMJD-1.1在同源重组中的作用。我们的发现也支持了这一作用,即通过敲低在非同源末端连接中起作用的连接酶4的同源物lig-4,可以挽救jmjd-1.1蠕虫对ICL的超敏性。敲低rad-54会增加jmjd-1.1蠕虫对ICL的超敏性,这表明JMJD-1.1在调节染色质结构方面与RAD-54平行发挥作用。事实上,异染色质标记物组蛋白H3赖氨酸9三甲基化水平在jmjd-1.1细胞中高于野生型细胞。我们得出结论,组蛋白去甲基化酶JMJD-1.1通过放松异染色质结构或间接调节影响DNA修复的多个基因的表达来影响同源重组。