Cheng I-Cheng, Chen Betty Chamay, Shuai Hung-Hsun, Chien Fan-Ching, Chen Peilin, Hsieh Tao-shih
Institute of Cellular and Organismic Biology, Academia Sinica, Taipei, Taiwan.
Department of Optics and Photonics, National Central University, Chung-Li, Taiwan.
PLoS Biol. 2016 Jan 11;14(1):e1002349. doi: 10.1371/journal.pbio.1002349. eCollection 2016 Jan.
Replication forks are vulnerable to wayward nuclease activities. We report here our discovery of a new member in guarding genome stability at replication forks. We previously isolated a Drosophila mutation, wuho (wh, no progeny), characterized by a severe fertility defect and affecting expression of a protein (WH) in a family of conserved proteins with multiple WD40 repeats. Knockdown of WH by siRNA in Drosophila, mouse, and human cultured cells results in DNA damage with strand breaks and apoptosis through ATM/Chk2/p53 signaling pathway. Mice with mWh knockout are early embryonic lethal and display DNA damage. We identify that the flap endonuclease 1 (FEN1) is one of the interacting proteins. Fluorescence microscopy showed the localization of WH at the site of nascent DNA synthesis along with other replication proteins, including FEN1 and PCNA. We show that WH is able to modulate FEN1's endonucleolytic activities depending on the substrate DNA structure. The stimulatory or inhibitory effects of WH on FEN1's flap versus gap endonuclease activities are consistent with the proposed WH's functions in protecting the integrity of replication fork. These results suggest that wh is a new member of the guardians of genome stability because it regulates FEN1's potential DNA cleavage threat near the site of replication.
复制叉易受异常核酸酶活性的影响。我们在此报告我们在保护复制叉处的基因组稳定性方面发现的一个新成员。我们之前分离出一种果蝇突变体,无后代(wuho,wh),其特征是严重的生育缺陷,并影响一个具有多个WD40重复序列的保守蛋白家族中一种蛋白(WH)的表达。在果蝇、小鼠和人类培养细胞中通过小干扰RNA敲低WH会导致DNA损伤并伴有链断裂,且通过ATM/Chk2/p53信号通路引发细胞凋亡。敲除mWh的小鼠在胚胎早期致死并表现出DNA损伤。我们确定瓣状核酸内切酶1(FEN1)是相互作用蛋白之一。荧光显微镜显示WH与其他复制蛋白,包括FEN1和增殖细胞核抗原(PCNA)一起定位于新生DNA合成位点。我们表明,WH能够根据底物DNA结构调节FEN1的核酸内切酶活性。WH对FEN1的瓣状核酸酶与缺口核酸酶活性的刺激或抑制作用与所提出的WH在保护复制叉完整性方面的功能一致。这些结果表明,wh是基因组稳定性守护者的一个新成员,因为它调节FEN1在复制位点附近潜在的DNA切割威胁。