Dang Tongyun, Bao Shideng, Wang Xiao-Fan
Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, NC 27710, USA.
Genes Cells. 2005 Apr;10(4):287-95. doi: 10.1111/j.1365-2443.2005.00840.x.
In response to DNA damage or replication block, cells activate a battery of checkpoint signaling cascades to control cell cycle progression and elicit DNA repair in order to maintain genomic stability and integrity. Identified as a homolog of its fission yeast counterpart, human Rad9 was proposed to form a Rad9-Hus1-Rad1 protein complex to mediate checkpoint signals. However, the precise function of Rad9 in the process of checkpoint activation is not fully understood. Using the RNA interference technique, we investigated the role of Rad9 in the genotoxic stress-induced activation of S-phase checkpoint and the maintenance of chromosomal stability. We found that Rad9 knockdown reduced the phosphorylation of Rad17, Chk1 and Smc1 in response to DNA replication block and certain types of DNA damage. Immunofluorescence studies showed that the removal of Rad9 disrupted the foci formation of phosphorylated Chk1, but not ATR. Moreover, Rad9 knockdown resulted in radioresistant DNA synthesis and reduced cell viability under replication stress. Finally, removal of Rad9 by RNAi led to increased accumulation of spontaneous chromosomal aberrations. Taken together, these results suggest a critical and specific role of Rad9 in the activation of S-phase checkpoint and the maintenance of chromosome stability.
为响应DNA损伤或复制阻滞,细胞会激活一系列检查点信号级联反应,以控制细胞周期进程并引发DNA修复,从而维持基因组的稳定性和完整性。人类Rad9被鉴定为与其裂殖酵母对应物的同源物,有人提出它会形成Rad9-Hus1-Rad1蛋白复合物来介导检查点信号。然而,Rad9在检查点激活过程中的精确功能尚未完全明确。利用RNA干扰技术,我们研究了Rad9在基因毒性应激诱导的S期检查点激活及染色体稳定性维持中的作用。我们发现,敲低Rad9会降低DNA复制阻滞和某些类型DNA损伤时Rad17、Chk1和Smc1的磷酸化水平。免疫荧光研究表明,去除Rad9会破坏磷酸化Chk1的焦点形成,但不会影响ATR。此外,敲低Rad9会导致复制应激下出现耐辐射DNA合成并降低细胞活力。最后,通过RNA干扰去除Rad9会导致自发染色体畸变的积累增加。综上所述,这些结果表明Rad9在S期检查点激活和染色体稳定性维持中起着关键且特定的作用。