Musarò Mariarosaria, Ciapponi Laura, Fasulo Barbara, Gatti Maurizio, Cenci Giovanni
Dipartimento di Scienze e Tecnologie Biologiche ed Ambientali (DiSTeBA), Università del Salento, Lecce 73100, Italy.
Nat Genet. 2008 Mar;40(3):362-6. doi: 10.1038/ng.2007.64. Epub 2008 Feb 3.
In both yeast and mammals, uncapped telomeres activate the DNA damage response (DDR) and undergo end-to-end fusion. Previous work has shown that the Drosophila HOAP protein, encoded by the caravaggio (cav) gene, is required to prevent telomeric fusions. Here we show that HOAP-depleted telomeres activate both the DDR and the spindle assembly checkpoint (SAC). The cell cycle arrest elicited by the DDR was alleviated by mutations in mei-41 (encoding ATR), mus304 (ATRIP), grp (Chk1) and rad50 but not by mutations in tefu (ATM). The SAC was partially overridden by mutations in zw10 (also known as mit(1)15) and bubR1, and also by mutations in mei-41, mus304, rad50, grp and tefu. As expected from SAC activation, the SAC proteins Zw10, Zwilch, BubR1 and Cenp-meta (Cenp-E) accumulated at the kinetochores of cav mutant cells. Notably, BubR1 also accumulated at cav mutant telomeres in a mei-41-, mus304-, rad50-, grp- and tefu-dependent manner. Our results collectively suggest that recruitment of BubR1 by dysfunctional telomeres inhibits Cdc20-APC function, preventing the metaphase-to-anaphase transition.
在酵母和哺乳动物中,无帽端粒会激活DNA损伤反应(DDR)并发生端对端融合。先前的研究表明,果蝇中由卡拉瓦乔(cav)基因编码的HOAP蛋白是防止端粒融合所必需的。在此我们表明,HOAP缺失的端粒会激活DDR和纺锤体组装检查点(SAC)。由DDR引发的细胞周期停滞可通过mei-41(编码ATR)、mus304(ATRIP)、grp(Chk1)和rad50的突变得到缓解,但不能通过tefu(ATM)的突变得到缓解。SAC会被zw10(也称为mit(1)15)和bubR1的突变部分克服,也会被mei-41、mus304、rad50、grp和tefu的突变克服。正如从SAC激活所预期的那样,SAC蛋白Zw10、Zwilch、BubR1和Cenp-meta(Cenp-E)在cav突变体细胞的动粒处积累。值得注意的是,BubR1也以mei-41、mus304、rad50、grp和tefu依赖的方式在cav突变体端粒处积累。我们的结果共同表明,功能失调的端粒招募BubR1会抑制Cdc20-APC功能,从而阻止中期到后期的转变。