Tarailo-Graovac Maja, Wong Tammy, Qin Zhaozhao, Flibotte Stephane, Taylor Jon, Moerman Donald G, Rose Ann M, Chen Nansheng
a Department of Molecular Biology and Biochemistry ; Simon Fraser University ; Burnaby , BC Canada.
Cell Cycle. 2014;13(19):3089-199. doi: 10.4161/15384101.2014.949491.
Spindle assembly checkpoint (SAC) ensures genome stability by delaying anaphase onset until all the chromosomes have achieved proper spindle attachment. Once correct attachment has been achieved, SAC must be silenced. In the absence of mdf-1/MAD1, an essential SAC component, Caenorhabditis elegans cannot propagate beyond 3 generations. Previously, in a dog-1(gk10)/FANCJ mutator background, we isolated a suppressor of mdf-1(gk2) sterility (such-4) which allowed indefinite propagation in the absence of MDF-1. We showed that such-4 is a Cyclin B3 (cyb-3) duplication. Here we analyze mdf-1 such-4; dog-1, which we propagated for 470 generations, with freezing of samples for long time storage at F170 and F270. Phenotypic analysis of this strain revealed additional suppression of sterility in the absence of MDF-1, beyond the effects of such-4. We applied oligonucleotide array Comparative Genomic Hybridization (oaCGH) and whole genome sequencing (WGS) and identified a further amplification of cyb-3 (triplication) and a new missense mutation in dynein heavy chain (dhc-1). We show that dhc-1(dot168) suppresses the mdf-1(gk2), and is the second cloned suppressor, next to cyb-3 duplication, that does not cause a delay in anaphase onset. We also show that amplification of cyb-3 and dhc-1(dot168) cooperate to increase fitness in the absence of MDF-1.
纺锤体组装检查点(SAC)通过延迟后期开始,直到所有染色体都实现了正确的纺锤体附着,从而确保基因组稳定性。一旦实现了正确附着,SAC必须被沉默。在缺乏必需的SAC组件mdf-1/MAD1的情况下,秀丽隐杆线虫无法繁殖超过3代。此前,在dog-1(gk10)/FANCJ突变体背景下,我们分离出了mdf-1(gk2)不育的抑制因子(such-4),它允许在没有MDF-1的情况下无限繁殖。我们表明such-4是细胞周期蛋白B3(cyb-3)的重复。在这里,我们分析了mdf-1 such-4; dog-1,我们将其繁殖了470代,并在F170和F270冷冻样本以长期保存。对该菌株的表型分析揭示了在没有MDF-1的情况下,除了such-4的影响之外,不育现象还有额外的抑制作用。我们应用寡核苷酸阵列比较基因组杂交(oaCGH)和全基因组测序(WGS),并鉴定出cyb-3的进一步扩增(三倍体)和动力蛋白重链(dhc-1)中的一个新的错义突变。我们表明dhc-1(dot168)抑制mdf-1(gk2),并且是第二个被克隆的抑制因子,仅次于cyb-3重复,它不会导致后期开始延迟。我们还表明cyb-3的扩增和dhc-1(dot168)协同作用,以在没有MDF-1的情况下提高适应性。