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Loss of the SUMO protease Ulp2 triggers a specific multichromosome aneuploidy

机译:SUMO蛋白酶Ulp2的丢失触发特定的多染色体非整倍性

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Post-translational protein modification by the small ubiquitin-related modifier (SUMO) regulates numerous cellular pathways, including transcription, cell division, and genome maintenance. The SUMO protease Ulp2 modulates many of these SUMO-dependent processes in budding yeast. From whole-genome RNA sequencing (RNA-seq), we unexpectedly discovered that cells lacking Ulp2 display a twofold increase in transcript levels across two particular chromosomes: chromosome I (ChrI) and ChrXII. This is due to the two chromosomes being present at twice their normal copy number. An abnormal number of chromosomes, termed aneuploidy, is usually deleterious. However, development of specific aneuploidies allows rapid adaptation to cellular stresses, and aneuploidy characterizes most human tumors. Extra copies of ChrI and ChrXII appear quickly following loss of active Ulp2 and can be eliminated following reintroduction of ULP2, suggesting that aneuploidy is a reversible adaptive mechanism to counteract loss of the SUMO protease. Importantly, increased dosage of two genes on ChrI-CLN3 and CCR4, encoding a G(1)-phase cyclin and a subunit of the Ccr4-Not deadenylase complex, respectively-suppresses ulp2 Delta aneuploidy, suggesting that increased levels of these genes underlie the aneuploidy induced by Ulp2 loss. Our results reveal a complex aneuploidy mechanism that adapts cells to loss of the SUMO protease Ulp2.
机译:泛素相关小修饰子(SUMO)修饰的翻译后蛋白可调节多种细胞途径,包括转录,细胞分裂和基因组维持。 SUMO蛋白酶Ulp2调节发芽酵母中许多此类SUMO依赖性过程。通过全基因组RNA测序(RNA-seq),我们意外地发现缺少Ulp2的细胞在两个特定染色体:I染色体(ChrI)和ChrXII的转录水平上显示出两倍的增加。这是由于两条染色体以正常拷贝数的两倍存在。异常数量的染色体,称为非整倍性,通常是有害的。然而,特定非整倍性的发展允许快速适应细胞压力,并且非整倍性是大多数人类肿瘤的特征。多余的ChrI和ChrXII副本会在失去活性的Ulp2之后迅速出现,并且在重新引入ULP2之后可以消除,这表明非整倍性是可逆的适应机制,可以抵消SUMO蛋白酶的丢失。重要的是,ChrI-CLN3和CCR4上两个基因的剂量增加,分别编码G(1)期细胞周期蛋白和Ccr4-Not腺苷酸酶复合物的一个亚基,抑制ulp2 Delta非整倍性,提示这些基因的水平升高是Ulp2丢失引起的非整倍性。我们的结果揭示了使细胞适应SUMO蛋白酶Ulp2损失的复杂非整倍性机制。

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