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The conserved Fanconi anemia nuclease Fan1 and the SUMO E3 ligase Pli1 act in two novel Pso2-independent pathways of DNA interstrand crosslink repair in yeast

机译:保守的Fanconi贫血核酸酶Fan1和sUmO E3连接酶pli1在酵母DNa链间交联修复的两个独立的pso2非依赖性途径中起作用。

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摘要

DNA interstrand cross-links (ICLs) represent a physical barrier to the progression of cellular machinery involved in DNA metabolism. Thus, this type of adduct represents a serious threat to genomic stability and as such, several DNA repair pathways have evolved in both higher and lower eukaryotes to identify this type of damage and restore the integrity of the genetic material. Human cells possess a specialized ICL-repair system, the Fanconi anemia (FA) pathway. Conversely yeasts rely on the concerted action of several DNA repair systems. Recent work in higher eukaryotes identified and characterized a novel conserved FA component, FAN1 (Fanconi anemia-associated nuclease 1, or FANCD2/FANCI-associated nuclease 1). In this study, we characterize Fan1 in the yeast Schizosaccharomyces pombe. Using standard genetics, we demonstrate that Fan1 is a key component of a previously unidentified ICL-resolution pathway. Using high-throughput synthetic genetic arrays, we also demonstrate the existence of a third pathway of ICL repair, dependent on the SUMO E3 ligase Pli1. Finally, using sequence-threaded homology models, we predict and validate key residues essential for Fan1 activity in ICL repair.
机译:DNA链间交联(ICL)代表了参与DNA代谢的细胞机制进程的物理障碍。因此,这种类型的加合物对基因组稳定性构成严重威胁,因此,在高等和低等真核生物中都进化出了几种DNA修复途径,以鉴定这种类型的损害并恢复遗传物质的完整性。人类细胞拥有专门的ICL修复系统,即Fanconi贫血(FA)途径。相反,酵母依赖于几种DNA修复系统的协同作用。在高等真核生物中的最新研究鉴定并鉴定了一种新颖的保守FA成分FAN1(范可尼贫血相关核酸酶1或FANCD2 / FANCI相关核酸酶1)。在这项研究中,我们表征了酵母Schizosaccharomyces pombe中的Fan1。使用标准遗传学,我们证明Fan1是以前未确定的ICL解析途径的关键组成部分。使用高通量合成遗传阵列,我们还证明了依赖SUMO E3连接酶Pli1的ICL修复的第三种途径的存在。最后,使用序列线程同源模型,我们预测和验证ICL修复中Fan1活性必不可少的关键残基。

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