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首页> 外文期刊>Nature Communications >Parallel genome-wide screens identify synthetic viable interactions between the BLM helicase complex and Fanconi anemia
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Parallel genome-wide screens identify synthetic viable interactions between the BLM helicase complex and Fanconi anemia

机译:平行的全基因组筛选可确定BLM解旋酶复合物与Fanconi贫血之间合成可行的相互作用

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Maintenance of genome integrity via repair of DNA damage is a key biological process required to suppress diseases, including Fanconi anemia (FA). We generated loss-of-function human haploid cells for FA complementation group C (FANCC), a gene encoding a component of the FA core complex, and used genome-wide CRISPR libraries as well as insertional mutagenesis to identify synthetic viable (genetic suppressor) interactions for FA. Here we show that loss of the BLM helicase complex suppresses FANCC phenotypes and we confirm this interaction in cells deficient for FA complementation group I and D2 (FANCI and FANCD2) that function as part of the FA I-D2 complex, indicating that this interaction is not limited to the FA core complex, hence demonstrating that systematic genome-wide screening approaches can be used to reveal genetic viable interactions for DNA repair defects.
机译:通过修复DNA损伤来维持基因组完整性是抑制包括Fanconi贫血(FA)在内的疾病所需的关键生物学过程。我们为FA互补组C(FANCC)(一种编码FA核心复合物组分的基因)生成了功能丧失的人类单倍体细胞,并使用了全基因组CRISPR文库以及插入诱变来鉴定合成的可行(遗传抑制子) FA的互动。在这里,我们表明BLM解旋酶复合物的缺失抑制了FANCC表型,并且我们证实了在FA互补组I和D2(FANCI和FANCD2)缺陷的细胞中这种相互作用是FA I-D2复合物的一部分,表明这种相互作用是不仅限于FA核心复合物,因此表明可以使用系统的全基因组筛选方法来揭示DNA修复缺陷的遗传上可行的相互作用。

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