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SLX4IP acts with SLX4 and XPF–ERCC1 to promote interstrand crosslink repair

机译:SLX4IP与SLX4和XPF–ERCC1一起使用可促进链间交联修复

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摘要

Interstrand crosslinks (ICLs) are highly toxic DNA lesions that are repaired via a complex process requiring the coordination of several DNA repair pathways. Defects in ICL repair result in Fanconi anemia, which is characterized by bone marrow failure, developmental abnormalities, and a high incidence of malignancies. SLX4, also known as FANCP, acts as a scaffold protein and coordinates multiple endonucleases that unhook ICLs, resolve homologous recombination intermediates, and perhaps remove unhooked ICLs. In this study, we explored the role of SLX4IP, a constitutive factor in the SLX4 complex, in ICL repair. We found that SLX4IP is a novel regulatory factor; its depletion sensitized cells to treatment with ICL-inducing agents and led to accumulation of cells in the G2/M phase. We further discovered that SLX4IP binds to SLX4 and XPF–ERCC1 simultaneously and that disruption of one interaction also disrupts the other. The binding of SLX4IP to both SLX4 and XPF–ERCC1 not only is vital for maintaining the stability of SLX4IP protein, but also promotes the interaction between SLX4 and XPF–ERCC1, especially after DNA damage. Collectively, these results demonstrate a new regulatory role for SLX4IP in maintaining an efficient SLX4–XPF–ERCC1 complex in ICL repair.
机译:链间交联(ICL)是剧毒的DNA损伤,可通过复杂的过程进行修复,需要协调多个DNA修复途径。 ICL修复缺陷导致范可尼贫血,其特征是骨髓衰竭,发育异常和恶性肿瘤高发。 SLX4,也称为FANCP,充当支架蛋白并协调多种核酸内切酶,这些核酸内切酶可解除ICL的连接,分解同源重组中间体,并可能去除未连接的ICL。在这项研究中,我们探讨了SLX4IP(SLX4复合体中的构成因子)在ICL修复中的作用。我们发现SLX4IP是一种新颖的调节因子;它的耗竭使细胞对使用ICL诱导剂的治疗敏感,并导致细胞在G2 / M期积累。我们进一步发现SLX4IP同时与SLX4和XPF-ERCC1结合,并且一个相互作用的破坏也会破坏另一个相互作用。 SLX4IP与SLX4和XPF–ERCC1的结合不仅对于维持SLX4IP蛋白的稳定性至关重要,而且还促进了SLX4与XPF–ERCC1之间的相互作用,尤其是在DNA损伤后。总的来说,这些结果表明SLX4IP在ICL修复中维持有效的SLX4-XPF-ERCC1复合体方面起了新的调节作用。

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