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Thrap3 promotes R-loop resolution via interaction with methylated DDX5

机译:Thrap3通过与甲基化DDX5的相互作用促进R环分辨率

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Transcription-replication conflicts lead to DNA damage and genomic instability, which are closely related to human diseases. A major source of these conflicts is the formation of R-loops, which consist of an RNA-DNA hybrid and a displaced single-stranded DNA. Although these structures have been studied, many aspects of R-loop biology and R-loop-mediated genome instability remain unclear. Here, we demonstrate that thyroid hormone receptor-associated protein 3 (Thrap3) plays a critical role in regulating R-loop resolution. In cancer cells, Thrap3 interacts with DEAD-box helicase 5 (DDX5) and localizes to R-loops. Arginine-mediated methylation of DDX5 is required for its interaction with Thrap3, and the Thrap3-DDX5 axis induces the recruitment of 5’-3’ exoribonuclease 2 (XRN2) into R-loops. Loss of Thrap3 increases R-loop accumulation and DNA damage. These findings suggest that Thrap3 mediates resistance to cell death by preventing R-loop accumulation in cancer cells. Cancer: DNA damage associated with nucleic acid loops A nuclear protein appears to inhibit cancer cell death by preventing the accumulation of nucleic acid structures called R-loops. R-loops are by-products of transcription, comprising two misaligned DNA strands and one RNA strand. They are involved in gene expression, but also threaten genome integrity and have been linked to the onset of neurodegeneration and cancers. A team led by Jang Hyun Choi and Hyug Moo Kwon, Ulsan National Institute of Science and Technology, South Korea, explored the role of Thrap3, a nuclear protein involved in RNA splicing, in R-loop-associated DNA damage. They found that Thrap3 binds to an enzyme essential for resolving R-loops. When the team suppressed Thrap3 expression, they saw an increase in R-loops in both normal and cancer cells. This R-loop accumulation significantly inhibited the growth of breast cancer cells.
机译:转录 - 复制冲突导致DNA损伤和基因组不稳定性与人类疾病密切相关。这些冲突的主要来源是形成R环的形成,其包括RNA-DNA杂交和移位的单链DNA。虽然已经研究了这些结构,但是R环生物学和R环介导的基因组不稳定性的许多方面仍不清楚。在这里,我们证明甲状腺激素受体相关蛋白3(Thrap3)在调节R环分辨率方面发挥着关键作用。在癌细胞中,Thrap3与死箱螺旋酶5(DDX5)相互作用并定位为R圈。 Asginine介导的DDX5的甲基化是与Thrap3的相互作用所必需的,并且Thrap3-DDX5轴诱导5'-3'Exoribonuclease 2(XRN2)募集到R环中。丧失Thrap3增加了R环积累和DNA损伤。这些发现表明,Thrap3通过预防癌细胞中的R环积累来介导对细胞死亡的抗性。癌症:与核酸环相关的DNA损伤通过防止称为R圈的核酸结构的积累来抑制癌细胞死亡。 R-LOOPS是副产物的转录,包含两个未对准的DNA链和一个RNA链。它们参与基因表达,但也威胁到基因组完整性,并与神经变性和癌症的发作有关。由Jang Hyun Choi和Huug Moo Kwon,Ulsan国家科学与技术研究所,南朝鲜的一个团队探讨了R-Loop相关的DNA损伤中参与RNA剪接的核蛋白的Thrap3的作用。他们发现Thrap3与解决R圈的酶结合。当团队抑制Thrap3表达时,它们在正常和癌细胞中看到了R圈的增加。该R环积累显着抑制乳腺癌细胞的生长。

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