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Association of RDM1 with osteosarcoma progression via cell cycle and MEK/ERK signalling pathway regulation

机译:通过细胞周期和MEK / ERK信号通路调节,RDM1与OSTEOSARCOMA进展的关联

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RAD52 motif-containing 1 (RDM1), a key regulator of DNA double-strand break repair and recombination, has been reported to play an important role in the development of various human cancers, such as papillary thyroid carcinoma, neuroblastoma and lung cancer. However, the effect of RDM1 on osteosarcoma (OS) progression remains unclear. Here, this study mainly explored the connection between RDM1 and OS progression, as well as the underlying mechanism. It was found that RDM1 was highly expressed in OS cells compared with human osteoblast cells. Knockdown of RDM1 caused OS cell proliferation inhibition, cell apoptosis promotion and cell cycle arrest at G1 stage, whereas RDM1 overexpression resulted in the opposite phenotypes. Furthermore, RDM1 silencing leads to a significant decrease in tumour growth in xenograft mouse model. RDM1 also increased the protein levels of MEK 1/2 and ERK 1/2. All these findings suggest that RDM1 plays an oncogenic role in OS via stimulating cell cycle transition from G1 to S stage, and regulating MEK/ERK signalling pathway, providing a promising therapeutic factor for the treatment of OS.
机译:据报道,含Rad52含有1(RDM1),DNA双链断裂修复和重组的关键调节器,在各种人类癌症的发展中发挥着重要作用,例如乳头状甲状腺癌,神经母细胞瘤和肺癌。然而,RDM1对骨肉瘤(OS)进展的影响仍不清楚。在这里,本研究主要探讨了RDM1和OS进展之间的联系,以及潜在机制。发现与人对骨细胞细胞相比,在OS细胞中高度表达RDM1。 RDM1的敲低导致OS细胞增殖抑制,细胞凋亡促进和G1阶段的细胞周期停滞,而RDM1过表达导致相对的表型。此外,RDM1沉默导致异种移植小鼠模型中的肿瘤生长显着降低。 RDM1还增加了MEK 1/2和ERK 1/2的蛋白质水平。所有这些发现表明RDM1通过G1至S阶段的刺激细胞周期转换和调节MEK / ERK信号通路在OS中发挥致癌作用,为治疗OS提供有希望的治疗因素。

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