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首页> 外文期刊>Journal of cellular biochemistry. >An unconventional role of BMP-smad1 signaling in DNA damage response: A mechanism for tumor suppression
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An unconventional role of BMP-smad1 signaling in DNA damage response: A mechanism for tumor suppression

机译:BMP-smad1信号在DNA损伤反应中的非常规作用:肿瘤抑制的机制

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摘要

The genome is under constant attack by self-produced reactive oxygen species and genotoxic reagents in the environment. Cells have evolved a DNA damage response (DDR) system to sense DNA damage, to halt cell cycle progression and repair the lesions, or to induce apoptosis if encountering irreparable damage. The best studied DDR pathways are the PIKK-p53 and PIKK-Chk1/2. Mutations in these genes encoding DDR molecules usually lead to genome instability and tumorigenesis. It is worth noting that there exist unconventional pathways that facilitate the canonical pathways or take over in the absence of the canonical pathways in DDR. This review will summarize on several unconventional pathways that participate in DDR with an emphasis on the BMP-Smad1 pathway, a known regulator of mouse development and bone remodeling. J. Cell. Biochem. 115: 450-456, 2014.
机译:基因组受到环境中自身产生的活性氧和遗传毒性试剂的不断攻击。细胞已经进化出一种DNA损伤反应(DDR)系统,以感知DNA损伤,阻止细胞周期进程并修复病变,或者在遇到无法修复的损伤时诱导凋亡。研究最深入的DDR途径是PIKK-p53和PIKK-Chk1 / 2。这些编码DDR分子的基因中的突变通常会导致基因组不稳定和肿瘤发生。值得注意的是,DDR中存在非常规途径,可以促进规范途径或在没有常规途径的情况下接管。这篇综述将总结几种参与DDR的非常规途径,重点是BMP-Smad1途径,BMP-Smad1途径是小鼠发育和骨骼重塑的已知调节剂。 J.细胞。生化。 115:450-456,2014年。

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