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Sonic Hedgehog signaling impairs ionizing radiation–induced checkpoint activation and induces genomic instability

机译:声波刺猬信号会削弱电离辐射诱导的检查点激活并导致基因组不稳定

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摘要

The Sonic Hedgehog (Shh) pathway plays important roles in embryogenesis, stem cell maintenance, tissue repair, and tumorigenesis. Haploinsufficiency of Patched-1, a gene that encodes a repressor of the Shh pathway, dysregulates the Shh pathway and increases genomic instability and the development of spontaneous and ionizing radiation (IR)–induced tumors by an unknown mechanism. Here we show that Ptc1+/− mice have a defect in the IR-induced activation of the ATR–Chk1 checkpoint signaling pathway. Likewise, transient expression of Gli1, a downstream target of Shh signaling, disrupts Chk1 activation in human cells by preventing the interaction of Chk1 with Claspin, a Chk1 adaptor protein that is required for Chk1 activation. These results suggest that inappropriate Shh pathway activation promotes tumorigenesis by disabling a key signaling pathway that helps maintain genomic stability and inhibits tumorigenesis.
机译:Sonic Hedgehog(Shh)途径在胚胎发生,干细胞维持,组织修复和肿瘤发生中起重要作用。 Patched-1(一种编码Shh途径阻遏物的基因)的单倍剂量不足,通过异常的机制异常调节Shh途径并增加基因组不稳定性以及自发和电离辐射(IR)诱导的肿瘤的发展。在这里,我们显示Ptc1 +/-小鼠在IR诱导的ATR–Chk1检查点信号通路的激活中存在缺陷。同样,Shli信号的下游目标Gli1的瞬时表达通过阻止Chk1与Claspin(Chk1激活所需的Chk1衔接蛋白)相互作用来破坏人细胞中的Chk1激活。这些结果表明不适当的Shh途径激活通过禁用有助于维持基因组稳定性和抑制肿瘤发生的关键信号传导途径来促进肿瘤发生。

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