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USP9X 介导的 KDM4C 去泛素化通过表观遗传诱导 TGF-β2 转录促进肺癌放射抵抗。

USP9X-mediated KDM4C deubiquitination promotes lung cancer radioresistance by epigenetically inducing TGF-β2 transcription.

机构信息

Cancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.

出版信息

Cell Death Differ. 2021 Jul;28(7):2095-2111. doi: 10.1038/s41418-021-00740-z. Epub 2021 Feb 8.

Abstract

Radioresistance is regarded as the main barrier to effective radiotherapy in lung cancer. However, the underlying mechanisms of radioresistance remain elusive. Here, we show that lysine-specific demethylase 4C (KDM4C) is overexpressed and correlated with poor prognosis in lung cancer patients. We provide evidence that genetical or pharmacological inhibition of KDM4C impairs tumorigenesis and radioresistance in lung cancer in vitro and in vivo. Moreover, we uncover that KDM4C upregulates TGF-β2 expression by directly reducing H3K9me3 level at the TGF-β2 promoter and then activates Smad/ATM/Chk2 signaling to confer radioresistance in lung cancer. Using tandem affinity purification technology, we further identify deubiquitinase USP9X as a critical binding partner that deubiquitinates and stabilizes KDM4C. More importantly, depletion of USP9X impairs TGF-β2/Smad signaling and radioresistance by destabilizing KDM4C in lung cancer cells. Thus, our findings demonstrate that USP9X-mediated KDM4C deubiquitination activates TGF-β2/Smad signaling to promote radioresistance, suggesting that targeting KDM4C may be a promising radiosensitization strategy in the treatment of lung cancer.

摘要

放射抵抗被认为是肺癌有效放疗的主要障碍。然而,放射抵抗的潜在机制仍难以捉摸。在这里,我们表明赖氨酸特异性去甲基酶 4C(KDM4C)在肺癌患者中过表达,并与预后不良相关。我们提供的证据表明,遗传或药理学抑制 KDM4C 可损害肺癌的体外和体内肿瘤发生和放射抵抗。此外,我们发现 KDM4C 通过直接降低 TGF-β2 启动子上的 H3K9me3 水平来上调 TGF-β2 的表达,然后激活 Smad/ATM/Chk2 信号通路,从而赋予肺癌放射抵抗性。使用串联亲和纯化技术,我们进一步鉴定去泛素化酶 USP9X 作为关键结合伴侣,可通过去泛素化和稳定 KDM4C 来稳定 KDM4C。更重要的是,在肺癌细胞中耗尽 USP9X 会通过不稳定 KDM4C 来破坏 TGF-β2/Smad 信号和放射抵抗性。因此,我们的研究结果表明,USP9X 介导的 KDM4C 去泛素化激活 TGF-β2/Smad 信号通路,促进放射抵抗性,表明靶向 KDM4C 可能是治疗肺癌的一种有前途的放射增敏策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e82/8257660/6b20b72563c7/41418_2021_740_Fig1_HTML.jpg

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