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RNF4 通过促进 DNA 复制来维持 Myc 驱动的肿瘤发生。

RNF4 sustains Myc-driven tumorigenesis by facilitating DNA replication.

机构信息

Department of Molecular Biology and Biochemistry and.

Biological Mass Spectrometry Facility, Rutgers, The State University of New Jersey, Piscataway, New Jersey, USA.

出版信息

J Clin Invest. 2024 Mar 26;134(10):e167419. doi: 10.1172/JCI167419.

Abstract

The mammalian SUMO-targeted E3 ubiquitin ligase Rnf4 has been reported to act as a regulator of DNA repair, but the importance of RNF4 as a tumor suppressor has not been tested. Using a conditional-knockout mouse model, we deleted Rnf4 in the B cell lineage to test the importance of RNF4 for growth of somatic cells. Although Rnf4-conditional-knockout B cells exhibited substantial genomic instability, Rnf4 deletion caused no increase in tumor susceptibility. In contrast, Rnf4 deletion extended the healthy lifespan of mice expressing an oncogenic c-myc transgene. Rnf4 activity is essential for normal DNA replication, and in its absence, there was a failure in ATR-CHK1 signaling of replication stress. Factors that normally mediate replication fork stability, including members of the Fanconi anemia gene family and the helicases PIF1 and RECQL5, showed reduced accumulation at replication forks in the absence of RNF4. RNF4 deficiency also resulted in an accumulation of hyper-SUMOylated proteins in chromatin, including members of the SMC5/6 complex, which contributes to replication failure by a mechanism dependent on RAD51. These findings indicate that RNF4, which shows increased expression in multiple human tumor types, is a potential target for anticancer therapy, especially in tumors expressing c-myc.

摘要

哺乳动物 SUMO 靶向 E3 泛素连接酶 Rnf4 已被报道作为 DNA 修复的调节剂,但 RNF4 作为肿瘤抑制因子的重要性尚未得到测试。我们使用条件性敲除小鼠模型,在 B 细胞谱系中删除 Rnf4,以测试 RNF4 对体细胞生长的重要性。尽管 Rnf4 条件性敲除 B 细胞表现出明显的基因组不稳定性,但 Rnf4 的缺失并没有增加肿瘤易感性。相比之下,Rnf4 的缺失延长了表达致癌 c-myc 转基因的小鼠的健康寿命。Rnf4 活性对于正常的 DNA 复制是必不可少的,在其缺失的情况下,复制应激的 ATR-CHK1 信号通路会失效。通常介导复制叉稳定性的因素,包括范可尼贫血基因家族成员、解旋酶 PIF1 和 RECQL5,在没有 RNF4 的情况下,在复制叉处的积累减少。RNF4 缺陷也导致染色质中超 SUMO 化蛋白的积累,包括 SMC5/6 复合物的成员,其通过依赖 RAD51 的机制导致复制失败。这些发现表明,在多种人类肿瘤类型中表达增加的 RNF4 是抗癌治疗的潜在靶点,特别是在表达 c-myc 的肿瘤中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43d2/11093604/28f46054bf9f/jci-134-167419-g127.jpg

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