Department of Cardiac Development and Remodeling, Max-Planck-Institute for Heart and Lung Research, Bad Nauheim, Germany.
Bioinformatics Core Unit (BCU), Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.
Nat Commun. 2022 Nov 14;13(1):6907. doi: 10.1038/s41467-022-34577-y.
Transcription replication collisions (TRCs) constitute a major intrinsic source of genome instability but conclusive evidence for a causal role of TRCs in tumor initiation is missing. We discover that lack of the H4K20-dimethyltransferase KMT5B (also known as SUV4-20H1) in muscle stem cells de-represses S-phase transcription by increasing H4K20me1 levels, which induces TRCs and aberrant R-loops in oncogenic genes. The resulting replication stress and aberrant mitosis activate ATR-RPA32-P53 signaling, promoting cellular senescence, which turns into rapid rhabdomyosarcoma formation when p53 is absent. Inhibition of S-phase transcription ameliorates TRCs and formation of R-loops in Kmt5b-deficient MuSCs, validating the crucial role of H4K20me1-dependent, tightly controlled S-phase transcription for preventing collision errors. Low KMT5B expression is prevalent in human sarcomas and associated with tumor recurrence, suggesting a common function of KMT5B in sarcoma formation. The study uncovers decisive functions of KMT5B for maintaining genome stability by repressing S-phase transcription via control of H4K20me1 levels.
转录复制碰撞 (TRCs) 是基因组不稳定性的主要内在来源,但缺乏 TRCs 在肿瘤起始中的因果作用的确凿证据。我们发现,肌肉干细胞中缺乏 H4K20-二甲基转移酶 KMT5B(也称为 SUV4-20H1)通过增加 H4K20me1 水平来解除 S 期转录的抑制,这会诱导 TRCs 和致癌基因中的异常 R 环。由此产生的复制应激和异常有丝分裂激活了 ATR-RPA32-P53 信号通路,促进细胞衰老,当 p53 缺失时,衰老迅速转化为横纹肌肉瘤的形成。抑制 S 期转录可改善 Kmt5b 缺陷的 MuSCs 中的 TRCs 和 R 环的形成,验证了 H4K20me1 依赖性、严格控制的 S 期转录对于防止碰撞错误的关键作用。在人类肉瘤中普遍存在低水平的 KMT5B,并且与肿瘤复发相关,这表明 KMT5B 在肉瘤形成中具有共同的功能。该研究揭示了 KMT5B 通过控制 H4K20me1 水平来抑制 S 期转录从而维持基因组稳定性的决定性功能。