Estrada Matthew D, Gebhardt Christopher J, Salem Mariam A, Rau Christina N, Sharma Kruthika, Glynn Rebecca A, Bassing Craig H, Oltz Eugene M, Collins Patrick L
Department of Microbial Infection and Immunity, The Ohio State University, Columbus, OH, USA.
Molecular, Cellular and Developmental Biology Graduate Program, The Ohio State University, Columbus, OH, USA.
Genes Immun. 2025 Sep 5. doi: 10.1038/s41435-025-00353-3.
Double-strand breaks represent the most dangerous form of DNA damage, and in resting cells, these breaks are sealed via the non-homologous end joining (NHEJ) factor Ligase IV (LIG4). Excessive NHEJ may be genotoxic, necessitating multiple mechanisms to control NHEJ activity. However, a clear mechanism of transcriptional control for them has not yet been identified. Here, we examine mechanisms governing Lig4 transcription in mammals, finding that most tissues maintain very low levels of LIG4 production. Select tissues upregulate LIG4, employing different strategies for genomic regulation. In developing lymphocytes, the Lig4 locus is devoid of long-range chromatin contacts; instead, its expression and role in immune development depend upon a promoter-proximal intronic regulatory element. Deletion of the Lig4 intronic regulatory element results in thymocyte-specific loss of Lig4 upregulation, defects in lymphocyte development, and altered antigen receptor rearrangement. Our findings show the NHEJ gene, Lig4, is transcriptionally controlled to support stage-specific function concurrent with programmed DSBs. Moreover, we provide an example of how DNA cis-regulatory elements very close to a promoter can have substantial transcriptional effects.
双链断裂是DNA损伤最危险的形式,在静息细胞中,这些断裂通过非同源末端连接(NHEJ)因子连接酶IV(LIG4)进行修复。过度的NHEJ可能具有基因毒性,因此需要多种机制来控制NHEJ活性。然而,尚未确定对其进行转录控制的明确机制。在这里,我们研究了哺乳动物中Lig4转录的调控机制,发现大多数组织中LIG4的产生水平非常低。特定组织上调LIG4,采用不同的基因组调控策略。在发育中的淋巴细胞中,Lig4基因座缺乏长程染色质接触;相反,其在免疫发育中的表达和作用取决于启动子近端内含子调控元件。删除Lig4内含子调控元件会导致胸腺细胞特异性的Lig4上调缺失、淋巴细胞发育缺陷以及抗原受体重排改变。我们的研究结果表明,NHEJ基因Lig4受到转录调控,以支持与程序性双链断裂同时发生的阶段特异性功能。此外,我们提供了一个例子,说明非常靠近启动子的DNA顺式调控元件如何产生实质性的转录效应。