Bilkis Rabeya, Lake Robert J, Fan Hua-Ying
Biomedical Sciences Graduate Program, University of New Mexico Health Science Center, Albuquerque, NM 87131, USA.
Program in Cell and Molecular Oncology, University of New Mexico Comprehensive Cancer Center, Albuquerque, NM 87131, USA.
Cells. 2025 Feb 7;14(4):239. doi: 10.3390/cells14040239.
Efficient DNA lesion repair is crucial for cell survival, especially within actively transcribed DNA regions that contain essential genetic information. Additionally, DNA breaks in regions of active transcription are prone to generating insertions and deletions, which are hallmark features of cancer genomes. Cockayne syndrome protein B (CSB) is the sole ATP-dependent chromatin remodeler that is essential for coupling DNA repair pathways with transcription, leading to more efficient DNA repair in regions of active transcription. CSB is best known for its essential function in transcription-coupled nucleotide excision repair (TC-NER), a process that rapidly removes helix-distorting DNA lesions that stall RNA polymerase II, such as those created by chemotherapeutic platinum compounds and UV irradiation. In addition to NER, CSB has also been reported to couple homologous recombination to transcription. Most recently, CSB has also been shown to couple single-strand DNA break repair to transcription. In this review, we will discuss the overlapping and distinct mechanisms by which CSB couples these different DNA repair pathways to transcription. We will also discuss how these CSB functions may account for Cockayne syndrome and the emerging roles of CSB as an innovative target for cancer therapy.
高效的DNA损伤修复对于细胞存活至关重要,尤其是在含有重要遗传信息的活跃转录DNA区域内。此外,活跃转录区域的DNA断裂容易产生插入和缺失,这是癌症基因组的标志性特征。科凯恩综合征蛋白B(CSB)是唯一一种依赖ATP的染色质重塑因子,它对于将DNA修复途径与转录偶联至关重要,从而在活跃转录区域实现更高效的DNA修复。CSB最为人所知的是其在转录偶联核苷酸切除修复(TC-NER)中的关键作用,该过程能迅速去除使RNA聚合酶II停滞的螺旋扭曲DNA损伤,例如由化疗铂类化合物和紫外线照射产生的损伤。除了核苷酸切除修复,CSB也被报道可将同源重组与转录偶联。最近,CSB还被证明可将单链DNA断裂修复与转录偶联。在本综述中,我们将讨论CSB将这些不同DNA修复途径与转录偶联的重叠和不同机制。我们还将讨论这些CSB功能如何解释科凯恩综合征以及CSB作为癌症治疗创新靶点的新出现的作用。