尿嘧啶DNA糖基化酶
DNA糖基化酶
化学
尿嘧啶
基底切除修复术
核苷酸
AP站点
DNA
尿苷
DNA修复
生物化学
AP核酸内切酶
核糖核酸酶P
胸苷
核糖核酸
核苷酸
基因
作者
Chaochao Fan,Xuelin Zhan,Fengmin Guo,Qiang Li,Kuan Lu,Xiajing Shan,Yifei Zhou,Mengtian Ren,Marc M. Greenberg,Yijin Liu,Chuanzheng Zhou
摘要
Uridine (rU) and 2′-deoxyuridine (dU) are common DNA lesions. dU is repaired through a base excision repair (BER) pathway initiated by uracil DNA glycosylase (UDG), while rU is typically removed from DNA via ribonucleotide excision repair, mediated by RNase H2. In this study, we report that rU is also repaired through the UDG-mediated BER pathway. We found that UDG catalyzes the removal of uracil from rU embedded in DNA, but exhibits no activity toward rU in RNA. Biochemical and crystallographic analyses revealed that the 2′–OH group of rU is effectively accommodated by UDG and directly participates in catalyzing the hydrolysis of the N -glycosidic bond. The abasic site product generated upon removal of uracil from rU by UDG is further processed by downstream BER enzymes to restore undamaged DNA. Our findings suggest that UDG-initiated BER constitutes a previously unrecognized pathway for the repair of rU-specific ribonucleotides. Additionally, we developed a method for selectively quantifying rU content in DNA. Using this method, we determined that rU repair by UDG is not a major pathway in human cells. This discovery expands our understanding of the diverse biological functions of UDG, and inspires further investigation to determine the role of its rU-removal in cells.
科研通智能强力驱动
Strongly Powered by AbleSci AI