Department of Therapeutic Radiology, Yale University School of Medicine, New Haven, CT 06520, USA.
Biochemistry. 2012 Jul 3;51(26):5269-75. doi: 10.1021/bi3003583. Epub 2012 Jun 19.
DNA polymerase β (pol β) is the main polymerase involved in base excision repair (BER), which is a pathway responsible for the repair of tens of thousands of DNA lesions per cell per day. Our recent efforts in sequencing colon tumors showed that 40% of the tumors sequenced possessed a variant in the coding region of the POLB gene; one of these variants is E288K. Expression of the E288K variant in cells leads to an increase in the frequency of mutations at AT base pairs. In vitro, the E288K variant is as active as and binds one-base-gapped DNA with the same affinity as wild-type pol β. Single-turnover kinetic data for the E288K variant show that its mutator phenotype is specific for misincorporating opposite template A up to 6-fold more than the wild-type enzyme and that this is due to a decrease in the degree of discrimination in nucleotide binding. Molecular modeling suggests that the substitution of Lys at position 288 causes the polymerase to adopt a more open conformation, which may be disrupting the nucleotide binding pocket. This may explain the reduced degree of discrimination at the level of nucleotide binding. The enhanced mutagenesis of the E288K variant could lead to genomic instability and ultimately a malignant tumor phenotype.
DNA 聚合酶 β(pol β)是碱基切除修复(BER)过程中主要的聚合酶,该修复途径负责修复细胞中每天产生的数以万计的 DNA 损伤。我们最近对结肠肿瘤进行测序的研究表明,40%测序的肿瘤在 POLB 基因的编码区域存在变体;其中一种变体是 E288K。E288K 变体在细胞中的表达会增加 AT 碱基对的突变频率。在体外,E288K 变体与野生型 pol β 一样活跃,并以相同的亲和力结合单碱基缺口 DNA。E288K 变体的单轮动力学数据表明,其诱变表型是特异性地将相反模板 A 的错误掺入增加 6 倍,而野生型酶则增加 6 倍,这是由于核苷酸结合的辨别程度降低所致。分子建模表明,位置 288 上的赖氨酸取代导致聚合酶采用更开放的构象,这可能破坏核苷酸结合口袋。这可能解释了核苷酸结合水平辨别程度降低的原因。E288K 变体的增强诱变可能导致基因组不稳定,并最终导致恶性肿瘤表型。