Department of Pharmacology and Toxicology, University of Texas Medical Branch, 301 University Boulevard, Galveston, Texas77555, United States.
MD-PhD Combined Degree Program University of Texas Medical Branch, 301 University Boulevard, Galveston, Texas77555, United States.
Chem Res Toxicol. 2023 Feb 20;36(2):162-176. doi: 10.1021/acs.chemrestox.2c00172. Epub 2023 Jan 16.
Recently, we constructed a hybrid thymine DNA glycosylase (hyTDG) by linking a 29-amino acid sequence from the human thymine DNA glycosylase with the catalytic domain of DNA mismatch glycosylase (MIG) from , increasing the overall activity of the glycosylase. Previously, it was shown that a tyrosine to lysine (Y126K) mutation in the catalytic site of MIG could convert the glycosylase activity to a lyase activity. We made the corresponding mutation to our hyTDG to create a hyTDG-lyase (Y163K). Here, we report that the hybrid mutant has robust lyase activity, has activity over a broad temperature range, and is active under multiple buffer conditions. The hyTDG-lyase cleaves an abasic site similar to endonuclease III (Endo III). In the presence of β-mercaptoethanol (β-ME), the abasic site unsaturated aldehyde forms a β-ME adduct. The hyTDG-lyase maintains its preference for cleaving opposite G, as with the hyTDG glycosylase, and the hyTDG-lyase and hyTDG glycosylase can function in tandem to cleave T:G mismatches. The hyTDG-lyase described here should be a valuable tool in studies examining DNA damage and repair. Future studies will utilize these enzymes to quantify T:G mispairs in cells, tissues, and genomic DNA using next-generation sequencing.
最近,我们通过连接来自人胸腺嘧啶 DNA 糖基化酶的 29 个氨基酸序列和错配 DNA 糖基化酶(MIG)的催化结构域,构建了一种混合胸腺嘧啶 DNA 糖基化酶(hyTDG),从而提高了糖基化酶的整体活性。此前研究表明,MIG 催化结构域中的酪氨酸到赖氨酸(Y126K)突变可以将糖基化酶活性转化为裂解酶活性。我们对我们的 hyTDG 进行了相应的突变,以创建 hyTDG-裂解酶(Y163K)。在这里,我们报告称,该杂交突变体具有强大的裂解酶活性,在较宽的温度范围内具有活性,并在多种缓冲条件下具有活性。hyTDG-裂解酶切割类似内切核酸酶 III(Endo III)的无碱基位点。在β-巯基乙醇(β-ME)存在下,无碱基位点的不饱和醛形成β-ME 加合物。hyTDG-裂解酶保持其对切割相反 G 的偏好,与 hyTDG 糖基化酶相同,hyTDG-裂解酶和 hyTDG 糖基化酶可以串联作用以切割 T:G 错配。本文描述的 hyTDG-裂解酶应该是研究 DNA 损伤和修复的有价值的工具。未来的研究将利用这些酶使用下一代测序技术在细胞、组织和基因组 DNA 中定量 T:G 错配。