Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Acta Biochim Biophys Sin (Shanghai). 2022 May 25;54(5):637-646. doi: 10.3724/abbs.2022045.
Apurinic/apyrimidic (AP) sites are severe DNA damages and strongly block DNA extension by major DNA polymerases. Y-family DNA polymerases possess a strong ability to bypass AP sites and continue the DNA synthesis reaction, which is called translesion synthesis (TLS) activity. To investigate the effect of the molecular structure of the AP site on the TLS efficiency of Dbh, a Y-family DNA polymerase from , a series of different AP site analogues (various spacers) are used to characterize the bypass efficiency. We find that not only the molecular structure and atomic composition but also the number and position of AP site analogues determine the TLS efficiency of Dbh. Increasing the spacer length decreases TLS activity. The TLS efficiency also decreases when more than one spacer exists on the DNA template. The position of the AP site analogues is also an important factor for TLS. When the spacer is opposite to the first incorporated dNTPs, the TLS efficiency is the lowest, suggesting that AP sites are largely harmful for the formation of hydrogen bonds. These results deepen our understanding of the TLS activity of Y-family DNA polymerases and provide a biochemical basis for elucidating the TLS mechanism in cells.
无碱基/无嘧啶(AP)位点是严重的 DNA 损伤,会强烈阻止主要 DNA 聚合酶的 DNA 延伸。Y 家族 DNA 聚合酶具有很强的绕过 AP 位点并继续 DNA 合成反应的能力,这种能力称为跨损伤合成(TLS)活性。为了研究 AP 位点的分子结构对来自 的 Y 家族 DNA 聚合酶 Dbh 的 TLS 效率的影响,使用一系列不同的 AP 位点类似物(各种间隔物)来表征其绕过效率。我们发现,不仅 AP 位点类似物的分子结构和原子组成,而且其数量和位置也决定了 Dbh 的 TLS 效率。增加间隔物长度会降低 TLS 活性。当 DNA 模板上存在多个间隔物时,TLS 效率也会降低。AP 位点类似物的位置也是 TLS 的一个重要因素。当间隔物与第一个掺入的 dNTPs 相对时,TLS 效率最低,这表明 AP 位点对氢键的形成有很大的危害。这些结果加深了我们对 Y 家族 DNA 聚合酶的 TLS 活性的理解,并为阐明 细胞中的 TLS 机制提供了生化基础。