Institute of Chemical Biology and Fundamental Medicine, SB RAS, Novosibirsk, Russia.
Biochemistry. 2010 Jun 8;49(22):4695-704. doi: 10.1021/bi901792c.
Here we investigated the ability of the human X-family DNA polymerases beta and lambda to bypass thymine glycol (Tg) in gapped DNA substrates with the damage located in a defined position of the template strand. Maximum velocities and the Michaelis constant values were determined to study DNA synthesis in the presence of either Mg(2+) or Mn(2+). Additionally, the influence of hRPA (human replication protein A) and hPCNA (human proliferating cell nuclear antigen) on TLS (translesion synthesis) activity of DNA polymerases beta and lambda was examined. The results show that (i) DNA polymerase lambda is able to catalyze DNA synthesis across Tg, (ii) the ability of DNA polymerase lambda to elongate from a base paired to a Tg lesion is influenced by the size of the DNA gap, (iii) hPCNA increases the fidelity of Tg bypass and does not influence normal DNA synthesis catalyzed by DNA polymerase lambda, (iv) DNA polymerase beta catalyzes the incorporation of all four dNTPs opposite Tg, and (v) hPCNA as well as hRPA has no specific effect on TLS in comparison with the normal DNA synthesis catalyzed by DNA polymerase beta. These results considerably extend our knowledge concerning the ability of specialized DNA polymerases to cope with a very common DNA lesion such as Tg.
在这里,我们研究了人类 X 家族 DNA 聚合酶β和λ在缺口 DNA 底物中绕过胸腺嘧啶二醇(Tg)的能力,损伤位于模板链的特定位置。通过确定最大速度和米氏常数值,研究了在存在 Mg2+或 Mn2+的情况下 DNA 的合成。此外,还研究了 hRPA(人复制蛋白 A)和 hPCNA(人增殖细胞核抗原)对 DNA 聚合酶β和λ的跨损伤合成(TLS)活性的影响。结果表明:(i)DNA 聚合酶λ能够催化 Tg 穿过的 DNA 合成;(ii)DNA 聚合酶λ从与 Tg 损伤配对的碱基延伸的能力受 DNA 缺口大小的影响;(iii)hPCNA 提高了 Tg 绕过的保真度,并且不影响 DNA 聚合酶λ催化的正常 DNA 合成;(iv)DNA 聚合酶β催化所有四个 dNTP 与 Tg 配对的掺入;(v)与 DNA 聚合酶β催化的正常 DNA 合成相比,hPCNA 和 hRPA 对 TLS 没有特定影响。这些结果大大扩展了我们对专门的 DNA 聚合酶应对 Tg 等常见 DNA 损伤的能力的认识。