Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, NE 68118, USA and Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, MO 63110, USA.
Nucleic Acids Res. 2014 Jan;42(1):290-306. doi: 10.1093/nar/gkt830. Epub 2013 Sep 18.
DNA polymerase ζ (Pol ζ) and Rev1 are key players in translesion DNA synthesis. The error-prone Pol ζ can also participate in replication of undamaged DNA when the normal replisome is impaired. Here we define the nature of the replication disturbances that trigger the recruitment of error-prone polymerases in the absence of DNA damage and describe the specific roles of Rev1 and Pol ζ in handling these disturbances. We show that Pol ζ/Rev1-dependent mutations occur at sites of replication stalling at short repeated sequences capable of forming hairpin structures. The Rev1 deoxycytidyl transferase can take over the stalled replicative polymerase and incorporate an additional 'C' at the hairpin base. Full hairpin bypass often involves template-switching DNA synthesis, subsequent realignment generating multiply mismatched primer termini and extension of these termini by Pol ζ. The postreplicative pathway dependent on polyubiquitylation of proliferating cell nuclear antigen provides a backup mechanism for accurate bypass of these sequences that is primarily used when the Pol ζ/Rev1-dependent pathway is inactive. The results emphasize the pivotal role of noncanonical DNA structures in mutagenesis and reveal the long-sought-after mechanism of complex mutations that represent a unique signature of Pol ζ.
DNA 聚合酶 ζ (Pol ζ) 和 Rev1 是跨损伤 DNA 合成的关键参与者。当正常的复制体受到损伤时,易错的 Pol ζ 也可以参与未受损 DNA 的复制。在这里,我们定义了在没有 DNA 损伤的情况下触发易错聚合酶招募的复制干扰的性质,并描述了 Rev1 和 Pol ζ 在处理这些干扰方面的具体作用。我们表明,Pol ζ/Rev1 依赖性突变发生在短重复序列处的复制停滞位点,这些短重复序列能够形成发夹结构。Rev1 的脱氧胞苷转移酶可以接管停滞的复制聚合酶,并在发夹碱基处掺入额外的“C”。完整的发夹绕过通常涉及模板转换 DNA 合成,随后进行重新排列,产生多个错配的引物末端,并由 Pol ζ 延伸这些末端。依赖于增殖细胞核抗原多泛素化的复制后途径提供了一种准确绕过这些序列的后备机制,主要用于 Pol ζ/Rev1 依赖性途径不活跃时。这些结果强调了非典型 DNA 结构在诱变中的关键作用,并揭示了长期以来寻求的复杂突变机制,这是 Pol ζ 的独特特征。