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REV7 is essential for DNA damage tolerance via two REV3L binding sites in mammalian DNA polymerase ζ

机译:REV7通过哺乳动物DNA聚合酶ζ中的两个REV3L结合位点对DNA损伤耐受具有至关重要的作用

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摘要

DNA polymerase zeta (pol ζ) is exceptionally important for controlling mutagenesis and genetic instability. REV3L comprises the catalytic subunit, while REV7 (MAD2L2) is considered an accessory subunit. However, it has not been established that the role of REV7 in DNA damage tolerance is necessarily connected with mammalian pol ζ, and there is accumulating evidence that REV7 and REV3L have independent functions. Analysis of pol ζ has been hampered by difficulties in expression of REV3L in mammalian cells, and lack of a functional complementation system. Here, we report that REV7 interacts with full-length REV3L in vivo and we identify a new conserved REV7 interaction site in human REV3L (residues 1993–2003), distinct from the known binding site (residues 1877–1887). Mutation of both REV7-binding sites eliminates the REV3L–REV7 interaction. In vivo complementation shows that both REV7-binding sites in REV3L are necessary for preventing spontaneous chromosome breaks and conferring resistance to UV radiation and cisplatin. This demonstrates a damage-specific function of REV7 in pol ζ, in contrast to the distinct roles of REV3L and REV7 in primary cell viability and embryogenesis.
机译:DNA聚合酶zeta(polζ)对于控制诱变和遗传不稳定非常重要。 REV3L包含催化亚基,而REV7(MAD2L2)被视为辅助亚基。然而,尚未确定REV7在DNA损伤耐受中的作用是否必然与哺乳动物polζ有关,并且有越来越多的证据表明REV7和REV3L具有独立的功能。由于哺乳动物细胞中REV3L的表达困难以及缺乏功能性互补系统,使得polζ的分析受到阻碍。在这里,我们报道REV7在体内与全长REV3L相互作用,并且在人REV3L中鉴定了一个新的保守REV7相互作用位点(残基1993–2003),与已知的结合位点(残基1877–1887)不同。两个REV7结合位点的突变消除了REV3L–REV7的相互​​作用。体内互补显示,REV3L中的两个REV7结合位点对于防止自发染色体断裂和赋予对UV辐射和顺铂的抗性都是必需的。与REV3L和REV7在原代细胞活力和胚胎发生中的独特作用相反,这证明了REV7在polζ中具有损伤特异性功能。

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