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The AddAB helicase–nuclease catalyses rapid and processive DNA unwinding using a single Superfamily 1A motor domain

机译:AddAB解旋酶-核酸酶使用单个超家族1A马达结构域催化快速和连续的DNA退绕

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摘要

The oligomeric state of Superfamily I DNA helicases is the subject of considerable and ongoing debate. While models based on crystal structures imply that a single helicase core domain is sufficient for DNA unwinding activity, biochemical data from several related enzymes suggest that a higher order oligomeric species is required. In this work we characterize the helicase activity of the AddAB helicase–nuclease, which is involved in the repair of double-stranded DNA breaks in Bacillus subtilis. We show that the enzyme is functional as a heterodimer of the AddA and AddB subunits, that it is a rapid and processive DNA helicase, and that it catalyses DNA unwinding using one single-stranded DNA motor of 3′→5′ polarity located in the AddA subunit. The AddB subunit contains a second putative ATP-binding pocket, but this does not contribute to the observed helicase activity and may instead be involved in the recognition of recombination hotspot sequences.
机译:超家族I DNA解旋酶的寡聚状态是相当多且持续的争论的主题。虽然基于晶体结构的模型暗示单个解旋酶核心结构域足以满足DNA解旋活性,但来自几种相关酶的生化数据表明,需要更高阶的寡聚物种。在这项工作中,我们表征了AddAB解旋酶-核酸酶的解旋酶活性,该酶参与枯草芽孢杆菌中双链DNA断裂的修复。我们显示该酶具有作为AddA和AddB亚基的异源二聚体的功能,它是一种快速且可合成的DNA解旋酶,并使用位于3'→5'极性的单链DNA马达催化DNA展开。 AddA亚基。 AddB亚基包含一个第二个假定的ATP结合口袋,但这不会有助于观察到的解旋酶活性,而可能会参与重组热点序列的识别。

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