Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida, USA.
Department of Biology and Rosenstiel Basic Medical Sciences Research Center, Brandeis University, Waltham, Massachusetts, USA.
J Biol Chem. 2023 Jan;299(1):102786. doi: 10.1016/j.jbc.2022.102786. Epub 2022 Dec 9.
Escherichia coli YoaA aids in the resolution of DNA damage that halts DNA synthesis in vivo in conjunction with χ, an accessory subunit of DNA polymerase III. YoaA and χ form a discrete complex separate from the DNA polymerase III holoenzyme, but little is known about how YoaA and χ work together to help the replication fork overcome damage. Although YoaA is predicted to be an iron-sulfur helicase in the XPD/Rad3 helicase family based on sequence analysis, the biochemical activities of YoaA have not been described. Here, we characterize YoaA and show that purified YoaA contains iron. YoaA and χ form a complex that is stable through three chromatographic steps, including gel filtration chromatography. When overexpressed in the absence of χ, YoaA is mostly insoluble. In addition, we show the YoaA-χ complex has DNA-dependent ATPase activity. Our measurement of the YoaA-χ helicase activity illustrates for the first time YoaA-χ translocates on ssDNA in the 5' to 3' direction and requires a 5' single-stranded overhang, or ssDNA gap, for DNA/DNA unwinding. Furthermore, YoaA-χ preferentially unwinds forked duplex DNA that contains both 3' and 5' single-stranded overhangs versus duplex DNA with only a 5' overhang. Finally, we demonstrate YoaA-χ can unwind damaged DNA that contains an abasic site or damage on 3' ends that stall replication extension. These results are the first biochemical evidence demonstrating YoaA is a bona fide iron-sulfur helicase, and we further propose the physiologically relevant form of the helicase is YoaA-χ.
大肠杆菌 YoaA 与 χ 一起协助解决体内停止 DNA 合成的 DNA 损伤,χ 是 DNA 聚合酶 III 的辅助亚基。YoaA 和 χ 形成一个与 DNA 聚合酶 III 全酶分离的离散复合物,但对于 YoaA 和 χ 如何协同工作以帮助复制叉克服损伤知之甚少。尽管 YoaA 在序列分析的基础上被预测为 XPD/Rad3 解旋酶家族中的铁硫螺旋酶,但 YoaA 的生化活性尚未描述。在这里,我们对 YoaA 进行了表征,并表明纯化的 YoaA 含有铁。YoaA 和 χ 形成一个稳定的复合物,可通过包括凝胶过滤层析在内的三个层析步骤稳定。当在没有 χ 的情况下过表达时,YoaA 大部分是不溶的。此外,我们还表明 YoaA-χ 复合物具有 DNA 依赖性 ATP 酶活性。我们对 YoaA-χ 解旋酶活性的测量首次表明 YoaA-χ 可以在 5' 到 3' 方向上在 ssDNA 上移动,并需要 5' 单链突出端或 ssDNA 缺口,才能进行 DNA/DNA 解旋。此外,YoaA-χ 优先解开包含 3' 和 5' 单链突出端的分叉双链 DNA,而不是仅具有 5' 突出端的双链 DNA。最后,我们证明 YoaA-χ 可以解开包含无碱基位点或 3' 末端损伤的受损 DNA,这些损伤会阻止复制延伸。这些结果是第一个证明 YoaA 是一种真正的铁硫螺旋酶的生化证据,我们进一步提出该螺旋酶的生理相关形式是 YoaA-χ。