Department of Chemistry and Chemical Biology , Rensselaer Polytechnic Institute , Troy , New York 12180 , United States.
Center for Biotechnology and Interdisciplinary Studies , Rensselaer Polytechnic Institute , Troy , New York 12180 , United States.
Biochemistry. 2019 Mar 12;58(10):1332-1342. doi: 10.1021/acs.biochem.9b00057. Epub 2019 Mar 1.
Paranemic crossover DNA (PX-DNA) is a four-stranded multicrossover structure that has been implicated in recombination-independent recognition of homology. Although existing evidence has suggested that PX is the DNA motif in homologous pairing (HP), this conclusion remains ambiguous. Further investigation is needed but will require development of new tools. Here, we report characterization of the complex between PX-DNA and T7 endonuclease I (T7endoI), a junction-resolving protein that could serve as the prototype of an anti-PX ligand (a critical prerequisite for the future development of such tools). Specifically, nuclease-inactive T7endoI was produced and its ability to bind to PX-DNA was analyzed using a gel retardation assay. The molar ratio of PX to T7endoI was determined using gel electrophoresis and confirmed by the Hill equation. Hydroxyl radical footprinting of T7endoI on PX-DNA is used to verify the positive interaction between PX and T7endoI and to provide insight into the binding region. Cleavage of PX-DNA by wild-type T7endoI produces DNA fragments, which were used to identify the interacting sites on PX for T7endoI and led to a computational model of their interaction. Altogether, this study has identified a stable complex of PX-DNA and T7endoI and lays the foundation for engineering an anti-PX ligand, which can potentially assist in the study of molecular mechanisms for HP at an advanced level.
平行交叉 DNA(PX-DNA)是一种四链多交叉结构,它与重组无关的同源性识别有关。尽管现有证据表明 PX 是同源配对(HP)的 DNA 基序,但这一结论仍不明确。需要进一步的研究,但这需要开发新的工具。在这里,我们报告了 PX-DNA 与 T7 内切酶 I(T7endoI)之间复合物的特征,T7endoI 是一种连接修复蛋白,可以作为抗 PX 配体的原型(这是未来开发此类工具的关键前提)。具体来说,产生了无核酸酶活性的 T7endoI,并使用凝胶阻滞实验分析了其与 PX-DNA 的结合能力。使用凝胶电泳确定 PX 与 T7endoI 的摩尔比,并通过 Hill 方程进行确认。使用羟自由基足迹法验证了 T7endoI 在 PX-DNA 上的正相互作用,并提供了结合区域的见解。野生型 T7endoI 对 PX-DNA 的切割产生了 DNA 片段,这些片段用于确定 T7endoI 与 PX 相互作用的位点,并导致它们相互作用的计算模型。总的来说,这项研究确定了 PX-DNA 和 T7endoI 的稳定复合物,并为工程抗 PX 配体奠定了基础,这可能有助于在高级水平上研究 HP 的分子机制。