Instituto Gulbenkian de Ciência, Rua Quinta Grande 6, Oeiras 2781-156, Portugal.
Biochem J. 2022 Aug 31;479(16):1727-1741. doi: 10.1042/BCJ20220200.
DNA/RNA molecules adopting the left-handed conformation (Z-form) have been attributed with immunogenic properties. However, their biological role and importance have been a topic of debate for many years. The discovery of Z-DNA/RNA binding domains (Zα domains) in varied proteins that are involved in the innate immune response, such as the interferon inducible form of the RNA editing enzyme ADAR1 (p150), Z-DNA binding protein 1 (ZBP1), the fish kinase PKZ and the poxvirus inhibitor of interferon response E3L, indicates important roles of Z-DNA/RNA in immunity and self/non-self-discrimination. Such Zα domain-containing proteins recognize left-handed Z-DNA/RNA in a conformation-specific manner. Recent studies have implicated these domains in virus recognition. Given these important emerging roles for the Zα domains, it is pivotal to understand the mechanism of recognition of the Z-DNA/Z-RNA by these domains. To this end, we assessed the binding thermodynamics of Zα domain from ORF112 and ADAR1 on T(CG)3 and T(CG)6 oligonucleotides which have high propensity to adopt the Z-conformation. Our study highlights important differences in the mode of oligonucleotide binding by the two Zα domains originating from different proteins. Site-directed mutagenesis was employed together with isothermal titration calorimetry to tease apart finer details of the binding thermodynamics. Our work advances the understanding on binding thermodynamics of Zα domains to their cognate nucleic acid substrates and paves the ground for future efforts to gain a complete appreciation of this process.
采用左手构象(Z 构象)的 DNA/RNA 分子被认为具有免疫原性。然而,它们的生物学作用和重要性多年来一直是争论的话题。在先天免疫反应中涉及的各种蛋白质中发现了 Z-DNA/RNA 结合结构域(Zα 结构域),如干扰素诱导的 RNA 编辑酶 ADAR1(p150)的形式、Z-DNA 结合蛋白 1(ZBP1)、鱼类激酶 PKZ 和痘病毒干扰素反应抑制剂 E3L,表明 Z-DNA/RNA 在免疫和自我/非自我识别中具有重要作用。这些含有 Zα 结构域的蛋白质以构象特异性的方式识别左手 Z-DNA/RNA。最近的研究表明,这些结构域参与了病毒的识别。鉴于这些 Zα 结构域的重要新兴作用,了解这些结构域识别 Z-DNA/Z-RNA 的机制至关重要。为此,我们评估了来自 ORF112 和 ADAR1 的 Zα 结构域与具有高 Z 构象倾向的 T(CG)3 和 T(CG)6 寡核苷酸的结合热力学。我们的研究强调了来自不同蛋白质的两个 Zα 结构域结合寡核苷酸的模式的重要差异。定点突变与等温滴定量热法一起用于分离结合热力学的更细微细节。我们的工作推进了对 Zα 结构域与其同源核酸底物结合的热力学的理解,并为未来努力全面了解这一过程奠定了基础。