Yin Lulu, Shi Ke, Chen Yanjun, Harris Reuben S, Aihara Hideki
bioRxiv. 2024 Sep 8:2024.09.08.611884. doi: 10.1101/2024.09.08.611884.
DNA deaminase toxins are involved in interbacterial antagonism and the generation of genetic diversity in surviving bacterial populations. These enzymes have also been adopted as genome engineering tools. The single-stranded (ss)DNA deaminase SsdA represents the bacterial deaminase toxin family-2 (BaDTF2) and it deaminates ssDNA cytosines with little sequence context dependence, which contrasts with the AID/APOBEC family of sequence-selective ssDNA cytosine deaminases. Here we report the crystal structure of SsdA in complex with a ssDNA substrate. The structure reveals a unique mode of substrate binding, in which a cluster of aromatic residues of SsdA engages ssDNA in a V-shaped conformation sharply bent across the target cytosine. The bases 5' or 3' to the target cytosine are stacked linearly and make few sequence-specific protein contacts, thus explaining the broad substrate selectivity of SsdA. Unexpectedly, SsdA contains a β-amino acid isoaspartate, which is important for enzymatic activity and may contribute to the stability of SsdA as a toxin. Structure- function studies helped to design SsdA mutants active in human cells, which could lead to future applications in genome engineering.
DNA脱氨酶毒素参与细菌间的拮抗作用以及存活细菌群体中遗传多样性的产生。这些酶也已被用作基因组工程工具。单链(ss)DNA脱氨酶SsdA代表细菌脱氨酶毒素家族2(BaDTF2),它对ssDNA胞嘧啶进行脱氨作用时几乎不依赖序列背景,这与序列选择性ssDNA胞嘧啶脱氨酶的AID/APOBEC家族形成对比。在此,我们报告了与ssDNA底物结合的SsdA的晶体结构。该结构揭示了一种独特的底物结合模式,其中SsdA的一组芳香族残基以V形构象与ssDNA结合,该构象在目标胞嘧啶处急剧弯曲。目标胞嘧啶5'或3'端的碱基呈线性堆积,与蛋白质几乎没有序列特异性接触,从而解释了SsdA广泛的底物选择性。出乎意料的是,SsdA含有一种β-氨基酸异天冬氨酸,它对酶活性很重要,可能有助于SsdA作为毒素的稳定性。结构-功能研究有助于设计在人类细胞中具有活性的SsdA突变体,这可能会在未来的基因组工程中得到应用。