Molecular Biology Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
mBio. 2024 Aug 14;15(8):e0124824. doi: 10.1128/mbio.01248-24. Epub 2024 Jul 16.
Nei2 is a monomeric enzyme with AP β-lyase activity on single-stranded DNA. Expression of Nei2, and its operonic neighbor Lhr (a tetrameric 3'-to-5' helicase), is induced in mycobacteria exposed to DNA damaging agents. Here, we find that deletion sensitizes to killing by DNA inter-strand crosslinker trimethylpsoralen but not to crosslinkers mitomycin C and cisplatin. By contrast, deletion of sensitizes to killing by all three crosslinking agents. We report a 1.45 Å crystal structure of recombinant Nei2, which is composed of N and C terminal lobes flanking a central groove suitable for DNA binding. The C lobe includes a tetracysteine zinc complex. Mutational analysis identifies the N-terminal proline residue (Pro2 of the ORF) and Lys51, but not Glu3, as essential for AP lyase activity. We find that Nei2 has 5-hydroxyuracil glycosylase activity on single-stranded DNA that is effaced by alanine mutations of Glu3 and Lys51 but not Pro2. Testing complementation of psoralen sensitivity by expression of wild-type and mutant alleles in ∆ cells established that AP lyase activity is neither sufficient nor essential for crosslink repair. By contrast, complementation of psoralen sensitivity of ∆ cells by mutant alleles depended on Lhr's ATPase/helicase activities and its tetrameric quaternary structure. The operon comprises a unique bacterial system to rectify inter-strand crosslinks.IMPORTANCEThe DNA inter-strand crosslinking agents mitomycin C, cisplatin, and psoralen-UVA are used clinically for the treatment of cancers and skin diseases; they have been invaluable in elucidating the pathways of inter-strand crosslink repair in eukaryal systems. Whereas DNA crosslinkers are known to trigger a DNA damage response in bacteria, the roster of bacterial crosslink repair factors is incomplete and likely to vary among taxa. This study implicates the DNA damage-inducible mycobacterial gene operon in protecting from killing by inter-strand crosslinkers. Whereas interdicting the activity of the Lhr helicase sensitizes mycobacteria to mitomycin C, cisplatin, and psoralen-UVA, the Nei2 glycosylase functions uniquely in evasion of damage caused by psoralen-UVA.
Nei2 是一种具有单链 DNA 上 AP β-裂合酶活性的单体酶。当分枝杆菌暴露于 DNA 损伤剂时,Nei2 及其操纵子邻居 Lhr(一种四聚体 3'-到-5'解旋酶)的表达被诱导。在这里,我们发现缺失使分枝杆菌对 DNA 链间交联剂三甲噁唑并嘧啶敏感,但对交联剂丝裂霉素 C 和顺铂不敏感。相比之下,缺失使分枝杆菌对所有三种交联剂都敏感。我们报告了重组 Nei2 的 1.45Å 晶体结构,它由 N 和 C 末端叶瓣围绕中央槽组成,适合 DNA 结合。C 叶瓣包含一个四半胱氨酸锌复合物。突变分析确定 N 端脯氨酸残基(ORF 的 Pro2)和 Lys51,但不是 Glu3,是 AP 裂合酶活性所必需的。我们发现 Nei2 对单链 DNA 具有 5-羟尿嘧啶糖苷酶活性,该活性被 Glu3 和 Lys51 的丙氨酸突变消除,但 Pro2 没有。通过在 ∆ 细胞中表达野生型和突变型等位基因来测试补体对三甲噁唑嘧啶敏感性,确定 AP 裂合酶活性既不是必需的,也不是必需的。相比之下,通过突变型等位基因在 ∆ 细胞中的补体对 psoralen 敏感性的依赖于 Lhr 的 ATPase/解旋酶活性及其四聚体四级结构。该操纵子包含一个独特的细菌系统来纠正链间交联。
重要性:丝氨酸-DNA 交联剂丝裂霉素 C、顺铂和补骨脂素-UVA 临床上用于治疗癌症和皮肤病;它们在阐明真核系统中链间交联修复途径方面非常有价值。尽管已知 DNA 交联剂会在细菌中引发 DNA 损伤反应,但细菌交联修复因子的名单并不完整,并且可能因分类群而异。这项研究将分枝杆菌的 DNA 损伤诱导基因操纵子牵连到保护免受链间交联剂杀伤。尽管抑制 Lhr 解旋酶的活性使分枝杆菌对丝裂霉素 C、顺铂和补骨脂素-UVA 敏感,但 Nei2 糖苷酶在逃避补骨脂素-UVA 引起的损伤方面具有独特的功能。