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Specialization of an Exonuclease III family enzyme in the repair of 3′ DNA lesions during base excision repair in the human pathogen Neisseria meningitidis

机译:核酸外切酶III家族酶在人类脑膜炎奈瑟氏球菌碱基切除修复过程中3DNA损伤修复中的专长

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摘要

We have previously demonstrated that the two Exonuclease III (Xth) family members present within the obligate human pathogen Neisseria meningitidis, NApe and NExo, are important for survival under conditions of oxidative stress. Of these, only NApe possesses AP endonuclease activity, while the primary function of NExo remained unclear. We now reveal further functional specialization at the level of 3′-PO4 processing for NExo. We demonstrate that the bi-functional meningococcal glycosylases Nth and MutM can perform strand incisions at abasic sites in addition to NApe. However, no such functional redundancy exists for the 3′-phosphatase activity of NExo, and the cytotoxicity of 3′-blocking lesions is reflected in the marked sensitivity of a mutant lacking NExo to oxidative stress, compared to strains deficient in other base excision repair enzymes. A histidine residue within NExo that is responsible for its lack of AP endonuclease activity is also important for its 3′-phosphatase activity, demonstrating an evolutionary trade off in enzyme function at the single amino acid level. This specialization of two Xth enzymes for the 3′-end processing and strand-incision reactions has not previously been observed and provides a new paradigm within the prokaryotic world for separation of these critical functions during base excision repair.
机译:我们以前已经证明存在于专性人类病原体脑膜炎奈瑟氏球菌NApe和NExo中的两个核酸外切酶III(Xth)家族成员对于在氧化应激条件下的存活很重要。其中,只有NApe具有AP核酸内切酶活性,而NExo的主要功能尚不清楚。现在,我们在NExo的3'-PO4处理水平上揭示了进一步的功能专业化。我们证明,双功能脑膜炎球菌糖基化酶Nth和MutM可以在除NApe之外的无碱基位置进行链切开。但是,对于NExo的3'-磷酸酶活性不存在这样的功能冗余,与缺乏其他碱基切除修复的菌株相比,缺乏NExo的突变体对氧化应激的显着敏感性反映了3'-阻断性病变的细胞毒性。酶。 NExo内导致其AP核酸内切酶活性不足的组氨酸残基对其3'-磷酸酶活性也很重要,这表明了在单个氨基酸水平上酶功能的进化折衷。以前尚未观察到用于3'末端加工和链切割反应的两种Xth酶的这种特殊化,并为原核切除术中碱基切除修复过程中这些关键功能的分离提供了新的范例。

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