Fukuoka Dental College, Fukuoka 814-0193, Japan.
J Biol Chem. 2012 Jun 15;287(25):21541-9. doi: 10.1074/jbc.M112.363010. Epub 2012 May 3.
Most of the proteins carrying the 23-residue MutT-related sequence are capable of hydrolyzing compounds with a general structure of nucleoside diphosphate linked to another moiety X and are called the Nudix hydrolases. Among the 22 human Nudix proteins (identified by the sequence signature), some remain uncharacterized as enzymes without a defined substrate. Here, we reveal that the NUDT18 protein, whose substrate was unknown, can degrade 8-oxo-7,8-dihydroguanine (8-oxo-Gua)-containing nucleoside diphosphates to the monophosphates. Because this enzyme is closely related to MTH1 (NUDT1) and MTH2 (NUDT15), we propose that it should be named MTH3. Although these three human proteins resemble each other in their sequences, their substrate specificities differ considerably. MTH1 cleaves 8-oxo-dGTP but not 8-oxo-dGDP, whereas MTH2 can degrade both 8-oxo-dGTP and 8-oxo-dGDP, although the intrinsic enzyme activity of MTH2 is considerably lower than that of MTH1. On the other hand, MTH3 is specifically active against 8-oxo-dGDP and hardly cleaves 8-oxo-dGTP. Other types of oxidized nucleoside diphosphates, 2-hydroxy-dADP and 8-hydroxy-dADP, were also hydrolyzed by MTH3. Another notable feature of the MTH3 enzyme is its action toward the ribonucleotide counterpart. MTH3 can degrade 8-oxo-GDP as efficiently as 8-oxo-dGDP, which is in contrast to the finding that MTH1 and MTH2 show a limited activity against the ribonucleotide counterpart, 8-oxo-GTP. These three enzymes may function together to help maintain the high fidelity of DNA replication and transcription under oxidative stress.
大多数携带 23 个残基 MutT 相关序列的蛋白质能够水解具有核苷二磷酸连接到另一个部分 X 的一般结构的化合物,被称为 Nudix 水解酶。在 22 个人类 Nudix 蛋白(通过序列特征识别)中,一些仍然没有明确的底物作为酶而未被表征。在这里,我们揭示了 NUDT18 蛋白,其底物未知,能够将含有 8-氧代-7,8-二氢鸟嘌呤(8-氧代-Gua)的核苷二磷酸降解为单磷酸。由于这种酶与 MTH1(NUDT1)和 MTH2(NUDT15)密切相关,我们建议将其命名为 MTH3。尽管这三种人类蛋白质在序列上彼此相似,但它们的底物特异性有很大差异。MTH1 可切割 8-氧代-dGTP,但不能切割 8-氧代-dGDP,而 MTH2 可以降解 8-氧代-dGTP 和 8-氧代-dGDP,尽管 MTH2 的内在酶活性明显低于 MTH1。另一方面,MTH3 对 8-氧代-dGDP 具有特异性,几乎不能切割 8-氧代-dGTP。其他类型的氧化核苷二磷酸,2-羟基-dADP 和 8-羟基-dADP,也被 MTH3 水解。MTH3 酶的另一个显著特征是其对核糖核苷酸对应物的作用。MTH3 可以像降解 8-氧代-dGDP 一样有效地降解 8-氧代-GDP,这与 MTH1 和 MTH2 对核糖核苷酸对应物 8-氧代-GTP 的活性有限的发现形成对比。这三种酶可能共同发挥作用,有助于在氧化应激下维持 DNA 复制和转录的高保真度。