Division of Neurofunctional Genomics, Department of Immunobiology and Neuroscience, Medical Institute of Bioregulation, Kyushu University, Fukuoka, 812-8582, Japan.
Nucleic Acids Res. 2010 May;38(9):2891-903. doi: 10.1093/nar/gkp1250. Epub 2010 Jan 15.
Mammalian inosine triphosphatase encoded by ITPA gene hydrolyzes ITP and dITP to monophosphates, avoiding their deleterious effects. Itpa(-) mice exhibited perinatal lethality, and significantly higher levels of inosine in cellular RNA and deoxyinosine in nuclear DNA were detected in Itpa(-) embryos than in wild-type embryos. Therefore, we examined the effects of ITPA deficiency on mouse embryonic fibroblasts (MEFs). Itpa(-) primary MEFs lacking ITP-hydrolyzing activity exhibited a prolonged doubling time, increased chromosome abnormalities and accumulation of single-strand breaks in nuclear DNA, compared with primary MEFs prepared from wild-type embryos. However, immortalized Itpa(-) MEFs had neither of these phenotypes and had a significantly higher ITP/IDP-hydrolyzing activity than Itpa(-) embryos or primary MEFs. Mammalian NUDT16 proteins exhibit strong dIDP/IDP-hydrolyzing activity and similarly low levels of Nudt16 mRNA and protein were detected in primary MEFs derived from both wild-type and Itpa(-) embryos. However, immortalized Itpa(-) MEFs expressed significantly higher levels of Nudt16 than the wild type. Moreover, introduction of silencing RNAs against Nudt16 into immortalized Itpa(-) MEFs reproduced ITPA-deficient phenotypes. We thus conclude that NUDT16 and ITPA play a dual protective role for eliminating dIDP/IDP and dITP/ITP from nucleotide pools in mammals.
ITPA 基因编码的哺乳动物肌苷三磷酸酶将 ITP 和 dITP 水解为单磷酸,从而避免其产生有害影响。Itpa(-) 小鼠表现出围产期致死性,并且在 Itpa(-) 胚胎中检测到细胞 RNA 中的肌苷和核 DNA 中的脱氧肌苷水平明显高于野生型胚胎。因此,我们研究了 ITPA 缺乏对小鼠胚胎成纤维细胞 (MEF) 的影响。缺乏 ITP 水解活性的 Itpa(-) 原代 MEF 表现出延长的倍增时间、增加的染色体异常和核 DNA 中单链断裂的积累,与从野生型胚胎制备的原代 MEF 相比。然而,永生化的 Itpa(-) MEF 既没有这些表型,又具有比 Itpa(-) 胚胎或原代 MEF 更高的 ITP/IDP 水解活性。哺乳动物 NUDT16 蛋白表现出强烈的 dIDP/IDP 水解活性,并且在源自野生型和 Itpa(-) 胚胎的原代 MEF 中检测到相似低水平的 Nudt16 mRNA 和蛋白。然而,永生化的 Itpa(-) MEF 表达的 Nudt16 水平明显高于野生型。此外,向永生化的 Itpa(-) MEF 中导入针对 Nudt16 的沉默 RNA 可再现 ITPA 缺陷表型。因此,我们得出结论,NUDT16 和 ITPA 在消除核苷酸池中的 dIDP/IDP 和 dITP/ITP 方面对哺乳动物发挥双重保护作用。