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2
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Targeted deletion of the genes encoding NTH1 and NEIL1 DNA N-glycosylases reveals the existence of novel carcinogenic oxidative damage to DNA.对编码NTH1和NEIL1 DNA N-糖基化酶的基因进行靶向缺失,揭示了DNA存在新的致癌性氧化损伤。
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Variable penetrance of metabolic phenotypes and development of high-fat diet-induced adiposity in NEIL1-deficient mice.NEIL1 缺陷型小鼠代谢表型的可变外显率和高脂肪饮食诱导肥胖的发生。
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本文引用的文献

1
Repair of formamidopyrimidines in DNA involves different glycosylases: role of the OGG1, NTH1, and NEIL1 enzymes.DNA中脒基嘧啶的修复涉及不同的糖基化酶:OGG1、NTH1和NEIL1酶的作用。
J Biol Chem. 2005 Dec 9;280(49):40544-51. doi: 10.1074/jbc.M508772200. Epub 2005 Oct 11.
2
NEIL1 excises 3' end proximal oxidative DNA lesions resistant to cleavage by NTH1 and OGG1.NEIL1切除对NTH1和OGG1切割具有抗性的3'端近端氧化性DNA损伤。
Nucleic Acids Res. 2005 Aug 29;33(15):4849-56. doi: 10.1093/nar/gki816. Print 2005.
3
Induction of the human oxidized base-specific DNA glycosylase NEIL1 by reactive oxygen species.活性氧诱导人类氧化碱基特异性DNA糖基化酶NEIL1的产生。
J Biol Chem. 2005 Oct 21;280(42):35272-80. doi: 10.1074/jbc.M505526200. Epub 2005 Aug 22.
4
Extension of murine life span by overexpression of catalase targeted to mitochondria.通过将过氧化氢酶过表达靶向线粒体来延长小鼠寿命。
Science. 2005 Jun 24;308(5730):1909-11. doi: 10.1126/science.1106653. Epub 2005 May 5.
5
Obesity and metabolic syndrome in circadian Clock mutant mice.昼夜节律时钟突变小鼠中的肥胖与代谢综合征
Science. 2005 May 13;308(5724):1043-5. doi: 10.1126/science.1108750. Epub 2005 Apr 21.
6
Mouse NEIL1 protein is specific for excision of 2,6-diamino-4-hydroxy-5-formamidopyrimidine and 4,6-diamino-5-formamidopyrimidine from oxidatively damaged DNA.小鼠NEIL1蛋白对从氧化损伤的DNA中切除2,6-二氨基-4-羟基-5-甲酰胺基嘧啶和4,6-二氨基-5-甲酰胺基嘧啶具有特异性。
Biochemistry. 2004 Dec 21;43(50):15909-14. doi: 10.1021/bi048162l.
7
Stimulation of DNA glycosylase activity of OGG1 by NEIL1: functional collaboration between two human DNA glycosylases.NEIL1对OGG1 DNA糖基化酶活性的刺激:两种人类DNA糖基化酶之间的功能协作。
Biochemistry. 2004 Sep 14;43(36):11596-604. doi: 10.1021/bi049097i.
8
Oxidative DNA damage and disease: induction, repair and significance.氧化性DNA损伤与疾病:诱导、修复及意义
Mutat Res. 2004 Sep;567(1):1-61. doi: 10.1016/j.mrrev.2003.11.001.
9
Current and investigational antiobesity agents and obesity therapeutic treatment targets.当前和正在研究的抗肥胖药物及肥胖治疗靶点。
Obes Res. 2004 Aug;12(8):1197-211. doi: 10.1038/oby.2004.151.
10
Inactivating mutations of the human base excision repair gene NEIL1 in gastric cancer.人类碱基切除修复基因NEIL1在胃癌中的失活突变。
Carcinogenesis. 2004 Dec;25(12):2311-7. doi: 10.1093/carcin/bgh267. Epub 2004 Aug 19.

由于NEIL1 DNA糖基化酶基因敲除导致的代谢综合征。

The metabolic syndrome resulting from a knockout of the NEIL1 DNA glycosylase.

作者信息

Vartanian Vladimir, Lowell Brian, Minko Irina G, Wood Thomas G, Ceci Jeffrey D, George Shakeeta, Ballinger Scott W, Corless Christopher L, McCullough Amanda K, Lloyd R Stephen

机构信息

Center for Research on Occupational and Environmental Toxicology and Department of Molecular and Medical Genetics, Oregon Health & Science University, Portland, OR 97239-3098, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Feb 7;103(6):1864-9. doi: 10.1073/pnas.0507444103. Epub 2006 Jan 30.

DOI:10.1073/pnas.0507444103
PMID:16446448
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1413631/
Abstract

Endogenously formed reactive oxygen species continuously damage cellular constituents including DNA. These challenges, coupled with exogenous exposure to agents that generate reactive oxygen species, are both associated with normal aging processes and linked to cardiovascular disease, cancer, cataract formation, and fatty liver disease. Although not all of these diseases have been definitively shown to originate from mutations in nuclear DNA or mitochondrial DNA, repair of oxidized, saturated, and ring-fragmented bases via the base excision repair pathway is known to be critical for maintaining genomic stability. One enzyme that initiates base excision repair of ring-fragmented purines and some saturated pyrimidines is NEIL1, a mammalian homolog to Escherichia coli endonuclease VIII. To investigate the organismal consequences of a deficiency in NEIL1, a knockout mouse model was created. In the absence of exogenous oxidative stress, neil1 knockout (neil1-/-) and heterozygotic (neil1+/-) mice develop severe obesity, dyslipidemia, and fatty liver disease and also have a tendency to develop hyperinsulinemia. In humans, this combination of clinical manifestations, including hypertension, is known as the metabolic syndrome and is estimated to affect >40 million people in the United States. Additionally, mitochondrial DNA from neil1-/- mice show increased levels of steady-state DNA damage and deletions relative to wild-type controls. These data suggest an important role for NEIL1 in the prevention of the diseases associated with the metabolic syndrome.

摘要

内源性生成的活性氧会持续损害包括DNA在内的细胞成分。这些挑战,再加上外源性接触产生活性氧的物质,既与正常衰老过程相关,也与心血管疾病、癌症、白内障形成和脂肪肝疾病有关。尽管并非所有这些疾病都已被明确证明源于核DNA或线粒体DNA的突变,但通过碱基切除修复途径修复氧化、饱和和环状断裂的碱基对于维持基因组稳定性至关重要。启动环状断裂嘌呤和一些饱和嘧啶碱基切除修复的一种酶是NEIL1,它是大肠杆菌内切核酸酶VIII的哺乳动物同源物。为了研究NEIL1缺乏对生物体的影响,创建了一种基因敲除小鼠模型。在没有外源性氧化应激的情况下,neil1基因敲除(neil1-/-)和杂合子(neil1+/-)小鼠会出现严重肥胖、血脂异常和脂肪肝疾病,并且还倾向于发展为高胰岛素血症。在人类中,这种包括高血压在内的临床表现组合被称为代谢综合征,据估计在美国影响超过4000万人。此外,相对于野生型对照,neil1-/-小鼠的线粒体DNA显示出稳态DNA损伤和缺失水平增加。这些数据表明NEIL在预防与代谢综合征相关的疾病中起重要作用。