Neil3-dependent base excision repair regulates lipid metabolism and prevents atherosclerosis in Apoe-deficient mice
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P. Iversen | L. Folkersen | U. Hedin | B. Bjørndal | S. Nygård | G. Hansson | M. Bjørås | T. Ueland | A. Svardal | P. Aukrust | R. Berge | L. Luna | R. Suganthan | K. Scheffler | C. Neurauter | Anna Kuśnierczyk | Gunn A Hildrestrand | G. Slupphaug | L. Eide | E. Biessen | B. Halvorsen | M. Skjelland | K. Krohg‐Sørensen | D. Ketelhuth | Sverre Holm | T. Dahl | O. K. Olstad | F. Segers | J. Otten | T. Skarpengland | I. Østlie | Ida Gregersen | Anna M. C. Lundberg
[1] A. Gabrielsen,et al. Gene expression signatures, pathways and networks in carotid atherosclerosis , 2016, Journal of internal medicine.
[2] A. M. Fleming,et al. The NEIL glycosylases remove oxidized guanine lesions from telomeric and promoter quadruplex DNA structures , 2015, Nucleic acids research.
[3] I. Janszky,et al. Genetic variants in the DNA repair gene NEIL3 and the risk of myocardial infarction in a nested case-control study. The HUNT Study. , 2015, DNA repair.
[4] K. Rye,et al. HDL particle size is a critical determinant of ABCA1-mediated macrophage cellular cholesterol export. , 2015, Circulation research.
[5] P. Aukrust,et al. Interleukin 23 Levels Are Increased in Carotid Atherosclerosis: Possible Role for the Interleukin 23/Interleukin 17 Axis , 2015, Stroke.
[6] B. Bjørndal,et al. Hypolipidemic effect of dietary water-soluble protein extract from chicken: impact on genes regulating hepatic lipid and bile acid metabolism , 2015, European Journal of Nutrition.
[7] T. Minamino,et al. DNA damage response and metabolic disease. , 2014, Cell metabolism.
[8] R. Micha,et al. Dietary fats and cardiovascular disease: putting together the pieces of a complicated puzzle. , 2014, Atherosclerosis.
[9] M. Bjørås,et al. The distribution of DNA damage is defined by region-specific susceptibility to DNA damage formation rather than repair differences. , 2014, DNA repair.
[10] Peter Tontonoz,et al. Liver X receptors in lipid metabolism: opportunities for drug discovery , 2014, Nature Reviews Drug Discovery.
[11] John D Lambris,et al. Cholesterol Crystals Induce Complement-Dependent Inflammasome Activation and Cytokine Release , 2014, The Journal of Immunology.
[12] K. Moore,et al. Macrophages in atherosclerosis: a dynamic balance , 2013, Nature Reviews Immunology.
[13] T. Ueland,et al. Increased Systemic and Local Interleukin 9 Levels in Patients with Carotid and Coronary Atherosclerosis , 2013, PloS one.
[14] O. Surova,et al. Various modes of cell death induced by DNA damage , 2013, Oncogene.
[15] M. Bennett,et al. Mitochondrial DNA Damage Can Promote Atherosclerosis Independently of Reactive Oxygen Species Through Effects on Smooth Muscle Cells and Monocytes and Correlates With Higher-Risk Plaques in Humans , 2013, Circulation.
[16] C. Burrows,et al. Neil3 and NEIL1 DNA Glycosylases Remove Oxidative Damages from Quadruplex DNA and Exhibit Preferences for Lesions in the Telomeric Sequence Context* , 2013, The Journal of Biological Chemistry.
[17] M. Olivier,et al. Fatty acid binding protein 3 (fabp3) is associated with insulin, lipids and cardiovascular phenotypes of the metabolic syndrome through epigenetic modifications in a northern european family population , 2013, BMC Medical Genomics.
[18] S. Doublié,et al. Neil3, the final frontier for the DNA glycosylases that recognize oxidative damage. , 2013, Mutation research.
[19] A. H. Smits,et al. Dynamic Readers for 5-(Hydroxy)Methylcytosine and Its Oxidized Derivatives , 2013, Cell.
[20] T. Edvardsen,et al. Tetradecylthioacetic Acid Increases Fat Metabolism and Improves Cardiac Function in Experimental Heart Failure , 2013, Lipids.
[21] L. Beckers,et al. Hematopoietic G‐protein‐coupled receptor kinase 2 deficiency decreases atherosclerotic lesion formation in LDL receptor‐knockout mice , 2013, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[22] H. Sampath,et al. 8-Oxoguanine DNA Glycosylase (OGG1) Deficiency Increases Susceptibility to Obesity and Metabolic Dysfunction , 2012, PloS one.
[23] A. Galli,et al. DNA Damage and Repair in Atherosclerosis: Current Insights and Future Perspectives , 2012, International journal of molecular sciences.
[24] B. Bjørndal,et al. Free carnitine and acylcarnitines in obese patients with polycystic ovary syndrome and effects of pioglitazone treatment. , 2012, Fertility and sterility.
[25] B. Bjørndal,et al. Krill powder increases liver lipid catabolism and reduces glucose mobilization in tumor necrosis factor-alpha transgenic mice fed a high-fat diet. , 2012, Metabolism: clinical and experimental.
[26] M. Bjørås,et al. Hippocampal adult neurogenesis is maintained by Neil3-dependent repair of oxidative DNA lesions in neural progenitor cells. , 2012, Cell reports.
[27] B. Bjørndal,et al. Dietary supplementation of herring roe and milt enhances hepatic fatty acid catabolism in female mice transgenic for hTNFα , 2012, European Journal of Nutrition.
[28] Lasse Folkersen,et al. Prediction of Ischemic Events on the Basis of Transcriptomic and Genomic Profiling in Patients Undergoing Carotid Endarterectomy , 2012, Molecular medicine.
[29] P. Aukrust,et al. High Levels of S100A12 Are Associated With Recent Plaque Symptomatology in Patients With Carotid Atherosclerosis , 2012, Stroke.
[30] C. Potter,et al. Global LINE-1 DNA methylation is associated with blood glycaemic and lipid profiles , 2012, International journal of epidemiology.
[31] A. Gabrielsen,et al. Correlations between clinical variables and gene-expression profiles in carotid plaque instability. , 2011, European journal of vascular and endovascular surgery : the official journal of the European Society for Vascular Surgery.
[32] M. Bjørås,et al. Endonuclease VIII-like 3 (Neil3) DNA glycosylase promotes neurogenesis induced by hypoxia-ischemia , 2011, Proceedings of the National Academy of Sciences.
[33] C. Weber,et al. Atherosclerosis: current pathogenesis and therapeutic options , 2011, Nature Medicine.
[34] C. Marsit,et al. Cardiovascular disease risk factors and DNA methylation at the LINE-1 repeat region in peripheral blood from Samoan Islanders , 2011, Epigenetics.
[35] Amal A. Baalash,et al. Biochemical Study of Oxidative Stress Markers in the Liver, Kidney and Heart of High Fat Diet Induced Obesity in Rats , 2011, Diabetology & metabolic syndrome.
[36] L. Folkersen,et al. Expression of fatty acid–binding protein 4/aP2 is correlated with plaque instability in carotid atherosclerosis , 2011, Journal of internal medicine.
[37] L. Thibault,et al. High-fat diet-induced obesity in animal models , 2010, Nutrition Research Reviews.
[38] H. Tilg,et al. Evolution of inflammation in nonalcoholic fatty liver disease: The multiple parallel hits hypothesis , 2010, Hepatology.
[39] Xiaobei Zhao,et al. The mouse ortholog of NEIL3 is a functional DNA glycosylase in vitro and in vivo , 2010, Proceedings of the National Academy of Sciences.
[40] J. Ntambi,et al. Biochemical and physiological function of stearoyl-CoA desaturase. , 2009, American journal of physiology. Endocrinology and metabolism.
[41] Jing Chen,et al. ToppGene Suite for gene list enrichment analysis and candidate gene prioritization , 2009, Nucleic Acids Res..
[42] S. Krauss,et al. Expression patterns of Neil3 during embryonic brain development and neoplasia , 2009, BMC Neuroscience.
[43] S. French,et al. Altered expression of transcription factors and genes regulating lipogenesis in liver and adipose tissue of mice with high fat diet-induced obesity and nonalcoholic fatty liver disease , 2008, European journal of gastroenterology & hepatology.
[44] M. Honda,et al. Increased oxidative stress precedes the onset of high-fat diet-induced insulin resistance and obesity. , 2008, Metabolism: clinical and experimental.
[45] B. Williams,et al. Mapping and quantifying mammalian transcriptomes by RNA-Seq , 2008, Nature Methods.
[46] Jagadeesan Nair,et al. Lipid peroxidation-induced DNA damage in cancer-prone inflammatory diseases: a review of published adduct types and levels in humans. , 2007, Free radical biology & medicine.
[47] C. Gustafsson,et al. DNA replication and transcription in mammalian mitochondria. , 2007, Annual review of biochemistry.
[48] Jeffrey T. Chang,et al. GATHER: a systems approach to interpreting genomic signatures , 2006, Bioinform..
[49] M. Miyazaki,et al. Probing the role of stearoyl-CoA desaturase-1 in hepatic insulin resistance. , 2006, The Journal of clinical investigation.
[50] C. Corless,et al. The metabolic syndrome resulting from a knockout of the NEIL1 DNA glycosylase. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[51] G. Getz,et al. Diet and Murine Atherosclerosis , 2005, Arteriosclerosis, thrombosis, and vascular biology.
[52] Y. Nakabeppu,et al. Hematopoietic tissue-specific expression of mouse Neil3 for endonuclease VIII-like protein. , 2005, Journal of biochemistry.
[53] Shankar Balasubramanian,et al. Prevalence of quadruplexes in the human genome , 2005, Nucleic acids research.
[54] J. Schneider,et al. "New" hepatic fat activates PPARalpha to maintain glucose, lipid, and cholesterol homeostasis. , 2005, Cell metabolism.
[55] I. Kohane,et al. Gene regulation and DNA damage in the ageing human brain , 2004, Nature.
[56] S. Krähenbühl,et al. Determination of carnitine and acylcarnitines in plasma by high-performance liquid chromatography/electrospray ionization ion trap tandem mass spectrometry. , 2004, Rapid communications in mass spectrometry : RCM.
[57] Rafael A Irizarry,et al. Exploration, normalization, and summaries of high density oligonucleotide array probe level data. , 2003, Biostatistics.
[58] I. Dybedal,et al. Self-Renewal of Multipotent Long-Term Repopulating Hematopoietic Stem Cells Is Negatively Regulated by FAS and Tumor Necrosis Factor Receptor Activation , 2001, The Journal of experimental medicine.
[59] S. Kaveri,et al. Immunoglobulin treatment reduces atherosclerosis in apo E knockout mice. , 1998, The Journal of clinical investigation.
[60] J. Claverie,et al. The significance of digital gene expression profiles. , 1997, Genome research.
[61] R. Berge,et al. On the mechanism of the hypolipidemic effect of sulfur-substituted hexadecanedioic acid (3-thiadicarboxylic acid) in normolipidemic rats. , 1993, Journal of lipid research.
[62] S. Gordon,et al. Optimal conditions for proliferation of bone marrow‐derived mouse macrophages in culture: The roles of CSF‐1, serum, Ca2+, and adherence , 1983, Journal of cellular physiology.
[63] J. Bremer,et al. The effect of fasting on the activity of liver carnitine palmitoyltransferase and its inhibition by malonyl-CoA. , 1981, Biochimica et biophysica acta.
[64] 山本 高司,et al. Dynamic balance とその訓練効果 , 1978 .
[65] W. J. Dyer,et al. A rapid method of total lipid extraction and purification. , 1959, Canadian journal of biochemistry and physiology.
[66] J. Błasiak,et al. [Base excision repair]. , 2005, Postepy biochemii.
[67] P. Schär,et al. Communicated by: E. Nigg , 2022 .