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Maeda N

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Title Authors Year Journal
Dehydroaltenusin is a specific inhibitor of mammalian DNA polymerase α Maeda N 2011 Expert opinion on investigational drugs
Mitochondrial DNA polymerase editing mutation, PolgD257A, reduces the diabetic phenotype of Akita male mice by suppressing appetite. Maeda N 2011 Proceedings of the National Academy of Sciences of the United States of America
Anti-cancer effect of spinach glycoglycerolipids as angiogenesis inhibitors based on the selective inhibition of DNA polymerase activity. Maeda N 2011 Mini reviews in medicinal chemistry
Structure and activity relationship of monogalactosyl diacylglycerols, which selectively inhibited in vitro mammalian replicative DNA polymerase activity and human cancer cell growth. Maeda N 2009 Cancer Lett
Anti-tumor effect of orally administered spinach glycolipid fraction on implanted cancer cells, colon-26, in mice. Maeda N 2008 Lipids
Anti-tumor effects of dehydroaltenusin, a specific inhibitor of mammalian DNA polymerase alpha. Maeda N 2007 Biochem Biophys Res Commun
Anti-tumor effects of the glycolipids fraction from spinach which inhibited DNA polymerase activity. Maeda N 2007 Nutr Cancer
Inhibitory effect of monogalactosyldiacylglycerol, extracted from spinach using supercritical CO2, on mammalian DNA polymerase activity. Maeda N 2006 J Agric Food Chem
Inhibitory effects of glycolipids fraction from spinach on mammalian DNA polymerase activity and human cancer cell proliferation. Maeda N 2005 J Nutr Biochem
Effects of DNA polymerase inhibitory and antitumor activities of lipase-hydrolyzed glycolipid fractions from spinach. Maeda N 2005 J Nutr Biochem
The effects of dehydroaltenusin, a novel mammalian DNA polymerase alpha inhibitor, on cell proliferation and cell cycle progression. Maeda N 2004 Biochimica et biophysica acta
Effects of glycolipids from spinach on mammalian DNA polymerases. Maeda N 2003 Biochemical pharmacology
Inhibitory action of emulsified sulfoquinovosyl acylglycerol on mammalian DNA polymerases. Maeda N 2003 Lipids
Presence of DNA in rubella variant with DNA polymerase activity. Maeda N 1979 Arch Virol
Persistent infection of primary human cell cultures with rubella variant carrying DNA Polymerase activity. Maeda N 1978 Arch Virol

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