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18101por Provenzano, Paolo P, Inman, David R, Eliceiri, Kevin W, Knittel, Justin G, Yan, Long, Rueden, Curtis T, White, John G, Keely, Patricia J“…In addition, using multiphoton fluorescence and spectral lifetime imaging we identify a metabolic signature for flavin adenine dinucleotide, with increased fluorescent intensity and lifetime, in invading metastatic cells. …”
Publicado 2008
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18102por Chuang, Yin-Ching, Wang, Ke-Chuan, Chen, Yi-Tseng, Yang, Chia-Huei, Men, Shang-Chin, Fan, Chia-Chun, Chang, Li-Huan, Yeh, Kuang-Sheng“…A complementation test revealed that transforming a recombinant plasmid possessing the coding sequence of a NAD(P)H-flavin reductase gene ubiB restored an ubiB mutant to exhibit the type 1 fimbrial phenotype as its parental strain. …”
Publicado 2008
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18103por Rellán-Álvarez, Rubén, Andaluz, Sofía, Rodríguez-Celma, Jorge, Wohlgemuth, Gert, Zocchi, Graziano, Álvarez-Fernández, Ana, Fiehn, Oliver, López-Millán, Ana Flor, Abadía, Javier“…CONCLUSIONS: The increases in DMRL synthase and in RFO sugars were the major changes induced by Fe deficiency and resupply in root tips of sugar beet plants. Flavin synthesis could be involved in Fe uptake, whereas RFO sugars could be involved in the alleviation of oxidative stress, C trafficking or cell signalling. …”
Publicado 2010
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18104por Andriunas, Felicity A., Zhang, Hui-Ming, Xia, Xue, Offler, Christina E., McCurdy, David W., Patrick, John W.“…Ingrowth wall formation responded inversely to pharmacological manipulation of ROS levels, indicating that a flavin-containing enzyme (NADPH oxidase) and superoxide dismutase cooperatively generate a regulatory H(2)O(2) signature. …”
Publicado 2012
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18105por Lee, Yuno, Kim, Songmi, Lazar, Prettina, Moon, Jeong Chan, Hwang, Swan, Thangapandian, Sundarapandian, Shon, Youngsik, Lee, Kyun Oh, Lee, Sang Yeol, Lee, Keun Woo“…To find out the reason of this problem with structural basis, we performed two different molecular dynamics (MD) simulations on AtNTRC and AtNTRA-(Trx-D) proteins with same cofactors such as NADPH and flavin adenine dinucleotide (FAD) for 50 ns. Structural difference has found from superimposition of two structures that were taken relatively close to average structure. …”
Publicado 2012
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18106“…The mitochondrial redox state was determined by the ratio of the intrinsic fluorescence signals from reduced nicotinamide adenine dinucleotide (NADH) and oxidized flavoproteins (Fp including FAD, i.e., flavin adenine dinucleotide), and the glucose uptake was measured using a near-infrared fluorescent glucose-analogue, pyropheophorbide 2-deoxyglucosamide (Pyro-2DG). …”
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18107por Li, Fang, Zhang, Xiaomei, Hu, Ruibo, Wu, Faqiang, Ma, Jinhua, Meng, Ying, Fu, YongFu“…In Arabidopsis, FKF1 (FLAVIN BINDING, KELCH REPEAT, F-BOX1) and GI (GIGANTEA) play important roles in flowering pathway through regulating daytime CO (CONSTANS) expression, and such a function is conserved across plants studied. …”
Publicado 2013
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18108“…Multiple consecutive sections of each heart were imaged to map three redox indices, i.e., NADH, oxidized flavoproteins (Fp, including flavin adenine dinucleotide (FAD)) and the redox ratio NADH/Fp. …”
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18109por Shimizu, Makiko, Iwano, Shunsuke, Uno, Yasuhiro, Uehara, Shotaro, Inoue, Takashi, Murayama, Norie, Onodera, Jun, Sasaki, Erika, Yamazaki, Hiroshi“…Therefore, identification and quantitative analysis of tissue-specific mRNA transcripts, including those of P450s and flavin-containing monooxygenases (FMO, another monooxygenase family), need to be carried out in detail before the marmoset can be used as an animal model in drug development. …”
Publicado 2014
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18110por Benson, Jacqueline M., Poland, Jesse A., Benson, Brent M., Stromberg, Erik L., Nelson, Rebecca J.“…Cercosporin exposure increased expression of a putative flavin-monooxygenase (FMO) gene, a candidate detoxification-related gene underlying qGLS1.04. …”
Publicado 2015
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18111por Liu, Yan, Zhang, Wei, Xie, Liping, Liu, Hong, Gong, Guihua, Zhu, Baoquan, Hu, Youjia“…We found that the expression levels of thiamine biosynthesis-related enzymes, including the thiazole biosynthesis enzyme (Acthi), pyruvate oxidase, flavin adenine dinucleotide (FAD)-dependent oxidoreductase and sulfur carrier protein-thiS, were up-regulated in the HY strain. …”
Publicado 2015
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18112“…Using the Chance redox scanner with an in-plane spatial resolution of 200 μm, we imaged the mitochondrial redox state of the wild-type p53 colon tumors (HCT116 p53 wt) and the p53-deleted colon tumors (HCT116 p53(−/−)) by collecting the fluorescence signals of nicotinamide adenine dinucleotide (NADH) and oxidized flavoproteins [Fp, including flavin adenine dinucleotide (FAD)] from the mouse xenografts snap-frozen at low temperature. …”
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18113“…The LC-MS/MS analysis of tryptic digested intracellular proteins of Chelatococcus sp. when grown in DBT demonstrated the biosynthesis of 4S pathway desulfurizing enzymes viz. monoxygenases (DszC, DszA), desulfinase (DszB), and an NADH-dependent flavin reductase (DszD). Besides, several other intracellular proteins of Chelatococcus sp. having diverse biological functions were also identified by LC-MS/MS analysis. …”
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18114por Cha, Joon-Yung, Kim, Mi R., Jung, In J., Kang, Sun B., Park, Hee J., Kim, Min G., Yun, Dae-Jin, Kim, Woe-Yeon“…Auxin, a phytohormone that affects almost every aspect of plant growth and development, is biosynthesized from tryptophan via the tryptamine, indole-3-acetamide, indole-3-pyruvic acid, and indole-3-acetaldoxime pathways. YUCCAs (YUCs), flavin monooxygenase enzymes, catalyze the conversion of indole-3-pyruvic acid (IPA) to the auxin (indole acetic acid). …”
Publicado 2016
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18115por Winkel, Matthias, Salman-Carvalho, Verena, Woyke, Tanja, Richter, Michael, Schulz-Vogt, Heide N., Flood, Beverly E., Bailey, Jake V., Mußmann, Marc“…Moreover, we identified a novel trait of a flavin-based energy bifurcation pathway coupled to a Na(+)-translocating membrane complex (Rnf). …”
Publicado 2016
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18116por Narihiro, Takashi, Nobu, Masaru K., Tamaki, Hideyuki, Kamagata, Yoichi, Sekiguchi, Yuji, Liu, Wen-Tso“…In addition, these Syntrophomonadaceae strains harbor various hydrogen/formate generation systems (i.e., electron-bifurcating hydrogenase, formate dehydrogenase, and membrane-bound hydrogenase) and energy-conserving electron transport systems, including electron transfer flavoprotein (ETF)-linked acyl-CoA dehydrogenase, ETF-linked iron-sulfur binding reductase, ETF dehydrogenase (FixABCX), and flavin oxidoreductase-heterodisulfide reductase (Flox-Hdr). …”
Publicado 2016
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18117por Cui, Peng, Liu, Hongbo, Islam, Faisal, Li, Lan, Farooq, Muhammad A., Ruan, Songlin, Zhou, Weijun“…Peroxisomes are single membrane-bound organelles, whose basic enzymatic constituents are catalase and H(2)O(2)-producing flavin oxidases. Previous reports showed that peroxisome is involved in numerous processes including primary and secondary metabolism, plant development and abiotic stress responses. …”
Publicado 2016
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18118por Zakataeva, Natalia P., Romanenkov, Dmitriy V., Yusupova, Yuliya R., Skripnikova, Victoria S., Asahara, Takayuki, Gronskiy, Sergey V.“…5'-nucleotidases (EC 3.1.3.5) catalyze the hydrolytic dephosphorylation of 5'-ribonucleotides and 5'-deoxyribonucleotides as well as complex nucleotides, such as uridine 5'-diphosphoglucose (UDP-glucose), nicotinamide adenine dinucleotide and flavin adenine dinucleotide, to their corresponding nucleosides plus phosphate. …”
Publicado 2016
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18119“…Positive regulation of the cellular amino metabolic process (gene ontology (GO): 0033240, false discovery rate (FDR) = 1.00E + 00) was significantly enriched under the GO category for biological processes, while for molecular functions, flavin adenine dinucleotide binding (GO: 0050660, FDR = 3.66E-01) and androgen receptor binding (GO: 0050681, FDR = 6.35E-01) were significantly enriched. …”
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18120por Ye, Suhui, Molloy, Brian, Braña, Alfredo F., Zabala, Daniel, Olano, Carlos, Cortés, Jesús, Morís, Francisco, Salas, José A., Méndez, Carmen“…The arp cluster consists of fourteen genes, including genes coding for putative regulatory proteins (a SARP-like transcriptional activator and a TetR-like transcriptional repressor), genes coding for structural proteins (three PKSs, one aminotransferase, two dehydrogenases, two cyclases, one imine reductase, a type II thioesterase, and a flavin reductase), and one gene coding for a hypothetical protein. …”
Publicado 2017
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