Showing 1 - 20 results of 27 for search '"monooxygenase"', query time: 0.05s Refine Results
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    Transcriptome analysis and cytochrome P450 monooxygenase reveal the molecular mechanism of Bisphenol A degradation by Pseudomonas putida strain YC-AE1 by Adel, Eltoukhy, Yang, Jia, Imane, Lamraoui, M. A., Abo‑Kadoum, Omar, Mohammad Atta, Ruth, Nahurira, Junhuan, Wang, Yanchun, Yan

    Published 2023
    “…Conclusion: In this study we propose the molecular basis and the potential role of YC‑AE1cytochrome P450 monooxygenase in BPA catabolism…”
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    Cytochrome P450 monooxygenase-mediated eicosanoid pathway: A potential mechanistic linkage between dietary fatty acid consumption and colon cancer risk by Weicang Wang, Jianan Zhang, Guodong Zhang

    Published 2019-12-01
    “…In this review, we will discuss recent studies about the roles of cytochrome P450 monooxygenases in fatty acid metabolism and its roles in colonic inflammation and colon cancer, and how this information could help us to clarify the health impacts of dietary fatty acids. …”
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    Molecular Detection and Phylogenetic Analysis of the alkB Gene in Klebsiella oxytoca Strains Isolated from the Gut of Tenebrio molitor by Tsitsi Lynn Mupamhadzi, Oleen Machona, Farisai Chidzwondo, Rumbidzai Mangoyi

    Published 2024-01-01
    “…The alkB gene encodes for alkane-1-monooxygenase, an enzyme involved in the oxidation of inactivated alkanes. …”
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    Anti-cancer effect of midazolam via downregulating YWHAH in papillary thyroid cancer cells by Yang Li, Ai-Ping Tan, Yu-Shan Zhong

    Published 2025-01-01
    “…CB-Dock2 server predicted midazolam-tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein eta (YWHAH) interaction and western blot was also used to detect YWHAH expression. …”
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    Association of FMO3 Variants with Blood Pressure in the Atherosclerosis Risk in Communities Study by Tyler S. Bryant, Priya Duggal, Bing Yu, Alanna C. Morrison, Tariq Shafi, Georg Ehret, Nora Franceschini, Eric Boerwinkle, Josef Coresh, Adrienne Tin

    Published 2019-01-01
    “…Flavin containing monooxygenase 3 [FMO3] encodes dimethylaniline monooxygenase [N-oxide-forming] 3, which breaks down nitrogen-containing compounds, and has been implicated in blood pressure regulation. …”
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    The palmitoyl-CoA ligase Fum16 is part of a Fusarium verticillioides fumonisin subcluster involved in self-protection by Fabio Gherlone, Katarina Jojić, Ying Huang, Sandra Hoefgen, Vito Valiante, Slavica Janevska

    Published 2025-02-01
    “…Our data indicate a potential role for the P450 monooxygenase Fum15 in the modification and detoxification of FB1 since the deletion and overexpression of the respective gene affected extracellular FB1 levels in both hosts. …”
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    Biotechnology in direct air capture, enhanced weathering, and methane removal: emerging opportunities and gaps by Paul L. Reginato

    Published 2025-02-01
    “…The GHGR technologies of focus are (1) the potential for the enzyme carbonic anhydrase to catalyze CO2 exchange in direct air capture; (2) the potential utility of microbes for accelerating soil-based or reactor-based enhanced rock weathering; and (3) the potential for methanotrophic bacteria or methane monooxygenase enzymes to oxidize methane for atmospheric methane removal via enhanced methanotrophy or bioreactors. …”
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    Epoxidation of Ethylene by Whole Cell Suspension of Methylosinus trichosporium IMV 3011 by Jia-Ying Xin, Ning Xu, Sheng-Fu Ji, Yan Wang, Chun-Gu Xia

    Published 2017-01-01
    “…Methane monooxygenase (MMO) has been found in methanotrophic bacteria, which catalyzes the epoxidation of gaseous alkenes to their corresponding epoxides. …”
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    Molecular Characterization of Ferulate 5-Hydroxylase Gene from Kenaf (Hibiscus cannabinus L.) by Jonggeun Kim, Bosung Choi, Young-Hwan Park, Byoung-Kwan Cho, Hyoun-Sub Lim, Savithiry Natarajan, Sang-Un Park, Hanhong Bae

    Published 2013-01-01
    “…F5H, a cytochrome P450-dependent monooxygenase (CYP84), is a key enzyme for syringyl lignin biosynthesis. …”
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    High-efficiency biodegradation of crude oil and p-hydroxybenzoic acid by Acinetobacter haemolyticus JS-1: Integrated characterization and genomic analysis by Weiyi Tao, Jijie Lu, Junzhang Lin, Mingshan Ding, Weidong Wang, Shuang Li

    Published 2025-01-01
    “…RT-qPCR analysis has identified five types of alkane hydroxylase genes in strain JS-1, including two AlkB-types, one AlmA-type, one LadA-type, and a cytochrome P450 monooxygenase. These genes are likely contributed to its high degradation efficiency. …”
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    Metataxonomic Characterization of Enriched Consortia Derived from Oil Spill-Contaminated Sites in Guimaras, Philippines, Reveals Major Role of Klebsiella sp. in Hydrocarbon Degrada... by Kiara Nicole D. Rodriguez, Russel T. Santos, Michael Joseph M. Nagpala, Rina B. Opulencia

    Published 2023-01-01
    “…Fatty acid metabolism, which includes alkB (alkane-1-monooxygenase) and genes for beta oxidation, was inferred to be the most abundant amongst all hydrocarbon degradation pathways. …”
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    Integrated analysis of the transcriptome and hormone metabolome elucidates the regulatory mechanisms governing walnut bud germination by Kai Zhao, Xiaofan Wu, Bo Liang, Shuang Gao, Jieyan Yang, Yan Bai, Yaru Wang, Xin Tian, Fang Wang, Xiuqing Yang

    Published 2025-01-01
    “…Our results emphasized four key biological processes—cellular response to ethylene stimulus, phenylpropanoid metabolic process, ethylene-activated signaling pathway, and monooxygenase activity—along with several relevant pathways, including plant hormone signal transduction, flavone and flavonol biosynthesis, biosynthesis of secondary metabolites, and MAPK signaling pathway, all crucial for walnut bud germination. …”
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    Unraveling nitrogen metabolism, cold and stress adaptation in polar Bosea sp. PAMC26642 through comparative genome analysis by Anamika Khanal, Anamika Khanal, So-Ra Han, So-Ra Han, So-Ra Han, Jun Hyuck Lee, Tae-Jin Oh, Tae-Jin Oh, Tae-Jin Oh, Tae-Jin Oh

    Published 2025-01-01
    “…In addition, carbonic anhydrase, cyanate lyase, and nitronate monooxygenase were also identified. Furthermore, the strain demonstrated nitrate reduction at two different temperatures (15°C and 25°C). …”
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    3-Hydroxyanthranic acid inhibits growth of oral squamous carcinoma cells through growth arrest and DNA damage inducible alpha by Guifang Gan, Xinxia Zhou, Qiaoping Zheng, Xianfu Gao, Xu Chen, Han Zhang, Jinghao Liu, Zhaopeng Shi, Fuxiang Chen

    Published 2025-02-01
    “…Higher expression of kynurenine 3-monooxygenase (KMO) and kynureninase (KYNU), which can increase the content of 3-HAA, was associated with poorer prognosis of OSCC patients. …”
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    Identification and functional characterization of AsWRKY9, a WRKY transcription factor modulating alliin biosynthesis in garlic (Allium sativum L.) by Jiaying Wu, Min Li, Wanni Wang, Yiren Su, Jie Li, Jiaxin Gong, Xianfeng Meng, Chenyuan Lin, Qiantong Zhang, Yanyan Yang, Chunyan Xu, Limei Zeng, Jihong Jiang, Xuqin Yang

    Published 2025-01-01
    “…In transgenic callus overexpressing AsWRKY9, the transcription level of the key enzyme flavin-containing monooxygenase gene (AsFMO1) significantly higher, as did its enzymatic activity compared with the control. …”
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    Combined induction by Cu(II) and veratrole enhances the degradation of high molecular weight polyaromatic hydrocarbons by Fusarium dlaminii ZH-H2 by Jiayuan Gao, Mingyue Qi, Xiaomin Wang, Xuan Feng, Jiahui Li, Guangwei Zhang, Shengdong Feng, Zhixin Yang, Guohui Ning

    Published 2025-02-01
    “…These included cytochrome P450 monooxygenase (EC:1.–.-.-) and downstream PAH converting enzymes such as aldehyde dehydrogenase (EC:1.2.1.3), NADP-dependent ethanol dehydrogenase (EC:1.1.1.2), ethanol dehydrogenase (EC:1.1.1.156], tryptophan 2,3 dioxygenase (EC:1.13.11.52), gentisate 1,2-dioxygenase (EC:1.13.11.5), salicylate hydroxylase (EC:.14.13.1) β-hexokinase (EC:3.2.1.52), and glutathione transferase (EC: 2.5.1.18). …”
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    Diversity and distribution of nitrifying bacteria play an important role in the nitrogen cycle in mangrove sediments by A. Mubaraq, M. Sembiring, E. Widiastuti, E. Fachrial, B. Utomo, M. Turjaman, F. Sidik, Y.I. Ulumuddin, V.B. Arifanti, E.S. Siregar, T. Kajita, S. Proches, M. Basyuni

    Published 2024-10-01
    “…In carrying out changes in nitrogen compounds, nitrifying bacteria use functional genes from different steps of the nitrification process, such as nitrogenase, ammonia monooxygenase subunit A, nitrite oxidoreductase alpha subunit, nitrate reductase alpha chain, nitrite reductase, nitric oxide reductase, nitrous oxide reductase, hydrazine synthase, hydrazine oxidoreductase and hydroxylamine oxidoreductase genes. …”
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