1.
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2023/11
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Hypoxia stabilizes the H2 O2 -producing oxidase Nox4 in cardiomyocytes via suppressing autophagy-related lysosomal degradation.
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2.
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2023/06
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A basic charge cluster near the C-terminus of the cytoplasmic tail contributes to the molecular stability of human herpesvirus 8 E3 ubiquitin ligases
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3.
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2023/02/08
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Hungarian Biochemists
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4.
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2023/01/18
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Ca2+-binding-region-dependent cell surface localization of NADPH oxidase Nox5.
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5.
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2023/01/06
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Characterization of missense mutations in the NADPH oxidase partner p22phox in the A22° subtype of chronic granulomatous disease.
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6.
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2022/10/28
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Importance of accessibility to the extracellular juxtamembrane stalk region of membrane protein for substrate recognition by viral ubiquitin ligase K5
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7.
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2022/09/29
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Inhibition of pancreatic cancer-cell growth and metastasis in vivo by a pyrazole compound characterized as a cell-migration inhibitor by an in vitro chemotaxis assay
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8.
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2022/09/13
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Regulation of Derlin-1-mediated degradation of NADPH oxidase partner p22phox by thiol modification.
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9.
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2022/02
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Fine definition of the epitopes on the human gp91phox/NOX2 for the monoclonal antibodies CL-5 and 48
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10.
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2022/01/11
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The downregulation of NADPH oxidase Nox4 during hypoxia in hemangioendothelioma cells: a possible role of p22phox on Nox4 protein stability.
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11.
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2022/01/08
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Coculture in vitro with endothelial cells induces cytarabine resistance of acute myeloid leukemia cells in a VEGF-A/VEGFR-2 signaling–independent manner
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12.
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2021/03/26
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The efficient detection of membrane protein with immunoblotting: lessons from cold-temperature denaturation
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13.
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2020/09/28
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Constitutive activity of NADPH oxidase 1 (Nox1) that promotes its own activity suppresses the colon epithelial cell migration
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14.
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2020/08/15
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The rRNA synthesis inhibitor CX-5461 may induce autophagy that inhibits anticancer drug-induced cell damage to leukemia cells
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15.
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2020/07/02
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The NADPH oxidase NOX4 promotes the directed migration of endothelial cells by stabilizing vascular endothelial growth factor receptor 2 protein
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16.
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2018/06
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Differential cell surface recruitment of the superoxide-producing NADPH oxidases Nox1, Nox2 and Nox5: The role of the small GTPase Sar1.
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17.
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2016/12
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TRPC3-GEF-H1 axis mediates pressure overload-induced cardiac fibrosis.
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18.
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2016/11
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TRPC3 positively regulates reactive oxygen species driving maladaptive cardiac remodeling.
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19.
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2014/12
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DOCK2 and DOCK5 Act Additively in Neutrophils To Regulate Chemotaxis, Superoxide Production, and Extracellular Trap Formation.
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20.
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2014/09
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Arachidonic Acid Induces Direct Interaction of the p67phox-Rac Complex with the Phagocyte Oxidase Nox2, Leading to Superoxide Production.
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21.
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2014/06
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Visualization of phagosomal hydrogen peroxide production by a novel fluorescent probe that is localized via SNAP-tag labeling.
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22.
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2014/01
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N-linked glycosylation of the superoxide-producing NADPH oxidase Nox1.
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23.
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2012/11
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Assessment of the role for Rho family GTPases in NADPH oxidase activation.
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24.
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2012/05
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Atypical membrane-embedded phosphatidylinositol 3,4-bisphosphate (PI(3,4)P2)-binding site on p47phox phox homology (PX) domain revealed by NMR.
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25.
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2012/04
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Blockade of inflammatory responses by a small-molecule inhibitor of the Rac activator DOCK2.
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26.
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2011/10
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Selectively induced apoptosis in human neutrophils in the presence of oxidative phenoxazines, 2-amino-4,4a-dihydryo-4a-7H-phenoxazine-3-one and 2-aminophenoxazine-3-one, preceded by decrease of intracellular pH, depolarization of the mitochondria, and inhibition of superoxide.
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27.
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2010/10
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A conserved region between the TPR and activation domains of p67phox participates in activation of the phagocyte NADPH oxidase.
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28.
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2010/05
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Membrane phospholipid metabolism during phagocytosis in human neutrophils.
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29.
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2009/08
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The domain organization of p67phox, a protein required for activation of the superoxide-producing NADPH oxidase in phagocytes.
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30.
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2009/08
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The insert region of the Rac GTPases is dispensable for activation of superoxide-producing NADPH oxidases.
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31.
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2009/04
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A region N-terminal to the tandem SH3 domain of p47phox plays a crucial role in the activation of the phagocyte NADPH oxidase.
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32.
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2009/02
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Role for the first SH3 domain of p67phox in activation of superoxide-producing NADPH oxidases.
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33.
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2007/09
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p40phox as an alternative organizer to p47phox in Nox2 activation: A new mechanism involving an interaction with p22phox.
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34.
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2007/09
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Role of the small GTPase Rac in p22phox-dependent NADPH oxidases.
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35.
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2006/08
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Direct involvement of the small GTPase Rac in activation of the superoxide-producing NADPH oxidase Nox1.
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36.
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2005/12
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A new type of O(2)(-)-generating tool for oxidative stress studies by remodeling neutrophil NADPH oxidase.
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37.
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2005/12
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Molecular composition and regulation of the Nox family NAD(P)H oxidases.
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38.
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2005/06
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The NADPH oxidase Nox3 constitutively produces superoxide in a p22phox-dependent manner: its regulation by oxidase organizers and activators.
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39.
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2004/11
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Inactivation of neutrophil NADPH oxidase upon dilution and its prevention by cross-link and fusion of phox proteins.
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40.
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2004/07
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Activation of the flavoprotein domain of gp91phox upon interaction with N-terminal p67phox (1-210) and the Rac complex.
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41.
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2003/08
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A new role of Pro-73 of p47phox in the activation of neutrophil NADPH oxidase.
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42.
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2003/01
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Remarkable stabilization of neutrophil NADPH oxidase using RacQ61L and a p67phox-p47phox fusion protein.
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43.
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2001/11
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A fusion protein between rac and p67phox (1-210) reconstitutes NADPH oxidase with higher activity and stability than the individual components.
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44.
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2001/07
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Fused p47phox and p67phox truncations efficiently reconstitute NADPH oxidase with higher activity and stability than the individual components.
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