Literature DB >> 16987001

NADPH oxidases: new regulators of old functions.

Kathy K Griendling.   

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Year:  2006        PMID: 16987001      PMCID: PMC1934428          DOI: 10.1089/ars.2006.8.1443

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


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  30 in total

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3.  Redox-dependent expression of cyclin D1 and cell proliferation by Nox1 in mouse lung epithelial cells.

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5.  Cell transformation by the superoxide-generating oxidase Mox1.

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6.  Transforming growth factor-beta1 induces Nox4 NAD(P)H oxidase and reactive oxygen species-dependent proliferation in human pulmonary artery smooth muscle cells.

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7.  Pulsatile versus oscillatory shear stress regulates NADPH oxidase subunit expression: implication for native LDL oxidation.

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8.  Bone morphogenic protein 4 produced in endothelial cells by oscillatory shear stress induces monocyte adhesion by stimulating reactive oxygen species production from a nox1-based NADPH oxidase.

Authors:  George P Sorescu; Hannah Song; Sarah L Tressel; Jinah Hwang; Sergey Dikalov; Debra A Smith; Nolan L Boyd; Manu O Platt; Bernard Lassègue; Kathy K Griendling; Hanjoong Jo
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9.  Inhibition of NADPH oxidase 4 activates apoptosis via the AKT/apoptosis signal-regulating kinase 1 pathway in pancreatic cancer PANC-1 cells.

Authors:  T Mochizuki; S Furuta; J Mitsushita; W H Shang; M Ito; Y Yokoo; M Yamaura; S Ishizone; J Nakayama; A Konagai; K Hirose; K Kiyosawa; T Kamata
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10.  The NAD(P)H oxidase homolog Nox4 modulates insulin-stimulated generation of H2O2 and plays an integral role in insulin signal transduction.

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4.  Differential regulation of TRPV1 channels by H2O2: implications for diabetic microvascular dysfunction.

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Review 5.  Regulation of NADPH oxidase in vascular endothelium: the role of phospholipases, protein kinases, and cytoskeletal proteins.

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6.  NADPH oxidase expression and production of superoxide by human corneal stromal cells.

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8.  NAD(P)H oxidase mediates TGF-beta1-induced activation of kidney myofibroblasts.

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9.  The involvement of reactive oxygen species (ROS) in the cell cycle activation (G(0)-to-G(1) transition) of plant cells.

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Review 10.  Radical-free biology of oxidative stress.

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