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      • SCOPUSKCI등재

        Review : NADPH oxidase mediated oxidative stress in hepatic fibrogenesis

        ( David A. Brenner ),( Yong Han Paik ) 대한간학회 2011 Clinical and Molecular Hepatology(대한간학회지) Vol.17 No.4

        NADPH oxidase (NOX) is a multicomponent enzyme complex that generates reactive oxygen species (ROS) in response to a wide range of stimuli. ROS is involved as key secondary messengers in numerous signaling pathways, and NADPH oxidases complex has been increasingly recognized as key elements of intracellular signaling of hepatic fibrogenesis. In the liver, NADPH oxidase is functionally expressed both in the phagocytic form and in the non-phagocytic form. The non-phagocytic NADPH oxidase complex is structurally and functionally similar to the phagocytic NADPH, resulting in reduction of molecular oxygen to generate superoxide. There are six homologous NOX proteins in the non-phagocytic forms of NADPH oxidase. An emerging concept is that both phagocytic and nonphagocytic NADPH oxidase components in hepatic stellate cells (HSCs) mediate hepatic fibrosis, suggesting its potential role as a pharmacological target for anti-fibrotic therapy. The molecular components and signaling pathways of various NADPH oxidase homologues that are critical for the fibrotic activity in HSCs need to be more clearly identified. (Korean J Hepatol 2011;17:251-257)

      • KCI등재

        Effect of NADPH Oxidase Inhibition on Heme Oxygenase-1 Expression in Human Hepatoma Cell Line HepG2

        이상권(Sang Kwon Lee),김강미(Kang Mi Kim),박광훈(Kwang Hoon Park),박영철(Young Chul Park) 한국생명과학회 2011 생명과학회지 Vol.21 No.11

        CoPP는 다양한 세포에서 HO-1의 유전자 발현과 활성을 증가시키는 강력한 유도제로 알려져 있다. HO-1는 세포 및 조직의 손상을 보호한다는 연구가 활발히 진행되고 있으나, 그 작용 기전에 대해서는 아직 잘 모르고 있다. 본 논문에서는 porphyrin 계열의 CoPP의 자극에 의해 유도되는 HO-1 유전자 발현에서 NADPH oxidase의 활성이 미치는 영향을 인간 간암세포주 HepG2에서 조사하였다. 배양 중인 HepG2 세포에서 CoPP는 HO-1의 발현을 농도의존적으로 증가시키는 것을 확인하였다. NADPH oxidase 저해제로 잘 알려져 있는 DPI를 전처리한 후 CoPP로 자극한 세포에서는 HO-1의 발현이 강력하게 억제되는 것으로 나타났다. DPI의 이런 억제 효과가 HO-1의 전사 조절인자 Nrf2의 활성에도 영향을 줄 수 있기 때문에 DPI를 전처리 한 후 CoPP 자극에 의한 Nrf2의 핵으로의 이동을 분석하였다. 그 결과, DPI는 CoPP에 의해 유도되는 Nrf2의 핵으로의 이동과 세포 내 존재하는 양을 감소시키는 것을 확인하였다. 다른 HO-1 발현 유도제로 알려져 있는 hemin에 의한 자극의 경우에도 DPI는 HepG2 세포의 HO-1의 발현을 억제하는 효과를 나타내었다. 그리고, p47<SUP>phox</SUP>에 대한 siRNA를 사용하여 효과적으로 p47<SUP>phox</SUP> 유전자 발현을 knockdown 시켜서 NADPH oxidase의 활성을 억제시키는 방법을 사용하였다. 그 결과, p47<SUP>phox</SUP> silencing한 세포에 CoPP를 처리한 경우는 control siRNA를 처리한 세포와 비교할 때 HO-1 발현이 현저히 감소됨을 관찰할 수 있었다. 마지막으로, 세포 내 ROS 생성을 억제하는 GSHmee가 처리된 세포에서는 CoPP나 hemin이 Nrf2의 활성을 증가시키지 못하였고, 그 결과 HO-1의 발현을 유도하지 못하는 것을 알 수 있었는데, 이는 ROS가 CoPP나 hemin에 의한 HO-1 유전자 발현 과정에 중요한 역할을 한다는 것을 의미한다. 이를 종합해 볼 때, 인간 간암세포주 HepG2에서 CoPP나 hemin의 자극에 의한 HO-1 유전자의 발현에는 NADPH oxidase의 활성이 요구된다는 것을 알 수 있고, 그 활성은 세포 내 ROS를 생성시키는 것으로 역할을 한다고 여겨진다. Heme oxygenase-1 (HO-1) is a stress-responsive protein that is known to regulate cellular functions such as cell proliferation, inflammation, and apoptosis. In this study, we investigated the role of NADPH oxidase on the expression of HO-1 in human liver hepatoma cell line HepG2. Diphenyleneiodonium (DPI), an NADPH oxidase inhibitor, markedly inhibited HO-1 expression and the nuclear translocation of transcription factor Nrf2 in cobalt protoporphyrin (CoPP) or hemin-treated HepG2 cells. Similarly, the knockdown of p47<SUP>phox</SUP>, a cytosolic factor for NADPH oxidase activity, by siRNA inhibited the CoPP-induced expression of HO-1. In addition, GSHmee, an intracellular anti-oxidant, blocked the expression of HO-1 in CoPP-treated cells. Based on these results, we conclude that the blockage of NADPH oxidase with DPI or p47<SUP>phox</SUP> siRNA inhibits CoPP-induced HO-1 expression in HepG2 cells, and also suggest that the expression of HO-1 in CoPP-induced HepG2 cells is associated with increase of intracellular ROS by NADPH oxidase activity.

      • KCI등재

        Effect of Apocynin on Acute Lung Injury in Rats Given Interleukin-1α Intratracheally

        이영만 대한결핵및호흡기학회 2011 Tuberculosis and Respiratory Diseases Vol.70 No.6

        Background: Based on the assertion that apocynin diminishes acute lung injury (ALI) by inhibition of NADPH oxidase, the effect of apocynin was tested in interleukin-1α (IL-1)-induced ALI in rats. Methods: IL-1 was insufflated into the trachea of Sprague-Dawley rats to induce ALI, and apocynin (8 mg/kg) was given intravenously for inhibition of NADPH oxidase. In addition, we determined whether apocynin inhibited generation of superoxide anions from isolated human neutrophils. Five hours after IL-1 instillation, lung injury parameters, expression of cytosolic phospholipase A2 (cPLA2) by cells from bronchoalveolar lavage (BAL), an index of oxidative stress in lung tissues (γ-glutamyltranspeptidase, activity), and ultrastructure of alveolar type II (AT II) cells were evaluated. Results: Apocynin decreased the generation of free radicals from phorbol myristate (PMA)-activated neutrophils in vitro, but did not ameliorate ALI. IL-1 induced enhancement of the expression of cPLA2 on neutrophils was not altered by apocynin. Conclusion: Apocynin induced suppression of the generation of superoxide anions from neutrophils by inhibition of NADPH oxidase does not attenuate IL-1-induced ALI in rats. Background: Based on the assertion that apocynin diminishes acute lung injury (ALI) by inhibition of NADPH oxidase, the effect of apocynin was tested in interleukin-1α (IL-1)-induced ALI in rats. Methods: IL-1 was insufflated into the trachea of Sprague-Dawley rats to induce ALI, and apocynin (8 mg/kg) was given intravenously for inhibition of NADPH oxidase. In addition, we determined whether apocynin inhibited generation of superoxide anions from isolated human neutrophils. Five hours after IL-1 instillation, lung injury parameters, expression of cytosolic phospholipase A2 (cPLA2) by cells from bronchoalveolar lavage (BAL), an index of oxidative stress in lung tissues (γ-glutamyltranspeptidase, activity), and ultrastructure of alveolar type II (AT II) cells were evaluated. Results: Apocynin decreased the generation of free radicals from phorbol myristate (PMA)-activated neutrophils in vitro, but did not ameliorate ALI. IL-1 induced enhancement of the expression of cPLA2 on neutrophils was not altered by apocynin. Conclusion: Apocynin induced suppression of the generation of superoxide anions from neutrophils by inhibition of NADPH oxidase does not attenuate IL-1-induced ALI in rats.

      • KCI등재

        Cilostazol Attenuates 4-hydroxynonenal-enhanced CD36 Expression on Murine Macrophages via Inhibition of NADPH Oxidase-derived Reactive Oxygen Species Production

        윤미란,박혜미,서교원,김채은,윤정욱,김치대 대한약리학회 2009 The Korean Journal of Physiology & Pharmacology Vol.13 No.2

        Although anti-atherogenic effects of cilostazol have been suggested, its effects on the expression of SR in macrophages are unclear. This study investigated the role of cilostazol on CD36 expression of murine macrophages enhanced by HNE, a byproduct of lipid peroxidation. The stimulation of macrophages with HNE led to an increased expression of CD36, which was significantly attenuated by NAC, an antioxidant. Moreover, the increased production of ROS by HNE was completely abolished by NADPH oxidase inhibitors, DPI and apocynin, as well as by the 5-LO inhibitor, MK886, but not by inhibitors for other oxidases. This suggested that NADPH-oxidase and 5-LO were major sources of ROS induced by HNE. In addition, HNE-enhanced expression of CD36 was reduced by these inhibitors, which indicated a role for NADPH oxidase and 5-LO on CD36 expression. In our present study, cilostazol was a significant inhibitor of ROS production, as well as CD36 expression induced by HNE. An increase in NADPH oxidase activity by HNE was significantly attenuated by cilostazol, however cilostazol had no effect on HNE-enhanced 5-LO activity. Together, these results suggest that cilostazol attenuates HNE-enhanced CD36 expression on murine macrophages thorough inhibition of NADPH oxidase-derived ROS generation.

      • KCI등재

        Diphenyleneiodonium Inhibits Apoptotic Cell Death of Gastric Epithelial Cells Infected with Helicobacter pylori in a Korean Isolate

        조순옥,김혜영,임주원 연세대학교의과대학 2015 Yonsei medical journal Vol.56 No.4

        NADPH oxidase produces a large amount of reactive oxygen species (ROS) in Helicobacterpylori (H. pylori)-induced gastric epithelial cells. Even though ROS mediateapoptotic cell death, direct involvement of NADPH oxidase on H. pylori-inducedapoptosis remains unclear. Besides, H. pylori isolates show a high degree of genetic variability. The predominant genotype of H. pylori in Korea has been reportedas cagA+, vacA s1b, m2, iceA genotype. Present study aims to investigate whether NADPH oxidase-generated ROS mediate apoptosis in human gastric epithelialAGS cells infected with H. pylori in a Korean isolate. AGS cells were pretreatedwith or without an NADPH oxidase inhibitor diphenyleneiodonium (DPI) and cultured in the presence of H. pylori at a bacterium/cell ratio of 300:1. Cell viability,hydrogen peroxide level, DNA fragmentation, and protein levels of p53, Bcl-2, and Bax were determined. Results showed that H. pylori inhibited cell viability with the density of H. pylori added to the cells. Inhibition of NADPH oxidase by DPI suppressed H. pylori-induced cell death, increased hydrogen peroxide, DNA fragmentation, and the ratio of Bax/Bcl-2, and p53 induction in AGS cells dose-dependently. The results suggest that targeting NADPH oxidase may prevent the developmentof gastric inflammation associated with H. pylori infection by suppressingabnormal apoptotic cell death of gastric epithelial cells.

      • Change in the Conformation of $p47^{phox}$ by Sodium Dodecyl Sulfate, an Activator of the Leukocyte NADPH Oxidase

        Park, Jeen-Woo,Park, Hee-Sae Korean Society for Biochemistry and Molecular Biol 1998 Journal of biochemistry and molecular biology Vol.31 No.3

        The leukocyte NADPH oxidase of neutrophils is a membrane-bound enzyme that catalyzes the production of $O_2^-$ from oxygen using NADPH as an electron donor. Dormant in resting neutrophils, the enzyme acquires catalytic activity when the cells are exposed to appropriate stimuli. During activation, the cytosolic oxidase components $p47^{phox}$ and $p67^{phox}$ migrate to the plasma membrane, where they associate with cytochrome $b_{558}$, a membrane-bound flavohemoprotein, to assemble the active oxidase. The oxidase can be activated in a cell-free system; the activating agent usually employed is an anionic amphiphile such as sodium dodecyl sulfate (SDS). Because $p47^{phox}$ can translocate by itself during activation, the conformational change in $p47^{phox}$ may be responsible for the activation of NADPH oxidase. We show here that the treatment of $p47^{phox}$ with SDS leads to an increase in the reactivity of the sutbydryl group of cysteines toward N-ethylmaleimide, indicating that the conformational change occurs when $p47^{phox}$ is exposed to SDS. We propose that this change in conformation results in the appearance of a binding site through which $p47^{phox}$ interacts with cytochrome $b_{558}$during the activation process.

      • KCI등재

        Change in the Conformation of P47phox by Sodium Dodecyl Sulfate, an Activator of the Leukocyte NADPH Oxidase

        Park, Jeen-Woo,Park, Hee-Sae The Korea Science and Technology Center 1998 BMB Reports Vol.31 No.3

        The leukocyte NADPH oxidase of neutrophilis is a membrane-bound enzyme that catalyzes the production of O₂-from oxygen using NADPH as an electron donor. Dormant in resting neutrophils, the enzyme acquires catalytic activity when the cells are exposed to appropriate stimuli. During activation, the cytosolic oxidase components p47phox and p67phox migrate to the plasma membrane-bound flavohemoprotein, to assemble the active oxidase. The oxidase can be activated in a cell-free system; the activating agent usually employed is an anionic amphiphile such as sodium dodecyl sulfate (SDS). Because p47phox can translocate by itself during activation, the conformational change in p47phox may be responsible for teh activation of NADPH oxidase. We show here that the treatment of p47phox with SDS leads to an increase in the reactivity of the sufhydryl group of cysteines toward N-ethylmaleimide, indicating that the conformational change occurs when p47phox is exposed to SDS. We propose that this change in conformation results in the appearance of a binding site through which p47phox interacts with cytochrome b558 during the activation process.

      • SCIESCOPUSKCI등재

        Cilostazol Attenuates 4-hydroxynonenal-enhanced CD36 Expression on Murine Macrophages via Inhibition of NADPH Oxidase-derived Reactive Oxygen Species Production

        Yun, Mi-Ran,Park, Hye-Mi,Seo, Kyo-Won,Kim, Chae-Eun,Yoon, Jung-Wook,Kim, Chi-Dae The Korean Society of Pharmacology 2009 The Korean Journal of Physiology & Pharmacology Vol.13 No.2

        Although anti-atherogenic effects of cilostazol have been suggested, its effects on the expression of SR in macrophages are unclear. This study investigated the role of cilostazol on CD36 expression of murine macrophages enhanced by HNE, a byproduct of lipid peroxidation. The stimulation of macrophages with HNE led to an increased expression of CD36, which was significantly attenuated by NAC, an antioxidant. Moreover, the increased production of ROS by HNE was completely abolished by NADPH oxidase inhibitors, DPI and apocynin, as well as by the 5-LO inhibitor, MK886, but not by inhibitors for other oxidases. This suggested that NADPH-oxidase and 5-LO were major sources of ROS induced by HNE. In addition, HNE-enhanced expression of CD36 was reduced by these inhibitors, which indicated a role for NADPH oxidase and 5-LO on CD36 expression. In our present study, cilostazol was a significant inhibitor of ROS production, as well as CD36 expression induced by HNE. An increase in NADPH oxidase activity by HNE was significantly attenuated by cilostazol, however cilostazol had no effect on HNE-enhanced 5-LO activity. Together, these results suggest that cilostazol attenuates HNE-enhanced CD36 expression on murine macrophages thorough inhibition of NADPH oxidase-derived ROS generation.

      • KCI등재

        p47phox, the phagocyte NADPH oxidase/NOX2 organizer: structure, phosphorylation and implication in diseases

        Jamel El-Benna,Pham My-Chan Dang,Marie-Anne Gougerot-Pocidalo,Jean-Claude Marie,Françoise Braut-Boucher 생화학분자생물학회 2009 Experimental and molecular medicine Vol.41 No.4

        Phagocytes such as neutrophils play a vital role in host defense against microbial pathogens. The anti-microbial function of neutrophils is based on the production of superoxide anion (O2 -), which generates other microbicidal reactive oxygen species (ROS) and release of antimicrobial peptides and proteins. The enzyme responsible for O2 - production is called the NADPH oxidase or respiratory burst oxidase. This multicomponent enzyme system is composed of two transmembrane proteins (p22phox and gp91phox, also called NOX2, which together form the cytochrome b558) and four cytosolic proteins (p47phox, p67phox, p40phox and a GTPase Rac1 or Rac2), which assemble at membrane sites upon cell activation. NADPH oxidase activation in phagocytes can be induced by a large number of soluble and particulate agents. This process is dependent on the phosphorylation of the cytosolic protein p47phox. p47phox is a 390 amino acids protein with several functional domains: one phox homology (PX) domain, two src homology 3 (SH3) domains, an auto-inhibitory region (AIR), a proline rich domain (PRR) and has several phosphorylated sites located between Ser303 and Ser379. In this review, we will describe the structure of p47phox, its phosphorylation and discuss how these events regulate NADPH oxidase activation. Phagocytes such as neutrophils play a vital role in host defense against microbial pathogens. The anti-microbial function of neutrophils is based on the production of superoxide anion (O2 -), which generates other microbicidal reactive oxygen species (ROS) and release of antimicrobial peptides and proteins. The enzyme responsible for O2 - production is called the NADPH oxidase or respiratory burst oxidase. This multicomponent enzyme system is composed of two transmembrane proteins (p22phox and gp91phox, also called NOX2, which together form the cytochrome b558) and four cytosolic proteins (p47phox, p67phox, p40phox and a GTPase Rac1 or Rac2), which assemble at membrane sites upon cell activation. NADPH oxidase activation in phagocytes can be induced by a large number of soluble and particulate agents. This process is dependent on the phosphorylation of the cytosolic protein p47phox. p47phox is a 390 amino acids protein with several functional domains: one phox homology (PX) domain, two src homology 3 (SH3) domains, an auto-inhibitory region (AIR), a proline rich domain (PRR) and has several phosphorylated sites located between Ser303 and Ser379. In this review, we will describe the structure of p47phox, its phosphorylation and discuss how these events regulate NADPH oxidase activation.

      • SCIESCOPUSKCI등재

        Cilostazol Attenuates 4-hydroxynonenal-enhanced CD36 Expression on Murine Macrophages via Inhibition of NADPH Oxidase-derived Reactive Oxygen Species Production

        Mi Ran Yun,Hye Mi Park,Kyo Won Seo,Chae Eun Kim,Jung Wook Yoon,Chi Dae Kim 대한생리학회-대한약리학회 2009 The Korean Journal of Physiology & Pharmacology Vol.13 No.2

        Although anti-atherogenic effects of cilostazol have been suggested, its effects on the expression of SR in macrophages are unclear. This study investigated the role of cilostazol on CD36 expression of murine macrophages enhanced by HNE, a byproduct of lipid peroxidation. The stimulation of macrophages with HNE led to an increased expression of CD36, which was significantly attenuated by NAC, an antioxidant. Moreover, the increased production of ROS by HNE was completely abolished by NADPH oxidase inhibitors, DPI and apocynin, as well as by the 5-LO inhibitor, MK886, but not by inhibitors for other oxidases. This suggested that NADPH-oxidase and 5-LO were major sources of ROS induced by HNE. In addition, HNE-enhanced expression of CD36 was reduced by these inhibitors, which indicated a role for NADPH oxidase and 5-LO on CD36 expression. In our present study, cilostazol was a significant inhibitor of ROS production, as well as CD36 expression induced by HNE. An increase in NADPH oxidase activity by HNE was significantly attenuated by cilostazol, however cilostazol had no effect on HNE-enhanced 5-LO activity. Together, these results suggest that cilostazol attenuates HNE-enhanced CD36 expression on murine macrophages thorough inhibition of NADPH oxidase-derived ROS generation.

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