• Title/Summary/Keyword: NOS gene

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Regulation of retinal angiogenesis by endothelial nitric oxide synthase signaling pathway

  • Ha, Jung Min;Jin, Seo Yeon;Lee, Hye Sun;Shin, Hwa Kyoung;Lee, Dong Hyung;Song, Sang Heon;Kim, Chi Dae;Bae, Sun Sik
    • The Korean Journal of Physiology and Pharmacology
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    • v.20 no.5
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    • pp.533-538
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    • 2016
  • Angiogenesis plays an essential role in embryo development, tissue repair, inflammatory diseases, and tumor growth. In the present study, we showed that endothelial nitric oxide synthase (eNOS) regulates retinal angiogenesis. Mice that lack eNOS showed growth retardation, and retinal vessel development was significantly delayed. In addition, the number of tip cells and filopodia length were significantly reduced in mice lacking eNOS. Retinal endothelial cell proliferation was significantly blocked in mice lacking eNOS, and EMG-2-induced endothelial cell sprouting was significantly reduced in aortic vessels isolated from eNOS-deficient mice. Finally, pericyte recruitment to endothelial cells and vascular smooth muscle cell coverage to blood vessels were attenuated in mice lacking eNOS. Taken together, we suggest that the endothelial cell function and blood vessel maturation are regulated by eNOS during retinal angiogenesis.

Inhibition of p65 Nuclear Translocation by Baicalein

  • Seo, Min-Bum;Lee, Seog-Ki;Jeon, Young-Jin;Im, Jin-Su
    • Toxicological Research
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    • v.27 no.2
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    • pp.71-76
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    • 2011
  • We demonstrate that baicalein, a bioactive flavonoid originally isolated from Scutellaria baicalensis, inhibits LPS-induced expression of iNOS gene in RAW 264.7 cells. Treatment of peritoneal macrophages and RAW 264.7 cells with baicalein inhibited LPS-stimulated nitric oxide production in a dose-related manner. Immunohistochemical staining of iNOS and RT-PCR analysis showed that the decrease of NO was due to the inhibition of iNOS gene expression in RAW 264.7 cells. Immunostaining of p65, EMSA, and reporter gene assay showed that baicalein inhibited NF-${\kappa}$B nuclear translocation, DNA binding, and transcriptional activation, respectively. Collectively, these series of experiments indicate that baicalein inhibits iNOS gene expression by blocking NF-${\kappa}$B nuclear translocation. Due to the critical role that NO release plays in mediating inflammatory responses, the inhibitory effects of baicalein on iNOS suggest that baicalein may represent a useful anti-inflammatory agent.

Tandem Repeats (CCTTT)n in the Promoter of iNOS Gene in Korean Genome

  • Baek, Sun-Ah;Yoo, Min
    • Biomedical Science Letters
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    • v.15 no.2
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    • pp.167-170
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    • 2009
  • Nitric oxide is an important factor to regulate the biochemical reactions in the body such as expansion of blood vessel, neural conduction and antimicrobial activity. There are two forms of nitric oxide synthase and iNOS has attracted most attention because it is involved in the development of diabetes and cardiac disease condition. There are several regulatory sequences in the promoter region of iNOS gene. One of them is (CCTTT)n. It has been reported that the number of tandem repeat of (CCTTT)n varies from population to population. So, we analyzed (CCTTT)n polymorphism in Korean genome for the purpose of comparison. According to our present study Koreans are different from other Asians reported previously because $(CCTTT)_{10}$ is the highest incidence as opposed to $(CCTTT)_{12}$ for other countries. This study should facilitate the understanding of the expression of iNOS gene in different population.

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Studies on the NO Production and Expression Induction Effect of NOS Gene by Salviae Radix (단삼에 의한 NO 생성 및 NOS 유전자의 발현 유도 효과에 관한 연구)

  • 조현주;원진희;문구;문석재;유기원;유봉하
    • The Journal of Korean Medicine
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    • v.21 no.3
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    • pp.20-30
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    • 2000
  • Objective : This experiment was performed in order to study the effect of an aqueous extract of Salviae radix root(SRRAE) on NO production and NOS gene induction from macrophages Methods : To investigate dose-dependent effects of SRRAE for NO release on the $rIFN-{\gamma}-treated$ macrophages, the cells were incubated for 6 hrs in a medium containing $rIFN-{\gamma}$ (5 U/ml), stimulated with SRRAE and incubated in a CO2 incubator. The cells were treated with 5 U/ml $rIFN-{\gamma}$ plus 100 g/ml of SRRAE, Then, the cells were incubated with various concentrations of NGMMA at $37^{\circ}C$ for 48 hrs, Results : SRRAE had no effect on NO production by itself, whereas recombinant $interferon-{\gamma}(rIFN-{\gamma})$ alone showed modest activity, When SRRAE was used in combination with $rIFN-{\gamma}$, there was a marked cooperative induction of NO production in a dose-dependent manner. The optimal effect of SRRAE on NO production was shown at 6hrs after treatment with $rIFN-{\gamma}$. The SRRAE-induced production of NO was inhibited by NG-monomethyl- L-arginine(NGMMA) and arginase. $rIFN-{\gamma}$ in combination with SRRAE showed a marked increase of the expression of the inducible NOS(iNOS) gene. In addition, the effect of SRRAE was mainly dependent on the SRRAE-induced tumor necrosis $factor-{\alpha}(TNF-{\alpha})$ secretion. Conclusions : SRRAE induces NO production from macrophages as a result of SRRAE-induced $TNF-{\alpha}$ secretion. SRRAE may provide a second signal for synergistic induction of NO production in macrophages already induced to express iNOS gene by $rIFN-{\gamma}$.

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In Vivo Excision and Amplification of Large Human Genomic Segments Using Cre/loxP-and EBNA-1/oriP-mediated Machinery

  • Yoon, Young-Geol;Choi, Ja-Young;Kim, Jung-Min;Lee, Jun-Hyoung;Kim, Sun-Chang
    • BMB Reports
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    • v.34 no.4
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    • pp.322-328
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    • 2001
  • Excision and amplification of pre-determined, large genomic segments (taken directly from the genome of a natural host, which provides an alternative to conventional cloning in foreign vectors and hosts) was explored in human cells. In this approach, we devised a procedure for excising a large segment of human genomic DNA, the iNOS gene, by using the Cre/loxP system of bacteriophage P1 and amplifying the excised circles with the EBNA-1/oriP system of the Epstein-Barr virus. Two loxP sequences, each of which serves as a recognition site for recombinase Cre, were integrated unidirectionally into the 5'-UTR and 3'-UTR regions of the iNOS gene, together with an oriP sequence for conditional replication. The traps-acting genes cre and EBNA-1, which were under the control of a tetracycline responsive $P_{hcmv^*-1}$ promoter, were also inserted into the 5'-UTR and 3'-UTR regions of the iNOS gene, respectively, by homologous recombination. The strain carrying the inserted elements was stably maintained until the excision and amplification functions were triggered by the induction of cre and EBNA-1. Upon induction by doxycycline, Cre excised the iNOS gene that was flanked by two ZoxP sites and circularized it. The circularized iNOS gene was then amplified by the EBNA-1/oriP-system. With this procedure, approximately a 45.8-kb iNOS genomic fragment of human chromosome 17 was excised and successfully amplified in human cells. Our procedure can be used effectively for the sequencing of unclonable genes, the functional analysis of unknown genes, and gene therapy.

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Polymorphic Lengths of Dinucleotide $(GT)^n$ Repeats in Upstream of Human nNOS Exon 1f Gene Play a Role in Modulating the nNOS Transcription: Clinical Implications

  • Shin, Mi-Kyung;Kim, Kyung-Nam;Kim, Chul-Eung;Lee, Sung-Keun;Kang, Ju-Hee;Park, Chang-Shin
    • Molecular & Cellular Toxicology
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    • v.4 no.1
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    • pp.11-15
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    • 2008
  • The expression of neuronal nitric oxide synthase (nNOS) is regulated by various spliced first exons (exon 1a-1i), sharing differentially common exon 2 in diverse human tissues. The highly complex structure and regulation of human nNOS gene gave limitations of information for the precise mechanism of nNOS regulation. In the present study, we report that the repeats of polymorphic dinucleotides $(GT)^nA(TG)^n$ repeats located in just upstream to the exon 1f in human nNOS gene play suppressive role in transcription, as shown in the characteristics of Z-DNA motif in other genes. In neuronal and trophoblast cells transfected transiently with luciferase construct without dinucleotide repeats at the 5'-flanking region of exon 1f in nNOS gene, the luciferase activity was increased markedly. However, the presence of the dinucleotide repeats dramatically suppressed the luciferase activity to the basal level, and which was dependent on the length of $(GT)^n$ and $(TG)^n$ repeats. More importantly, we found the polymorphisms in the length of dinucleotide repeats in human. Furthermore, we show for the first time here that there is a significant association of the lengths of polymorphic dinucleotide $(GT)^n$ and $(TG)^n$ repeats with the risk of schizophrenia.

Gold Sodium Thiomalate Inhibits iNOS Gene Expression in RAW 264.7 Macrophage: Differential Regulation by Gold Sodium Thiomalate and Sodium Salicylate (Gold Sodium Thiomalate에 의한 유도성 Nitric Oxide Synthase Gene의 발현억제: Gold 제제와 Sodium Salicylate의 차이점)

  • 임종호;배진영
    • Biomolecules & Therapeutics
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    • v.10 no.4
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    • pp.230-235
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    • 2002
  • Gold sodium thiomalate (GST, gold compound) is a widely used anti-arthritic, anti-rheumatic and anti-inflammatory drug that is considered a good alternative to sodium salicylate (NaSA) for individuals who cannot tolerate salicylates. Nitric oxide (NO) synthesized by inducible nitric oxide synthase (iNOS) has been implicated as a mediator of inflammation. Recent evidence suggests that anti-inflammatory effect of NaSA lies in the inhibition of iNOS, but nothing has been reported about the direct effect of iNOS expression by GST. The present study was designed to elucidate sequentially the action mechanisms of GST and NaSA on lipopolysaccharide (LPS) plus interferon-gamma (IFN-$\gamma$) induced iNOS expression in RAW 264.7 macrophages. Both GST and NaSA inhibited NO production and iNOS protein expression in a dose dependent manner. GST inhibited iNOS mRNA expression induced by LPS plus IFN-$\gamma$, whereas NaSA did not. These findings suggest that GST may exert anti-arthritic, anti-rheumatic and anti-inflammatory effect by inhibiting iNOS expression induced by LPS plus IFN-$\gamma$ at transcriptional level, whereas NaSA exert its effect by inhibiting iNOS expression at the translational or posttranslational level.

Effects of Nitric Oxide on the Induction of Experimental Allergic Orchitis in Guinea Pig

  • An, Jeong Hwan;Kim, In Keun;Kim, Taek Sang;Kwak, Hyun Jeong;Rhew, Hyun Yul;Chung, Hun-Taeg
    • IMMUNE NETWORK
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    • v.4 no.2
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    • pp.108-115
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    • 2004
  • Background: Production of nitric oxide (NO) by inducible NO synthase (iNOS) has been implicated in the pathology of autoimmune disease. It is unknown whether iNOS expression is increased within testes and whether iNOS and NO have essential roles in the pathogenesis of EAO. Methods: EAO was induced in guinea pig testes at 17 days after secondary immunization by administration of crude extract (CE) and purified glycoprotein 1 (GP1) from normal guinea pig testes. iNOS gene expression was assessed by RT-PCR and Northern blot analysis in testes. Localization of iNOS and Mac-1 and the indicator of NO-mediated tissue injury, nitrotyrosine, were detected in the testicular lesion by immunohistochemistry. Results: In control testes, inflammation and iNOS gene expression were not detected, whereas, in CE- and GP1-injected testes, inflammation and marked iNOS gene expression were evident at day 17 after secondary immunization. Immunohistochemistry of Mac-1 showed the colocalization with iNOS protein and nitrotyrosyl proteins in intertubules, suggesting that NO produced by infiltrated macrophages may be involved in inflammatory lesions of intertubules. Intraperitoneal administration of aminoguanidine significantly prevented EAO with reduction of inflammation, iNOS expression and nitrotyrosine formation. Conclusion: These results suggest that NO production by macrophages may be important in the pathogenesis of CE- and GP1-induced EAO. Furthermore, this study demonstrated the therapeutic potential of iNOS inhibitor in the treatment of inflammatory and autoimmune mediated-diseases.

Diclofenac Inhibits $IFN-{\gamma}$ Plus Lipopolysaccharide-Induced iNOS Gene Expression via Suppression of $NF-{\kappa}B$ Activation in RAW 264.7 Macrophages

  • Bae, So-Hyun;Ryu, Young-Sue;Hong, Jang-Hee;Park, Jin-Chan;Kim, Yong-Man;Seok, Jeong-Ho;Lee, Jae-Heun;Hur, Gang-Min
    • The Korean Journal of Physiology and Pharmacology
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    • v.5 no.6
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    • pp.521-527
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    • 2001
  • Diclofenac, a phenylacetic acid derivative, is a widely used non-steroidal anti-inflammatory drug (NSAID) to provide effective relief of inflammation and pain. Nitric oxide (NO) synthesized by inducible nitric oxide synthase (iNOS) has been implicated as a mediator of inflammation. We examined the inhibitory effects of diclofenac on the induction of iNOS in RAW 264.7 macrophages which were activated with lipopolysaccharide (LPS) plus interferon-gamma $(IFN-{\gamma}).$ Treatment of RAW 264.7 cells with diclofenac and other NSAIDs (aspirin and indomethacin) significantly inhibited NO production and iNOS protein expression induced by LPS plus $IFN-{\gamma}.$ Also, diclofenac but not aspirin and indomethacin, inhibited iNOS mRNA expression and nuclear factor-kappa B $(NF-{\kappa}B)$ binding activity concentration-dependently. Furthermore, transfection of RAW 264.7 cells with iNOS promoter linked to a CAT reporter gene revealed that only diclofenac inhibited the iNOS promoter activity induced by LPS plus $IFN-{\gamma}$ through the $NF-{\kappa}B$ sites of iNOS promoter. Taken together, these suggest that diclofenac may exert its anti-inflammatory effect by inhibiting iNOS gene expression at the transcriptional level through suppression of $NF-{\kappa}B$ activation.

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Magnolol Inhibits LPS-induced NF-${\kappa}B$/Rel Activation by Blocking p38 Kinase in Murine Macrophages

  • Li, Mei Hong;Kothandan, Gugan;Cho, Seung-Joo;Huong, Pham Thi Thu;Nan, Yong Hai;Lee, Kun-Yeong;Shin, Song-Yub;Yea, Sung-Su;Jeon, Young-Jin
    • The Korean Journal of Physiology and Pharmacology
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    • v.14 no.6
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    • pp.353-358
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    • 2010
  • This study demonstrates the ability of magnolol, a hydroxylated biphenyl compound isolated from Magnolia officinalis, to inhibit LPS-induced expression of iNOS gene and activation of NF-${\kappa}B$/Rel in RAW 264.7 cells. Immunohisto-chemical staining of iNOS and Western blot analysis showed magnolol to inhibit iNOS gene expression. Reporter gene assay and electrophoretic mobility shift assay showed that magnolol inhibited NF-${\kappa}B$/Rel transcriptional activation and DNA binding, respectively. Since p38 is important in the regulation of iNOS gene expression, we investigated the possibility that magnolol to target p38 for its anti-inflammatory effects. A molecular modeling study proposed a binding position for magnolol that targets the ATP binding site of p38 kinase (3GC7). Direct interaction of magnolol and p38 was further confirmed by pull down assay using magnolol conjugated to Sepharose 4B beads. The specific p38 inhibitor SB203580 abrogated the LPS-induced NF-${\kappa}B$/Rel activation, whereas the selective MEK-1 inhibitor PD98059 did not affect the NF-${\kappa}B$/Rel. Collectively, the results of the series of experiments indicate that magnolol inhibits iNOS gene expression by blocking NF-${\kappa}B$/Rel and p38 kinase signaling.