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        Nitric Oxide Donor, (±)-<i>S</i>-Nitroso-<i>N</i>-acetylpenicillamine, Stabilizes Transactive Hypoxia-Inducible Factor-1α by Inhibiting von Hippel-Lindau Recruitment and Asparagine Hydroxylation

        Park, Young-Kwon,Ahn, Dae-Ro,Oh, Myoungsuk,Lee, Taekyoung,Yang, Eun Gyeong,Son, Miwon,Park, Hyunsung American Society for PharmacologyExperimental Ther 2008 Molecular pharmacology Vol.74 No.1

        <P>We have confirmed that the NO donor (+/-)-S-nitroso-N-acetylpenicillamine (SNAP) stabilizes the transactive form of hypoxia-inducible factor-1alpha (HIF-1alpha), leading to the induction of HIF-1alpha target genes such as vascular endothelial growth factor and carbonic anhydrase 9. Activation of HIF-1alpha should require inhibition of the dual system that keeps it inactive. One is ubiquitination, which is triggered by hydroxylation of HIF-1alpha-proline and the subsequent binding of E3 ubiquitin ligase, the von Hippel Lindau (VHL) protein. The other is hydroxylation of HIF-1alpha-asparagine, which reduces the affinity of HIF-1alpha for its coactivator, cAMP responsive element binding protein/p300. We examined the effects of the NO donor SNAP on proline and asparagine hydroxylation of HIF-1alpha peptides by measuring the activities of the corresponding enzymes, HIF-1alpha-specific proline hydroxylase 2 (PHD2) and the HIF-1alpha-specific asparagine hydroxylase, designated factor inhibiting HIF-1alpha (FIH-1), respectively. We found that the SNAP did not prevent PHD2 from hydroxylating the proline of HIF-1alpha. Instead, it blocked the interaction between VHL and the proline-hydroxylated HIF-1alpha, but only when the reducing agents Fe(II) and vitamin C were limiting. The fact that the absence of cysteine 520 of HIF-1alpha abolishes its responsiveness to SNAP suggests that this residue mediates the inhibition by SNAP of the interaction between VHL and HIF-1alpha, presumably by S-nitrosylation of HIF-1alpha. Un-like PHD2, asparagine hydroxylation by FIH-1 was directly inhibited by SNAP, but again only when reducing agents were limiting. Substitution of cysteine 800 of HIF-1alpha with alanine failed to reverse the inhibitory effects of SNAP on asparagine hydroxylation, implying that FIH-1, not its substrate HIF-1alpha, is inhibited by SNAP.</P>

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        The Pharmacological Effects of Benachio-F<sup>®</sup> on Rat Gastrointestinal Functions

        Poudel, Bijay Kumar,Yu, Jae Young,Kwon, Yong Sam,Park, Hyoung Geun,Son, Miwon,Jun, Joon Ho,Kim, Jeong Ah,Kim, Jong Oh The Korean Society of Applied Pharmacology 2015 Biomolecules & Therapeutics(구 응용약물학회지) Vol.23 No.4

        Functional dyspepsia (FD) is a prevalent idiopathic upper gastrointestinal (GI) disorder characterized by diverse symptomatology including epigastric pain or discomfort, postprandial fullness, and early satiety. Although its pathophysiological mechanisms have not yet been fully established, the available studies suggest that the etiology of FD is invariably multifactorial. Benachio-F$^{(R)}$ (BF) is a proprietary liquid formulation of 7 herbal extracts that has been proposed to address this multifactorial etiology using multi-drug phytotherapy. The pharmacological effects of BF, in comparison with those of two other herbal products (Whalmyungsu$^{(R)}$; WM and Iberogast$^{(R)}$; IB) were evaluated in rats. In a laparotomy-induced rat model of delayed GI transit, BF significantly accelerated the delayed gastric emptying caused by morphine, apomorphine, and cisplatin, and also significantly increased mean gastric transit, as compared to the control animals. BF markedly increased gastric accommodation in rats and produced higher gastric volume values than did the control treatment. The effects of BF were generally comparable or superior to those of WM and IB in these models. Furthermore, BF significantly stimulated biliary flow, as compared to the control treatment. These results indicated that BF might have great potential as an effective phytotherapeutic agent capable of reducing GI symptoms and increasing quality of life in FD patients.

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        밀리타리스 동충하초(Cordyceps militaris) 에탄올 추출물의 면역억제 마우스 면역활성에 미치는 영향

        김혜주(Hyeju Kim),이태호(Tae Ho Lee),권용삼(Yong Sam Kwon),손미원(Miwon Son),김채균(Chaekyun Kim) 한국식품영양과학회 2012 한국식품영양과학회지 Vol.41 No.4

        본 연구에서는 면역억제 동물모델에서 밀리타리스 동충하초 50% 에탄올 추출물의 면역력 증강 기능을 평가하였다. 이를 위하여 C57BL/6 마우스에 cyclophosphamide를 2회 복강주사 하여 면역력을 억제한 후, 밀리타리스 동충하초 추출물을 30, 100, 300 mg/kg 용량으로 12일간 경구투여 하였다. 마우스를 희생하여 몸무게 및 면역장기 무게, 비장세포의 증식, 비장세포의 cytokine 분비능, NK 세포 활성을 측정하였다. 그 결과, cyclophosphamide 투여에 의한 면역억제는 마우스의 몸무게와 간의 무게에 영향을 주지 않았으나 흉선의 무게는 감소시켰고 비장의 무게는 증가시켰다. 밀리타리스 동충하초 추출물 투여는 마우스의 몸무게 및 면역장기 무게에 영향을 주지 않았다. Cyclophosphamide 투여는 비장세포의 증식능을 감소시켰으며 밀리타리스 동충하초 추출물은 용량 의존적으로 비장세포 증식을 증가시켜 실험에 사용한 전 용량에서 비장세포의 유의적인 증식효과를 보였다. 비장세포의 cytokine 분비능을 측정한 결과, 밀리타리스 동충하초 추출물 투여는 IL-2, IL-12, IFN-γ, TNF-α 같은 Th1 cytokine의 분비를 대조군에 비해 유의적으로 증가시켰으나, IL-4와 IL-10 같은 Th2 cytokine의 분비에는 영향을 미치지 않았다. 또한 cyclophosphamide는 NK 세포의 활성을 정상군에 비하여 유의적으로 감소시켰으며, 밀리타리스 동충하초 추출물 투여는 cyclophosphamide에 의해 저하된 NK 세포 활성을 현저하게 증가시켰다. 이상의 결과를 종합해 볼 때, 밀리타리스 동충하초는 면역력이 억제된 상황에서 면역력을 증강시키며, 이러한 면역력 증강 효과는 체액성 면역보다 세포성 면역력 증강에 기인하는 것으로 보인다. In order to determine the functional benefits of Cordyceps militaris in the immune system, we examined the immunomodulatory activities of Cordyceps militaris in an immunocompromised C57BL/6 mice model. Mice were injected intraperitoneally with an immunosuppressive drug, cyclophosphamide, and then administered orally with 3% hydroxypropylmethylcellulose or 30, 100, and 300 mg/kg of 50% ethanol extract of Cordyceps militaris (CM 30, CM 100, and CM 300, respectively) for 12 days. Mice treated with CM displayed significantly increased splenocyte proliferation and natural killer cell activity compared to immunosuppressed control mice (p<0.05). The spleen cells isolated from mice treated with CM also displayed increased production of Th1 cytokines, including IL-2, IL-12, IFN-γ and TNF-α, suggesting enhanced cellular immunity in response to CM. However, CM had no significant effect on the production of IL-4 and IL-10. These results indicate that Cordyceps militaris enhances immune function by promoting immune cell proliferation and Th1 cytokine production.

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