• 제목/요약/키워드: Secretion pathway

검색결과 241건 처리시간 0.026초

Inhibitory Effects of Cordycepin on Platelet Activation via Regulation of Cyclic Adenosine Monophosphate-downstream Pathway

  • Lee, Dong-Ha
    • 대한의생명과학회지
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    • 제23권3호
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    • pp.251-260
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    • 2017
  • Platelet activation is essential at the sites of vascular injury, which leads to hemostasis through adhesion, aggregation, and secretion process. However, potent and continuous platelet activation may be an important reason of circulatory disorders. Therefore, proper regulation of platelet activation may be an effective treatment for vascular diseases. In this research, inhibitory effects of cordycepin (3'-deoxyadenosine) on platelet activation were determined. As the results, cordycepin increased cAMP and cGMP, which are intracellular $Ca^{2+}$-antagonists. In addition, cordycepin reduced collagen-elevated $[Ca^{2+}]_i$ mobilization, which was increased by a cAMP-dependent protein kinase (PKA) inhibitor (Rp-8-Br-cAMPS), but not a cGMP-protein kinase (PKG) inhibitor (Rp-8-Br-cGMPS). Furthermore, cordycepin increased $IP_3RI$ ($Ser^{1756}$) phosphorylation, indicating inhibition of $IP_3$-mediated $Ca^{2+}$ release from internal store via the $IP_3RI$, which was strongly inhibited by Rp-8-Br-cAMPS, but was not so much inhibited by Rp-8-Br-cGMPS. These results suggest that the reduction of $[Ca^{2+}]_i$ mobilization is caused by the cAMP/A-kinase-dependent $IP_3RI$ ($Ser^{1756}$) phosphorylation. In addition, cordycepin increased the phosphorylation of VASP ($Ser^{157}$) known as PKA substrate, but not VASP ($Ser^{239}$) known as PKG substrate. Cordycepin-induced VASP ($Ser^{157}$) phosphorylation was inhibited by Rp-8-Br-cAMPS, but was not inhibited by Rp-8-Br-cGMPS, and cordycepin inhibited collagen-induced fibrinogen binding to ${\alpha}IIb/{\beta}_3$, which was increased by Rp-8-Br-cAMPS, but was not inhibited by Rp-8-Br-cGMPS. These results suggest that the inhibition of ${\alpha}IIb/{\beta}_3$ activation is caused by the cAMP/A-kinase-dependent VASP ($Ser^{157}$) phosphorylation. In conclusion, these results demonstrate that inhibitory effects of cordycepin on platelet activation were due to inhibition of $[Ca^{2+}]_i$ mobilization through cAMP-dependent $IP_3RI$ ($Ser^{1756}$) phosphorylation and suppression of ${\alpha}IIb/{\beta}_3$ activation through cAMP-dependent VASP ($Ser^{157}$) phosphorylation. These results strongly indicated that cordycepin might have therapeutic or preventive potential for platelet activation-mediated disorders including thrombosis, atherosclerosis, myocardial infarction, or cardiovascular disease.

Photoaging protective effects of BIOGF1K, a compound-K-rich fraction prepared from Panax ginseng

  • Hong, Yo Han;Kim, Donghyun;Nam, Gibaeg;Yoo, Sulgi;Han, Sang Yun;Jeong, Seong-Gu;Kim, Eunji;Jeong, Deok;Yoon, Keejung;Kim, Sunggyu;Park, Junseong;Cho, Jae Youl
    • Journal of Ginseng Research
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    • 제42권1호
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    • pp.81-89
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    • 2018
  • Background: BIOGF1K, a compound-K-rich fraction, has been shown to display anti-inflammatory activity. Although Panax ginseng is widely used for the prevention of photoaging events induced by UVB irradiation, the effect of BIOGF1K on photoaging has not yet been examined. In this study, we investigated the effects of BIOGF1K on UVB-induced photoaging events. Methods: We analyzed the ability of BIOGF1K to prevent UVB-induced apoptosis, enhance matrix metalloproteinase (MMP) expression, upregulate anti-inflammatory activity, reduce sirtuin 1 expression, and melanin production using reverse transcription-polymerase chain reaction, melanin content assay, tyrosinase assay, and flow cytometry. We also evaluated the effects of BIOGF1K on the activator protein-1 signaling pathway, which plays an important role in photoaging, by immunoblot analysis and luciferase reporter gene assays. Results: Treatment of UVB-irradiated NIH3T3 fibroblasts with BIOGF1K prevented UVB-induced cell death, inhibited apoptosis, suppressed morphological changes, reduced melanin secretion, restored the levels of type I procollagen and sirtuin 1, and prevented mRNA upregulation of MMP-1, MMP-2, and cyclo-oxygenase-2; these effects all occurred in a dose-dependent manner. In addition, BIOGF1K markedly reduced activator-protein-1-mediated luciferase activity and decreased the activity of mitogen-activated protein kinases (extracellular response kinase, p38, and C-Jun N-terminal kinase). Conclusion: Our results strongly suggest that BIOGF1K has anti-photoaging activity and that BIOGF1K could be used in anti-aging cosmeceutical preparations.

U-251-MG 세포에서 PSA 경로에 작용하는 Hepatocyte Growth Factor의 효과 (Effects of Hepatocyte Growth Factor on the PSA Signaling Pathway of U-251-MG Cells)

  • 김환규
    • KSBB Journal
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    • 제24권5호
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    • pp.425-431
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    • 2009
  • 본 연구에서는 U-251-MG 세포를 이용하여 증식, 이동, 침윤 및 단백질분해효소의 분비에 미치는 PSA와 HGF의 효과를 확인하였다. 그 결과, PSA siRNA에 의해 U-251-MG 세포의 증식은 약 37% 억제되었으나, HGF 처리 (10 ng/mL)에 의해 증식이 약 1.4배 증가되었다. PSA siRNA에 의한 U-251-MG 세포의 이동은 약 60%가 억제되었으나, HGF 처리에 의해 이동이 약 1.3배 증가되었다. 또한, PSA siRNA에 의해 U-251-MG 세포의 침윤이 약 67% 억제되었으나 HGF 처리에 의해 세포의 침윤이 약 4.3배 증가되었다. PSA siRNA처리에 의해 MMP-2의 분비는 약 25%, MMP-9의 분비는 약 20% 억제되었으며, HGF에 의해 PSA siRNA에 의해 억제된 MMP-2 및 MMP-9의 분비가 약 2.8배 및 3.5배 증가되었다. HGF 처리에 의해 플라스민의 분비량은 약 14배 증가되었고, PSA를 억제한 U-251-MG 세포에 HGF를 처리한 결과, 플라스민의 분비가 약 1.6배 증가하였다. 또한, PSA siRNA에 의해 MMP-2의 발현은 유의할만한 변화가 없었으나, MMP-9의 발현은 약 85% 억제되었다. PSA를 억제시킨 U-251-MG 세포에 HGF를 처리한 결과, MMP-2의 발현은 약 5.7배, MMP-9의 발현은 약 6.3배 증가되었다. 한편, MMPs의 광범위 억제제인 BB-94 처리에 의해 U-251-MG 세포의 증식, 이동 및 침윤이 유의할만하게 억제 된 것은 MMP-2 및 MMP-9이 U-251-MG 세포의 증식, 이동 및 침윤에 관여할 것임을 시사해준다.

DA-6034 Induces $[Ca^{2+}]_i$ Increase in Epithelial Cells

  • Yang, Yu-Mi;Park, Soonhong;Ji, HyeWon;Kim, Tae-Im;Kim, Eung Kweon;Kang, Kyung Koo;Shin, Dong Min
    • The Korean Journal of Physiology and Pharmacology
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    • 제18권2호
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    • pp.89-94
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    • 2014
  • DA-6034, a eupatilin derivative of flavonoid, has shown potent effects on the protection of gastric mucosa and induced the increases in fluid and glycoprotein secretion in human and rat corneal and conjunctival cells, suggesting that it might be considered as a drug for the treatment of dry eye. However, whether DA-6034 induces $Ca^{2+}$ signaling and its underlying mechanism in epithelial cells are not known. In the present study, we investigated the mechanism for actions of DA-6034 in $Ca^{2+}$ signaling pathways of the epithelial cells (conjunctival and corneal cells) from human donor eyes and mouse salivary gland epithelial cells. DA-6034 activated $Ca^{2+}$-activated $Cl^-$ channels (CaCCs) and increased intracellular calcium concentrations ($[Ca^{2+}]_i$) in primary cultured human conjunctival cells. DA-6034 also increased $[Ca^{2+}]_i$ in mouse salivary gland cells and human corneal epithelial cells. $[Ca^{2+}]_i$ increase of DA-6034 was dependent on the $Ca^{2+}$ entry from extracellular and $Ca^{2+}$ release from internal $Ca^{2+}$ stores. Interestingly, these effects of DA-6034 were related to ryanodine receptors (RyRs) but not phospholipase C/inositol 1,4,5-triphosphate ($IP_3$) pathway and lysosomal $Ca^{2+}$ stores. These results suggest that DA-6034 induces $Ca^{2+}$ signaling via extracellular $Ca^{2+}$ entry and RyRs-sensitive $Ca^{2+}$ release from internal $Ca^{2+}$ stores in epithelial cells.

Ginsenoside Rb1 and compound K improve insulin signaling and inhibit ER stress-associated NLRP3 inflammasome activation in adipose tissue

  • Chen, Weijie;Wang, Junlian;Luo, Yong;Wang, Tao;Li, Xiaochun;Li, Aiyun;Li, Jia;Liu, Kang;Liu, Baolin
    • Journal of Ginseng Research
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    • 제40권4호
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    • pp.351-358
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    • 2016
  • Background: This study was designed to investigate whether ginsenoside Rb1 (Rb1) and compound K (CK) ameliorated insulin resistance by suppressing endoplasmic reticulum (ER) stress-induced inflammation in adipose tissue. Methods: To induce ER stress, epididymal adipose tissue from mice or differentiated 3T3 adipocytes were exposed to high glucose. The effects of Rb1 and CK on reactive oxygen species production, ER stress, TXNIP/NLRP3 inflammasome activation, inflammation, insulin signaling activation, and glucose uptake were detected by western blot, emzyme-linked immunosorbent assay, or fluorometry. Results: Rb1 and CK suppressed ER stress by dephosphorylation of $IRE1{\alpha}$ and PERK, thereby reducing TXNIP-associated NLRP3 inflammasome activation in adipose tissue. As a result, Rb1 and CK inhibited IL-$1{\beta}$ maturation and downstream inflammatory factor IL-6 secretion. Inflammatory molecules induced insulin resistance by upregulating phosphorylation of insulin receptor substrate-1 at serine residues and impairing insulin PI3K/Akt signaling, leading to decreased glucose uptake by adipocytes. Rb1 and CK reversed these changes by inhibiting ER stress-induced inflammation and ameliorating insulin resistance, thereby improving the insulin IRS-1/PI3K/Akt-signaling pathway in adipose tissue. Conclusion: Rb1 and CK inhibited inflammation and improved insulin signaling in adipose tissue by suppressing ER stress-associated NLRP3 inflammation activation. These findings offered novel insight into the mechanism by which Rb1 and CK ameliorate insulin resistance in adipose tissue.

Myeloid-specific SIRT1 Deletion Aggravates Hepatic Inflammation and Steatosis in High-fat Diet-fed Mice

  • Kim, Kyung Eun;Kim, Hwajin;Heo, Rok Won;Shi, Hyun Joo;Yi, Chin-ok;Lee, Dong Hoon;Kim, Hyun Joon;Kang, Sang Soo;Cho, Gyeong Jae;Choi, Wan Sung;Roh, Gu Seob
    • The Korean Journal of Physiology and Pharmacology
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    • 제19권5호
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    • pp.451-460
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    • 2015
  • Sirtuin 1 (SIRT1) is a mammalian $NAD^+$-dependent protein deacetylase that regulates cellular metabolism and inflammatory response. The organ-specific deletion of SIRT1 induces local inflammation and insulin resistance in dietary and genetic obesity. Macrophage-mediated inflammation contributes to insulin resistance and metabolic syndrome, however, the macrophage-specific SIRT1 function in the context of obesity is largely unknown. C57/BL6 wild type (WT) or myeloid-specific SIRT1 knockout (KO) mice were fed a high-fat diet (HFD) or normal diet (ND) for 12 weeks. Metabolic parameters and markers of hepatic steatosis and inflammation in liver were compared in WT and KO mice. SIRT1 deletion enhanced HFD-induced changes on body and liver weight gain, and increased glucose and insulin resistance. In liver, SIRT1 deletion increased the acetylation, and enhanced HFD-induced nuclear translocation of nuclear factor kappa B (NF-${\kappa}B$), hepatic inflammation and macrophage infiltration. HFD-fed KO mice showed severe hepatic steatosis by activating lipogenic pathway through sterol regulatory element-binding protein 1 (SREBP-1), and hepatic fibrogenesis, as indicated by induction of connective tissue growth factor (CTGF), alpha-smooth muscle actin (${\alpha}$-SMA), and collagen secretion. Myeloid-specific deletion of SIRT1 stimulates obesity-induced inflammation and increases the risk of hepatic fibrosis. Targeted induction of macrophage SIRT1 may be a good therapy for alleviating inflammation-associated metabolic syndrome.

Ginsenoside Rg3-enriched red ginseng extract inhibits platelet activation and in vivo thrombus formation

  • Jeong, Dahye;Irfan, Muhammad;Kim, Sung-Dae;Kim, Suk;Oh, Jun-Hwan;Park, Chae-Kyu;Kim, Hyun-Kyoung;Rhee, Man Hee
    • Journal of Ginseng Research
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    • 제41권4호
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    • pp.548-555
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    • 2017
  • Background: Korean Red Ginseng has been used for several decades to treat many diseases, enhancing both immunity and physical strength. Previous studies have documented the therapeutic effects of ginseng, including its anticancer, antiaging, and anti-inflammatory activities. These activities are mediated by ginsenosides present in the ginseng plant. Ginsenoside Rg3, an effective compound from red ginseng, has been shown to have antiplatelet activity in addition to its anticancer and anti-inflammatory activities. Platelets are important for both primary hemostasis and the repair of the vessels after injury; however, they also play a crucial role in the development of acute coronary diseases. We prepared ginsenoside Rg3-enriched red ginseng extract (Rg3-RGE) to examine its role in platelet physiology. Methods: To examine the effect of Rg3-RGE on platelet activation in vitro, platelet aggregation, granule secretion, intracellular calcium ($[Ca^{2+}]_i$) mobilization, flow cytometry, and immunoblot analysis were carried out using rat platelets. To examine the effect of Rg3-RGE on platelet activation in vivo, a collagen plus epinephrine-induced acute pulmonary thromboembolism mouse model was used. Results: We found that Rg3-RGE significantly inhibited collagen-induced platelet aggregation and $[Ca^{2+}]_i$ mobilization in a dose-dependent manner in addition to reducing ATP release from collagen-stimulated platelets. Furthermore, using immunoblot analysis, we found that Rg3-RGE markedly suppressed mitogen-activated protein kinase phosphorylation (i.e., extracellular stimuli-responsive kinase, Jun N-terminal kinase, p38) as well as the PI3K (phosphatidylinositol 3 kinase)/Akt pathway. Moreover, Rg3-RGE effectively reduced collagen plus epinephrine-induced mortality in mice. Conclusion: These data suggest that ginsenoside Rg3-RGE could be potentially be used as an antiplatelet therapeutic agent against platelet-mediated cardiovascular disorders.

LPS 자극 RAW 264.7 대식세포에 있어서 아로니아 열매 열수 추출물의 항염증 효과 (Anti-Inflammatory Effect of Hot Water Extract of Aronia Fruits in LPS-Stimulated RAW 264.7 Macrophages)

  • 양혜;오광훈;유영춘
    • 한국식품영양과학회지
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    • 제44권1호
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    • pp.7-13
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    • 2015
  • 본 연구에서는 아로니아 열매 추출물(AF-H)의 항염증 활성을 조사하기 위하여 LPS 자극에 의해 유도된 RAW 264.7 macrophage의 염증반응에서 AF-H의 염증매개인자 및 염증성 사이토카인 분비 억제활성과 이에 관련된 세포 내 작용기전 해석을 수행하였다. LPS($1{\mu}g/mL$)로 RAW 264.7 세포를 24시간 자극하는 염증모델에서 세포독성을 나타내지 않는 안전한 농도의 AF-H($0{\sim}500{\mu}g/mL$)를 LPS 처리 12시간 전에 처리하여 NO 및 PGE2의 분비 억제활성을 측정하였다. 그 결과 AF-H 처리에 의해 NO와 PGE2의 생성이 처리 농도에 의존하여 유의하게 억제되었으며, 이들 염증매개인자의 생합성 효소인 iNOS 및 COX-2의 세포 내 발현도 현저하게 억제되는 것으로 관찰되었다. 또한 AF-H의 처리에 의해 염증성 사이토카인인 $TNF-{\alpha}$와 IL-6의 분비도 유의하게 억제되는 것으로 확인하였다. 이러한 AF-H에 의한 항염증 활성의 세포 내 기전을 해석하기 위하여 LPS 자극에 의해 유도되는 MAPK와 $NF-{\kappa}B$ 전사인자의 활성화에 대한 억제 효과를 조사하였다. 그 결과 AF-H는 MAPK의 인산화에는 별다른 영향을 미치지 않고 $NF-{\kappa}B$의 활성화($I{\kappa}B$ 인산화)를 효과적으로 억제하는 것으로 확인되었다. 한편 LPS에 의한 in vivo 패혈증 모델에서 AF-H에 의한 패혈증 억제활성을 측정한 결과 비록 통계학적으로 유의하지는 않으나 AF-H 투여에 의해 생존율과 50% 사망률의 연장 효과가 관찰되었다. 이들 결과를 종합해 보면 아로니아 열매 열수추출물은 $NF-{\kappa}B$의 활성화 억제를 통해 NO, PGE2, $TNF-{\alpha}$ 및 IL-6 등의 염증매개인자와 사이토카인의 생성을 억제하는 항염증 활성을 지니는 것으로 확인되었다.

인삼열매로부터 분리한 Rhamnogalacturonan II 다당의 면역활성과 세포 내 신호전달 기작 규명 (Immunostimulatory activity and intracellular signaling pathways of a rhamnogalcaturonan II polysaccharide isolated from ginseng berry)

  • 차하영;손승우;신광순
    • 한국식품과학회지
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    • 제53권6호
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    • pp.722-730
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    • 2021
  • 본 연구는 인삼열매로부터 RG-II 형태의 다당(GBW-II)을 분리하고 대식세포 활성화에 대한 세포 내 신호전달의 세부 기작을 규명함으로써 새로운 건강기능성식품 소재 개발을 위한 기초자료를 제시하고자 진행되었다. GBW-II의 구성당을 확인한 결과, 전형적인 RG-II의 구성당인 2-methyl-xylose, apiose, aceric acid, KDO 및 DHA와 같은 특이 구성당을 함유함을 확인할 수 있었다. GBW-II는 대식세포 유래 세포주인 RAW 264.7 cell에 처리하였을 경우, 어떠한 세포 독성도 확인되지 않았으나 IL-6와 TNF-α와 같은 cytokine의 분비는 농도 의존적으로 증가시키는 것으로 나타났다. 또한 RAW 264.7 cell을 이용한 세포 내 신호전달에 관한 실험 결과들을 종합해 볼 때, GBW-II는 대식세포 표면에 발현된 TLR2, TLR4 및 SR에 결합하여 MAPKs (p38, ERK) 및 NF-κB를 경유하여 IL-6와 TNF-α와 같은 cytokine의 분비를 증가시키는 것으로 최종 확인되었다. 한편, RG-I, RG-II, β-glucan, arabinoxylan 및 xyloglucan과 같은 식물체 유래 고분자 다당체의 약리활성은 그들의 구조적 차이에서 기원하는 것으로 알려져 있기 때문에 건강기능성식품 소재로의 개발을 위해서는 활성물질의 미세구조에 대한 해명이 필수적이라 할 수 있다. 따라서 본 연구진은 추후 연구에서 효소적 및 화학적 가수분해, methylation, sequencing 등을 이용하여 인삼열매 유래 정제 다당 GBW-II의 미세구조를 규명하고자 한다.

Metabolomic analysis of healthy human urine following administration of glimepiride using a liquid chromatography-tandem mass spectrometry

  • Do, Eun Young;Gwon, Mi-Ri;Kim, Bo Kyung;Ohk, Boram;Lee, Hae Won;Kang, Woo Youl;Seong, Sook Jin;Kim, Hyun-Ju;Yoon, Young-Ran
    • Translational and Clinical Pharmacology
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    • 제25권2호
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    • pp.67-73
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    • 2017
  • Glimepiride, a third generation sulfonylurea, is an antihyperglycemic agent widely used to treat type 2 diabetes mellitus. In this study, an untargeted urinary metabolomic analysis was performed to identify endogenous metabolites affected by glimepiride administration. Urine samples of twelve healthy male volunteers were collected before and after administration of 2 mg glimepiride. These samples were analyzed by liquid chromatography-tandem mass spectrometry (LC-MS/MS), and then subjected to multivariate data analysis including principal component analysis and orthogonal partial least squares discriminant analysis. Through this metabolomic profiling, we identified several endogenous metabolites such as adenosine 3', 5'-cyclic monophosphate (cAMP), quercetin, tyramine, and urocanic acid, which exhibit significant metabolomic changes between pre- and posturine samples. Among these, cAMP, which is known to be related to insulin secretion, was the most significantly altered metabolite following glimepiride administration. In addition, the pathway analysis showed that purine, tyrosine, and histidine metabolism was affected by pharmacological responses to glimepiride. Together, the results suggest that the pharmacometabolomic approach, based on LC-MS/MS, is useful in understanding the alterations in biochemical pathways associated with glimepiride action.