• 제목/요약/키워드: extracellular signal-regulated protein kinase

검색결과 354건 처리시간 0.031초

Inhibitory Activities of Red Ginseng Acidic Polysaccharide in Platelet Aggregation

  • Lee, Whi-Min;Kamruzzaman, S.M.;Song, Yong-Bum;Cho, Jae-Youl;Park, Hwa-Jin;Rhee, Man-Hee
    • Journal of Ginseng Research
    • /
    • 제32권1호
    • /
    • pp.73-78
    • /
    • 2008
  • Red ginseng acidic polysaccharide (RGAP), isolated from Korean red ginseng (Panax ginseng C.A. Meyer), has been shown to have a variety of biological functions such as immunostimulating and anti-tumor activities. In the present study, we investigated whether RGAP inhibited ligand-induced platelet aggregation. The washed platelet-rich plasma was prepared from male SD rats with successive centrifugation. The platelets $(10^8/ml)$ were preincubated with 1 mM of $CaCl_2$ for 2 min either in the presence or in the absence of RGAP $(10{\sim}50\;{\mu}g/ml)$ and were stimulated with collagen (2.5 ${\mu}g/ml$) and thrombin (0.1 U/ml). RGAP dose-dependently inhibited thrombin-induced platelet aggregation with $IC_{50}$ value of $26.2{\pm}2.0$ ${\mu}g/ml$. In collagen-induced platelet aggregation, RGAP inhibited the reaction with an $IC_{50}$ value of $31.5{\pm}3.0\;{\mu}g/ml$. RGAP potently suppressed the intracellular calcium ion, which was stimulated by thrombin (0.1 U/ ml). Among mitogen-activated protein kinase (MAPK) subtypes, the extracellular signal-regulated kinase (ERK) 1/2 and p38 MAPK were analyzed in the present study. RGAP inhibited the phosphorylation of ERK2 and p38 MAPK, which was activated by collagen (2.5 ${\mu}g/ml$). Finally, these results suggested that besides saponin fraction, RGAP take an important role in the preventive effect of Korean red ginseng against cardiovascular disease such as thrombosis and atherosclerosis.

Differential regulation of phospho-p38 and phospho-ERK by TCDD

  • Kim, Ho-jun;Cho, Sung-whan;Son, Hwa-young;Yoon, Won-kee;Jeong, Kyung-shik;Ryu, Si-yun
    • 한국수의병리학회:학술대회논문집
    • /
    • 한국수의병리학회 2003년도 추계학술대회초록집
    • /
    • pp.42-42
    • /
    • 2003
  • The contamination of the environment with pollutants is one of the main problems of modern life, and the levels pollution in industrialized regions are giving raise to increased public concern. The mitogen-activated protein kinase (MAP kinase) are playa pivotal role in the regulation of important cellular functions by activation of specific signal transduction pathways from cell the surface to the nuclei. Three major subgroups of MAP kinases have been identified, and these comprise the extracellular signal-regulated kinase (ERK), the c-Jun amino-terminal kinase (JNK), and the p38 MAP kinases [1-3]. Herein, we investigated the effect of regulation of phospho-JNK (p-JNK), phospho-p38 (p-p38) and phospho-ERK (p-ERK) by TCDD. (omitted)

  • PDF

Sustained Intracellular Acidosis Triggers the Na+/H+ Exchager-1 Activation in Glutamate Excitotoxicity

  • Lee, Bo Kyung;Jung, Yi-Sook
    • Biomolecules & Therapeutics
    • /
    • 제25권6호
    • /
    • pp.593-598
    • /
    • 2017
  • The $Na^+/H^+$ exchanger-1 (NHE-1) is a ubiquitously expressed pH-regulatory membrane protein that functions in the brain, heart, and other organs. It is increased by intracellular acidosis through the interaction of intracellular $H^+$ with an allosteric modifier site in the transport domain. In the previous study, we reported that glutamate-induced NHE-1 phosphorylation mediated by activation of protein kinase C-${\beta}$ (PKC-${\beta}$) in cultured neuron cells via extracellular signal-regulated kinases (ERK)/p90 ribosomal s6 kinases (p90RSK) pathway results in NHE-1 activation. However, whether glutamate stimulates NHE-1 activity solely by the allosteric mechanism remains elusive. Cultured primary cortical neuronal cells were subjected to intracellular acidosis by exposure to $100{\mu}M$ glutamate or 20 mM $NH_4Cl$. After the desired duration of intracellular acidosis, the phosphorylation and activation of PKC-${\beta}$, ERK1/2 and p90RSK were determined by Western blotting. We investigated whether the duration of intracellular acidosis is controlled by glutamate exposure time. The NHE-1 activation increased while intracellular acidosis sustained for >3 min. To determine if sustained intracellular acidosis induced NHE-1 phosphorylation, we examined phosphorylation of NHE-1 induced by intracellular acidosis by transient exposure to $NH_4Cl$. Sustained intracellular acidosis led to activation and phosphorylation of NHE-1. In addition, sustained intracellular acidosis also activated the PKC-${\beta}$, ERK1/2, and p90RSK in neuronal cells. We conclude that glutamate stimulates NHE-1 activity through sustained intracellular acidosis, which mediates NHE-1 phosphorylation regulated by PKC-${\beta}$/ERK1/2/p90RSK pathway in neuronal cells.

Effect of nitric oxide on the expression of matrix metalloproteinases by the UV irradiated human dermal fibroblasts

  • Taeboo Choe;Lee, Bumchun;Park, Inchul;Seokil Hong
    • 대한화장품학회지
    • /
    • 제28권1호
    • /
    • pp.31-41
    • /
    • 2002
  • The production of matrix matalloproteinases(MMPs) by the UV irradiated skin fibroblast and the degradation of extracellular matrix(ECM) by these enzymes is known as one of the main reasons of photoaging. Recently, Fisher group showed that the MMP expression is mainly regulated by the mitogen-activated protein(MAP) kinas family, such as extracellular signal-regulated kinase(ERK), c-Jun amino-terminal kinase(JNK) and p38, each of which forms a signaling pathway. In this work we first examined the effect of nitric oxide (NO) on the production of MMP-1 and MMP-2 by the human dermal fibroblasts (HDFs). NO is a multifunctional messenger molecule generated from L-arginine and involved in many kinds of signaling pathway. We found that the treatment of HDF with NO donor, sodium nitroprusside (SNP) enhanced the expression of MMPs with or without UV irradiation and the treatment with nitric oxide synthase (NOS) inhibitors resulted in the significant decrease of MMPs production. From these results, we concluded that the production of MMPs by the UV irradiated HDF is regulated through the signaling pathway involving NO and cyclic GMP.

Effects of Curcumin, the Active Ingredient of Turmeric(Curcuma longa), on Regulation of Glutamate-induced Toxicity and Activation of the Mitogen-activated Protein Kinase Phosphatase-1 (MKP-1) in HT22 Neuronal Cell

  • Lee, Sang-Hyun;Yun, Young-Gab
    • Natural Product Sciences
    • /
    • 제15권1호
    • /
    • pp.32-36
    • /
    • 2009
  • Glutamate causes neurotoxicity through formation of reactive oxygen species and activation of mitogen-activated protein kinase (MAPK) pathways. MAPK phosphatase-1 (MKP-1) is one of the phosphatases responsible for dephosphorylation/deactivation of three MAPK families: the extracellular signal-regulated kinase-1/2 (ERK-1/2), the c-Jun N-terminal kinase-1/2 (JNK-1/2), and the p38 MAPK. In this report, the potential involvement of MKP-1 in neuroprotective effects of curcumin, the active ingredient of turmeric (Curcuma longa), was examined using HT22 cells. Glutamate caused cell death and activation of ERK-1/2 but not p38 MAPK or JNK-1/2. Blockage of ERK-1/2 by its inhibitor protected HT22 cells against glutamate-induced toxicity. Curcumin attenuated glutamate-induced cell death and ERK-1/2 activation. Interestingly, curcumin induced MKP-1 activation. In HT22 cells transiently transfected with small interfering RNA against MKP-1, curcumin failed to inhibit glutamate-induced ERK-1/2 activation and to protect HT22 cells from glutamate-induced toxicity. These results suggest that curcumin can attenuate glutamate-induced neurotoxicity by activating MKP-1 which acts as the negative regulator of ERK-1/2. This novel pathway may contribute to and explain at least one of the neuroprotective actions of curcumin.

Critical role of protein L-isoaspartyl methyltransferase in basic fibroblast growth factor-mediated neuronal cell differentiation

  • Dung, To Thi Mai;Yi, Young-Su;Heo, Jieun;Yang, Woo Seok;Kim, Ji Hye;Kim, Han Gyung;Park, Jae Gwang;Yoo, Byong Chul;Cho, Jae Youl;Hong, Sungyoul
    • BMB Reports
    • /
    • 제49권8호
    • /
    • pp.437-442
    • /
    • 2016
  • We aimed to study the role of protein L-isoaspartyl methyltransferase (PIMT) in neuronal differentiation using basic fibroblast growth factor (bFGF)-induced neuronal differentiation, characterized by cell-body shrinkage, long neurite outgrowth, and expression of neuronal differentiation markers light and medium neurofilaments (NF). The bFGF-mediated neuronal differentiation of PC12 cells was induced through activation of mitogen-activated protein kinase (MAPK) signaling molecules [MAPK kinase 1/2 (MEK1/2), extracellular signal-regulated kinase 1/2 (ERK1/2), and p90RSK], and phosphatidylinositide 3-kinase (PI3K)/Akt signaling molecules PI3Kp110β, PI3Kp110γ, Akt, and mTOR. Inhibitors (adenosine dialdehyde and S-adenosylhomocysteine) of protein methylation suppressed bFGF-mediated neuronal differentiation of PC12 cells. PIMT-eficiency caused by PIMT-specific siRNA inhibited neuronal differentiation of PC12 cells by suppressing phosphorylation of MEK1/2 and ERK1/2 in the MAPK signaling pathway and Akt and mTOR in the PI3K/Akt signaling pathway. Therefore, these results suggested that PIMT was critical for bFGF-mediated neuronal differentiation of PC12 cells and regulated the MAPK and Akt signaling pathways.

Lysophosphatidic acid Inhibits Melanocyte Proliferation via Cell Cycle Arrest

  • Kim, Dong-Seok;Park, Seo-Hyoung;Kim, Sung-Eun;Sohn, Uy-Dong;Park, Kyoung-Chan
    • 대한약학회:학술대회논문집
    • /
    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2-2
    • /
    • pp.96.1-96.1
    • /
    • 2003
  • Lysophosphatidic acid (LPA) is a well-known mitogen in various cell types. However, we were surprised to find that LPA inhibits melanocyte proliferation. Thus, we further investigated the possible signaling pathways involved in melanocyte growth inhibition. We first examined the regulation of the three major subfamilies of mitogen-activated protein (MAP) kinases and of the Akt pathway by LPA. The activations of extracellular signal-regulated protein kinase (ERK) and c-Jun N-terminal kinase (JNK) were observed in concert with the inhibition of melanocyte proliferation by LPA, whereas p38 MAP kinase and Akt were not influenced by LPA. (omitted)

  • PDF

Membrane associated guanylate kinase inverted-3의 AKT signaling을 통한 enterovirus replication 조절 (Membrane-associated Guanylate Kinase Inverted-3 Modulates Enterovirus Replication through AKT Signaling Activation)

  • 박진호;남궁예나;임병관
    • 생명과학회지
    • /
    • 제26권10호
    • /
    • pp.1182-1188
    • /
    • 2016
  • Membrane associated guanylate kinase inverted-3 (MAGI-3)는 세포-세포 연접의 형성을 유도하는 막단백질인 membrane associated guanylate kinases (MAGUKs)의 한 종류 단백질로 140 kDa 크기를 가진다. MAGI-3는 PTEN/MMAC와 함께 협력하여 AKT/PKB의 kinase 활성을 조절하거나 MAPKs 신호전달경로로 ERK 활성을 조절로 한다. Coxsackievirus B3 (CVB3)는 가장 일반적으로 감염된 심근 세포 사멸으로 인한 바이러스성 심근염을 일으키는 enterovirus에 속하는 인간 병원체이다. 이전 연구에서 protein kinase B (PKB, 또는 AKT)와 extracellular signal-regulated kinases 1/2 (ERK1/2)의 활성은 HeLa 세포에서 CVB3 복제를 위해 필수적임이 밝혀졌다. 본 연구에서 enterovirus 복제와 AKT 신호 활성조절에서 MAGI-3의 역할을 검증하였다. MAGI-3-Flag의 발현은 CVB3 감염 후에 AKT 신호 활성과 viral capsid protein VP1의 발현을 유도하였으며 이는 MAGI-3에 의한 enterovirus 증식 조절을 보여주었다. AKT 신호는 MAGI-3 발현에 의해 enterovirus 감염과 함께 유의하게 증가하고 이것은 감염 바이러스의 증식을 활발하게 유도함을 확인하였다. 이 결과는 MAGI-3의 발현은 AKT와 ERK의 활성이 증가하고, 더 나아가 바이러스 증식과 연관이 있다는 것을 입증한다. MAGI-3는 아마도 AKT 신호 조절을 통해 enterovirus 증식 조절에 중요한 역할을 할 것으로 생각된다.