• 제목/요약/키워드: cytosol

검색결과 475건 처리시간 0.025초

Analysis of Genes Regulated by HSP90 Inhibitor Geldanamycin in Neurons

  • ;;권오유
    • 대한의생명과학회지
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    • 제15권1호
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    • pp.97-99
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    • 2009
  • Geldanamycin is a benzoquinone ansamycin antibiotic that binds to cytosol HSP90 (Heat Shock Protein 90) and changes its biological function. HSP90 is involved in the intracellular important roles for the regulation of the cell cycle, cell growth, cell survival, apoptosis, angiogenesis and oncogenesis. To identify genes expressed during geldanamycin treatment against neurons of rats (PC12 cells), DNA microarray method was used. We have isolated 2 gene groups (up-or down-regulated genes) which are geldanamycin differentially expressed in neurons. Granzyme B is the gene most significantly increased among 204 up-regulated genes (more than 2 fold over-expression) and Chemokine (C-C motif) ligand 20 is the gene most dramatically decreased among 491 down-regulated genes (more than 2 fold down-expression). The gene increased expression of Cxc110, Cyp11a1, Gadd45a, Gja1, Gpx2, Ifua4, Inpp5e, Sox4, and Stip1 are involved stress-response gene, and Cryab, Dnaja1, Hspa1a, Hspa8, Hspca, Hspcb, Hspd1, Hspd1, and Hsph1 are strongly associated with protein folding. Cell cycle associated genes (Bc13, Brca2, Ccnf, Cdk2, Ddit3, Dusp6, E2f1, Illa, and Junb) and inflammatory response associated genes (Cc12, Cc120, Cxc12, Il23a, Nos2, Nppb, Tgfb1, Tlr2, and Tnt) are down-regulated more than 2 times by geldanamycin treatment. We found that geldanamycin is related to expression of many genes associated with stress response, protein folding, cell cycle, and inflammation by DNA microarray analysis. Further experimental molecular studies will be needed to figure out the exact biological function of various genes described above and the physiological change of neuronal cells by geldanamycin. The resulting data will give the one of the good clues for understanding of geldanamycin under molecular level in the neurons.

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Involvement of Cytosolic Phospholipase $A_2$ in Nerve Growth Factor-Mediated Neurite Outgrowth of PC12 Cells

  • Choi, Soon-Wook;Yu, Eun-Ah;Lee, Young-Seek;Yoo, Young-Sook
    • BMB Reports
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    • 제33권6호
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    • pp.525-530
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    • 2000
  • The nerve growth factor (NGF) induces neuronal differentiation and neurite outgrowth of PC12 cells, whereas epidermal growth factors (EGF) stimulate growth and proliferation of the cells. In spite of this difference, NGF-or EGF-treated PC12 cells share various properties in cellular-signaling pathways. These include the activation of the phosphoinositide (PI)-3 kinase, 70 kDa S6 kinase, and in the mitogen-activated protein (MAP) kinase pathway, following the binding of these growth factors to intrinsic receptor tyrosine kinases (RTKs). Therefore, many studies have been attempted to access the critical signaling events in determining the differentiation and proliferation of PC12 cells. In this study, we investigated the cytosolic phospholipase $A_2$ ($cPLA_2$) in neurite behavior in order to identify the differences of signaling pathways between the NGF-induced differentiation and the EGF-induced proliferation of PC12 cells. We have showed here that the $cPLA_2$ was translocated from cytosol to membrane only in NGF-treated cells. We also demonstrated that this translocation is associated with NGF-induced activation of phospholipase $C-{\gamma}(PLC-{\gamma})$, which elevates intracellular $Ca^{2+}$ concentration. These results reveal that the translocation of $cPLA_2$ may be a requisite event in the neuronal differentiation of PC12 cells. Various phospholipase inhibitors were used to confirm the importance of these enzymes in the differentiation of PC12 cells. Neomycin B, a PLC inhibitor, dramatically inhibited the neurite outgrowth, and two distinct $PLA_2$ inhibitors, 4-bromophenacyl bromide (BPB) and arachidonyltrifluoro-methyl ketone ($AACOCF_3$) also suppressed the neurite outgrowth of the cells, as well Taken together, these data indicated that $cPLA_2$ is involved in NGF-induced neuronal differentiation and neurite outgrowth of PC12 cells.

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보두산에 의한 사람 위암 세포주 SNU-1의 세포사멸 경로 (Apoptotic pathway of SNU-1, human gastric cancer cell line, by Bodusan)

  • 이재은;윤현정;이영태;배창욱;전현숙;박선동
    • 대한본초학회지
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    • 제21권1호
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    • pp.33-42
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    • 2006
  • Objectives : The purpose of this study was to investigate the anticancer effects of Bodusan (BDS) on SNU-1 cells, a human gastric cancer cell line. Methods : To study the cytotoxic effect of BDS on SNU-1 cells, the cells were treated with various concentrations of BDS and then cell viability was determined by XTT reduction method and trypan blue exclusion assay. The typical signs of apoptosis, was examined by western blot analysis. BDS-induced MAPK activation was also examined by Western blot for phosphorylated ERK and p38. Results : BDS reduced proliferation of SNU-1 cells in a dose-dependent manner and decreased procaspase 3 level in a dose-dependent manner and induced the clevage of PARP at concentration > 500 ${\mu}g/ml$. BDS also triggered the mitochondrial apoptotic signaling by increasing the release of cytochrome C from mitochondria to cytosol and reducing the level of anti-apoptotic Bcl-2. BDS significantly decreased ERK phosphorylation and increased p38 phosphorylation in a dose-dependent manner. Futhermore, BDS treatment up-regulated p53 and p21waf expression in a dose-dependent manner. Conclusion : BDS-induced apoptosis is MAP kinase-dependent apoptoric pathway and arrested SNU-1 cells at the G0/G1 of cell cycle. These results suggest that BDS is potentially useful as a chemotherapeutic agent in human gastric cancer.

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In-Jin-Ho-Tang as a potential anti-cancer drug by induction of apoptosis in HepG2 cells

  • Yun, Hyun-Jeong;Heo, Sook-Kyoung;Park, Won-Hwan;Park, Sun-Dong
    • Advances in Traditional Medicine
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    • 제9권2호
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    • pp.106-114
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    • 2009
  • Hepatocellular carcinoma is the world's most common primary malignant tumor of the liver. In-Jin-ho-Tang (IJHT) has been used as a traditional Chinese herbal medicine since ancient times, and today it is widely used as a medication for jaundice associated with inflammation of the liver. In-Jin-Ho-Tang is a drug preparation consisting of three herbs: Artemisiae Capillaris Herba (Artemisia capillaries $T_{HUNS}$, Injinho in Korean), Gardeniae Fructus (Gardenia jasminodes $E_{LLIS}$, Chija in Korean) and Rhei radix et rhizoma (Rheum palmatum L., Daehwang in Korean). This study investigated whether or not methanol extract of IJHT could induce HepG2 cancer cell death. Cytotoxic activity of IJHT on HepG2 cells was measured using an XTT assay, with an $IC_{50}$ value of $700{\mu}g/ml$ at 24 h Apoptosis induction by IJHT in HepG2 cells was verified by the cleavage of poly ADP-ribose polymerase, and a decrease in procaspase-3, -8, -9. Treatment of IJHT resulted in the release of cytochrome c into cytosol, loss of mitochondrial membrane potential (${\Delta}{\Psi}_m$), decrease in anti-apoptotic Bcl-2, and an increase in pro-apoptotic Bax expression. Thus, IJHT induced apoptosis in HepG2 cells via activation of caspase and mitochondria pathway. These results indicate that IJHT has potential as an anti-cancer agent.

Streptozotocin 유발 제1형 당뇨 쥐의 혈당강하에 대한 천연 기능성 소재 혼합물의 효과(II) (Effect of Natural Functional Mixture on the Descent of Blood Glucose Level in Streptozotocin-Induced Diabetic(type I) Rats(II))

  • 손동화;김대곤;이수진
    • 한국조리학회지
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    • 제17권1호
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    • pp.238-247
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    • 2011
  • 본 실험은 streptozotocin(STZ)으로 당뇨병이 유도된 쥐의 혈장 요소질소량, 지질수준 및 간 지질수준, 간 효소 활성에 천연 기능성 소재 화합물이 미치는 영향을 평가하는 것이 목적이었다. 총 콜레스테롤은 기능성 소재를 보충 급여한 실험군에서 유의적으로 낮은 수치(70.69 mg/dL)를 보였으며, 이로 인해 총 콜레스테롤에 대한 HDL 콜레스테롤의 비율이 증가(42.6에서 51.5%로) 하였다. 그러나, SOD, CAT, GSH-Px, GSH 및 LPO 활성에는 변화가 없었으며, 이는 기능성 소재의 보충 급여가 당뇨 쥐의 산화적 스트레스에는 큰 영향을 주지 않음을 의미한다. 보충 급여가 당뇨 쥐의 AST 수치 감소시켰으며, 이는 천연 기능성 소재 화합물 섭취가 간 기능 손상을 입은 STZ 유발 당뇨 쥐에 회복작용을 함을 알 수 있었다.

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Fusarium graminearum의 ZEB2 동형단백질에 의한 지랄레논 생합성 자가조절

  • Park, Ae Ran;Lee, Yin-Won
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2016년도 춘계학술대회 및 임시총회
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    • pp.27-27
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    • 2016
  • The ascomycete fungus Fusarium graminearum is the most common pathogen of Fusarium head blight (FHB), a devastating disease for major cereal crops worldwide. FHB causes significant crop losses by reducing grain yield and quality as well as contaminating cereals with trichothecenes and zearalenone (ZEA) that pose a serious threat to animal health and food safety. ZEA is a causative agent of hyperestrogenic syndrome in mammals and can result in reproductive disorders in farm animals. In F. graminearum, the ZEA biosynthetic cluster is composed of four genes, PKS4, PKS13, ZEB1, and ZEB2, which encode a reducing polyketide synthase, a nonreducing polyketide synthase, an isoamyl alcohol oxidase, and a transcription factor, respectively. Although it is known that ZEB2 primarily acts as a regulator of ZEA biosynthetic cluster genes, the mechanism underlying this regulation remains undetermined. In this study, two isoforms (ZEB2L and ZEB2S) from the ZEB2 gene in F. graminearum were characterized. It was revealed that ZEB2L contains a basic leucine zipper (bZIP) DNA-binding domain at the N-terminus, whereas ZEB2S is an N-terminally truncated form of ZEB2L that lacks the bZIP domain. Interestingly, ZEA triggered the induction of both ZEB2L and ZEB2S transcription. In ZEA producing condition, the expression of ZEB2S transcripts via alternative promoter usage was directly or indirectly initiated by ZEA. Physical interaction between ZEB2L and ZEB2L as well as between ZEB2L and ZEB2S was observed in the nucleus. The ZEB2S-ZEB2S interaction was detected in both the cytosol and the nucleus. ZEB2L-ZEB2L oligomers activated ZEA biosynthetic cluster genes, including ZEB2L. ZEB2S inhibited ZEB2L transcription by forming ZEB2L-ZEB2S heterodimers, which reduced the DNA-binding activity of ZEB2L. This study provides insight into the autoregulation of ZEB2 expression by alternative promoter usage and a feedback loop during ZEA production.

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교세포에서 Epigallocatechin Gallate에 의한 포스포리파제 D의 활성화 (Epigallocatechin Gallate Activates Phospholipase D in Glioma Cells)

  • Kim, Shi-Yeon;Kim, Joonmo;Min, Do-Sik
    • 생명과학회지
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    • 제13권6호
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    • pp.924-932
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    • 2003
  • 녹차의 주성분인 에피갈로 갈레이트 (EGCG)는 건강에 이로운 효과로 나타내고 있는것으로 알려져 있어 많은 주목을 받고 있는 실정이다 본 연구에서는 처음으로 EGCG가, U87사람의 교세포에서 포스포리파제 D의 효소활성을 증가시킨다는 사실을 규명하였다. EGCG에 의한 포스포리파제 D의 활성화는 포스포리파제 C효소의 특이적인 억제제와 지질분해효소 활성이 억제제 포스포리파제 \gama1$의 변이체를 이용하여 실험한 결과 세포내 칼슘에 의존적인 양상을 보였주었다. 이러한 포스포리파제 D의 활성화는 아마도 칼슘 의존성 단백질 키나아제 II (CaM kinase II)를 통하여 일어나는것으로 여겨진다. 흥미롭게도, EGCG는 포스포리파제 \gama1$를 세포질에서 세포막으로의 이동을 유도하였으며, 포스포리파제 \gama1$와 PLD1의 결합을 유도하였음을 관찰하였다. 이상의 결과들을 종합하여 볼 때, EGCG가 사람의 교세포에서 포스포리파제 \gama1$-칼슘-CaM kinase II의 신호전달 경로를 통하여 포스포리파제 D의 활성을 유도하는 것으로 사료된다.

Modulation of Mitochondrial Membrane Potential and ROS Generation by Nicotinamide in a Manner Independent of SIRT1 and Mitophagy

  • Song, Seon Beom;Jang, So-Young;Kang, Hyun Tae;Wei, Bie;Jeoun, Un-woo;Yoon, Gye Soon;Hwang, Eun Seong
    • Molecules and Cells
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    • 제40권7호
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    • pp.503-514
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    • 2017
  • Nicotinamide (NAM) plays essential roles in physiology through facilitating $NAD^+$ redox homeostasis. Importantly, at high doses, it protects cells under oxidative stresses, and has shown therapeutic effectiveness in a variety of disease conditions. In our previous studies, NAM lowered reactive oxygen species (ROS) levels and extended cellular life span in primary human cells. In the treated cells, levels of $NAD^+/NADH$ and SIRT1 activity increased, while mitochondrial content decreased through autophagy activation. The remaining mitochondria were marked with low superoxide levels and high membrane potentials (${\Delta}_{{\Psi}m}$); we posited that the treatment of NAM induced an activation of mitophagy that is selective for depolarized mitochondria, which produce high levels of ROS. However, evidence for the selective mitophagy that is mediated by SIRT1 has never been provided. This study sought to explain the mechanisms by which NAM lowers ROS levels and increases ${\Delta}_{{\Psi}m}$. Our results showed that NAM and SIRT1 activation exert quite different effects on mitochondrial physiology. Furthermore, the changes in ROS and ${\Delta}_{{\Psi}m}$ were not found to be mediated through autophagy or SIRT activation. Rather, NAM suppressed superoxide generation via a direct reduction of electron transport, and increased ${\Delta}_{{\Psi}m}$ via suppression of mitochondrial permeability transition pore formation. Our results dissected the effects of cellular $NAD^+$ redox modulation, and emphasized the importance of the $NAD^+/NADH$ ratio in the mitochondria as well as the cytosol in maintaining mitochondrial quality.

Tazarotene-Induced Gene 1 Interacts with DNAJC8 and Regulates Glycolysis in Cervical Cancer Cells

  • Wang, Chun-Hua;Shyu, Rong-Yaun;Wu, Chang-Chieh;Chen, Mao-Liang;Lee, Ming-Cheng;Lin, Yi-Yin;Wang, Lu-Kai;Jiang, Shun-Yuan;Tsai, Fu-Ming
    • Molecules and Cells
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    • 제41권6호
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    • pp.562-574
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    • 2018
  • The tazarotene-induced gene 1 (TIG1) protein is a retinoidinducible growth regulator and is considered a tumor suppressor. Here, we show that DnaJ heat shock protein family member C8 (DNAJC8) is a TIG1 target that regulates glycolysis. Ectopic DNAJC8 expression induced the translocation of pyruvate kinase M2 (PKM2) into the nucleus, subsequently inducing glucose transporter 1 (GLUT1) expression to promote glucose uptake. Silencing either DNAJC8 or PKM2 alleviated the upregulation of GLUT1 expression and glucose uptake induced by ectopic DNAJC8 expression. TIG1 interacted with DNAJC8 in the cytosol, and this interaction completely blocked DNAJC8-mediated PKM2 translocation and inhibited glucose uptake. Furthermore, increased glycose uptake was observed in cells in which TIG1 was silenced. In conclusion, TIG1 acts as a pivotal repressor of DNAJC8 to enhance glucose uptake by partially regulating PKM2 translocation.

Wogonin inhibits Cytokine-induced TARC/CCL17 Expression by Suppression of NF-${\kappa}B$ activation via p38 MAP kinase Signalning Pathways in HaCaT Keratinocytes

  • Jang, Seon-Il
    • 동의생리병리학회지
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    • 제21권4호
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    • pp.1017-1024
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    • 2007
  • Thymus and activation-regulated chemokine (TARC/CCL-17), produced by keratinocytes, is a CC chemokine known to selectively Th2 type T cells via $CCR4^+$ and is implicated in the development of atopic dermatitis (AD). TARC/CCL17 expression was induced by cytokines such as tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) and interferon-${\gamma}$ (IFN-${\gamma}$). We recently found that the wogonin, a flavone isolated from Scutellaria baicalensis, suppressed TARC expression via heme oxygenase 1 (HO1) in human keratinocytes induced with mite antigen. However, little is known about the inhibitory mechanism of wogonin on TARC/CCL-17 expression stimulated with cytokines. To investigate the inhibitory mechanism, I determined the inhibitory effects of wogonin on the activation of nuclear factor-${\kappa}B$ (NF-${\kappa}B$) and $I{\kappa}B{\alpha}$ phosphorylation, and also examined the activation of p38 MAP kainase in HaCaT keratinocytes stimulated with TNF-${\alpha}$ and IFN-${\gamma}$. Wogonin inhibited NF-${\kappa}B$-DNA complex, NF-${\kappa}B$ binding activity, and the phosphorylation of $I{\kappa}B{\alpha}$ in a dose dependent manner. Wogonin also inhibited the translocation of NF-${\kappa}B$ from cytosol to nucleus. Moreover, the phosphorylation of of p38 MAP kinase in the TNF-${\alpha}$ and IFN-${\gamma}$-stimulated HaCaT keratinocytes were suppressed by wogonin in a dose dependent manner. These results suggest that wogonin may inhibit cytokine-induced NF-${\kappa}B$ activation by $I{\kappa}B{\alpha}$ degradation via suppression of p38 MAP kinase signaling pathway in keratinocytes and modulation of wogonin signaling pathway may be beneficial for the treatment of AD.