• 제목/요약/키워드: hypoxia inducible factor-1 alpha (HIF-$1{\alpha}$)

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인삼의 염증성 사이토카인 분비 및 저산소 유도인자-1${\alpha}$ 활성화 조절 효과 (Regulatory Effect of Inflammatory Cytokines Secretion and Hypoxia-inducible $Factor-1{\alpha}$ Activation by Panax ginseng)

  • 조철원;이승희;김동웅;이성균;송봉근
    • 대한한방내과학회지
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    • 제27권4호
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    • pp.864-878
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    • 2006
  • 목적 : 인삼은 다양한 생물학적 작용이 있다. 그 중 항염증작용과 관련하여 염증성 사이토카인 분비 및 저산소 유도인자-1${\alpha}$ 활성화 조절 효과를 살펴보고자 한다. 방법 : phorbol myristate acetate (PMA)+A23187에 유도된 세포에서 염증성 cytokines 분비의 변화와 인간의 mast cell인 HMC-1 cells에서 hypoxia-inducible factor-1 (HIF-1)${\alpha}$의 작용을 관찰하였다. 결과 : PMA+A23187은 대조군과 비교해서 interleukin $(IL)-1{\beta}$, IL-6와 tumor necrosis factor $(TNF)-{\alpha}$의 분비를 증가시킨다. 또한 증가된 cytokines IL-1, IL-6, $TNF-{\alpha}$가 인삼의 처리에 의해 두드러지게 억제하는 것을 확인하였다. 인삼(5 ${\mu}g/ml$)은 $IL-1{\beta}$, IL-6, $TNF-{\alpha}$의 분비를 약 105.1${\pm}$9.7%, 95${\pm}$9.4%, 29.7${\pm}$4.5%,(P<0.05)로 최대로 억제하였고, PMA+A23187에 유도된 vascular endothelial growth factor (VEGF)와 granulocyte macrophage-colony stimulating factor (GM-CSF)의 분비를 41.3%와 75.7%로 각각 억제하였다. 그리고 저자는 인삼이 PMA+A23187로 유도된 HIF-1${\alpha}$ 발현과 HIF-1에 대해 DNA binding activity를 억제하고 있음을 관찰하였다. 결론 : 인삼이 HIF-1에서 염증반응을 억제함을 나타내고, 이는 인삼이 염증성 질환을 치료하는데 유익한 효과가 있음을 의미한다.

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Activity and Expression Pattern of NF-κB/P65 in Peripheral Blood from Hepatocellular Carcinoma Patients - Link to Hypoxia Inducible Factor -1α

  • Gaballah, Hanaa Hibishy;Zakaria, Soha Said;Ismail, Saber Abdelrahman
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권16호
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    • pp.6911-6917
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    • 2014
  • Background: Hepatocellular carcinoma is a complex and heterogeneous tumor with poor prognosis due to frequent intrahepatic spread and extrahepatic metastasis. The molecular mechanisms underlying HCC pathogenesis still remain obscure. Objectives: We aimed to investigate the abundance and the DNA binding activity of nuclear factor kappa B/p65 subunit in peripheral blood mononuclear cells from patients with HCC and to assess its prognostic significance and association with hypoxia inducible factor one alpha (HIF-$1{\alpha}$) in blood. Subjects and methods: This study was carried out on 40 patients classified equally into liver cirrhosis (group I) and HCC (group II), in addition to 20 healthy volunteers (group III). All groups were subjected to measurement of NF-${\kappa}B$/P65 subunit expression levels by real time-PCR, and DNA binding activity was evaluated by transcription factor binding immunoassay. Serum HIF-$1{\alpha}$ levels were estimated by enzyme-linked immunosorbent assay (ELISA). Significant increase of both the expression level and DNA binding activity of NF-${\kappa}B$/P65 subunit together with serum HIF-1 alpha levels was noted in HCC patients compared to liver cirrhosis and control subjects, with significant positive correlation with parameters for bad prognosis of HCC. In conclusion, NF-${\kappa}B$ signaling is activated in HCC and associated with disease prognosis and with high circulating levels of HIF-1 alpha.

Suppression of HIF-1α by Valproic Acid Sustains Self-Renewal of Mouse Embryonic Stem Cells under Hypoxia In Vitro

  • Lee, Hyo-Jong;Kim, Kyu-Won
    • Biomolecules & Therapeutics
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    • 제20권3호
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    • pp.280-285
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    • 2012
  • The developing embryo naturally experiences relatively low oxygen conditions in vivo. Under in vitro hypoxia, mouse embryonic stem cells (mESCs) lose their self-renewal activity and display an early differentiated morphology mediated by the hypoxia-inducible factor-$1{\alpha}$ (HIF-$1{\alpha}$). Previously, we demonstrated that histone deacetylase (HDAC) is activated by hypoxia and increases the protein stability and transcriptional activity of HIF-$1{\alpha}$ in many human cancer cells. Furthermore HDAC1 and 3 mediate the differentiation of mECSs and hematopoietic stem cells. However, the role of HDACs and their inhibitors in hypoxia-induced early differentiation of mESCs remains largely unknown. Here, we examined the effects of several histone deacetylase inhibitors (HDACIs) on the self-renewal properties of mESCs under hypoxia. Inhibition of HDAC under hypoxia effectively decreased the HIF-$1{\alpha}$ protein levels and substantially improved the expression of the LIF-specific receptor (LIFR) and phosphorylated-STAT3 in mESCs. In particular, valproic acid (VPA), a pan HDACI, showed dramatic changes in HIF-$1{\alpha}$ protein levels and LIFR protein expression levels compared to other HDACIs, including sodium butyrate (SB), trichostatin A (TSA), and apicidin (AP). Importantly, our RT-PCR data and alkaline phosphatase assays indicate that VPA helps to maintain the self-renewal activity of mESCs under hypoxia. Taken together, these results suggest that VPA may block the early differentiation of mESCs under hypoxia via the destabilization of HIF-$1{\alpha}$.

Novel Dioxygenases, HIF-α Specific Prolyl-hydroxylase and Asparanginyl-hydroxylase: O2 Switch for Cell Survival

  • Park, Hyun-Sung
    • Toxicological Research
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    • 제24권2호
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    • pp.101-107
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    • 2008
  • Studies on hypoxia-signaling pathways have revealed novel Fe(II) and $\alpha$-ketoglutarate-dependent dioxygenases that hydroxylate prolyl or asparaginyl residues of a transactivator, Hypoxia-Inducible $Factor-\alpha(HIF-\alpha)$ protein. The recognition of these unprecedented dioxygenases has led to open a new paradigm that the hydroxylation mediates an instant post-translational modification of a protein in response to the changes in cellular concentrations of oxygen, reducing agents, or $\alpha$-ketoglutarate. Activity of $HIF-\alpha$ is repressed by two hydroxylases. One is $HIF-\alpha$ specific prolyl-hydroxylases, referred as prolyl-hydroxylase domain(PHD). The other is $HIF-\alpha$ specific asparaginyl-hydroxylase, referred as factor-inhibiting HIF-1(FIH-1). The facts (i) that many dioxygenases commonly use molecular oxygen and reducing agents during detoxification of xenobiotics, (ii) that detoxification reaction produces radicals and reactive oxygen species, and (iii) that activities of both PHD and FIH-1 are regulated by the changes in the balance between oxygen species and reducing agents, imply the possibility that the activity of $HIF-\alpha$ can be increased during detoxification process. The importance of $HIF-\alpha$ in cancer and ischemic diseases has been emphasized since its target genes mediate various hypoxic responses including angiogenesis, erythropoiesis, glycolysis, pH balance, metastasis, invasion and cell survival. Therefore, activators of PHDs and FIH-1 can be potential anticancer drugs which could reduce the activity of HIF, whereas inhibitors, for preventing ischemic diseases. This review highlights these novel dioxygenases, PHDs and FIH-1 as specific target against not only cancers but also ischemic diseases.

Hypoxia-Inducible Factor-1 Alpha Stabilization in Human Macrophages during Leishmania major Infection Is Impaired by Parasite Virulence

  • Ben-Cheikh, Ali;Bali, Aymen;Guerfali, Fatma Z;Atri, Chiraz;Attia, Hanene;Laouini, Dhafer
    • Parasites, Hosts and Diseases
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    • 제60권5호
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    • pp.317-325
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    • 2022
  • Hypoxia-inducible factor-1 alpha (HIF-1α) is one of the master regulators of immune and metabolic cellular functions. HIF-1α, a transcriptional factor whose activity is closely related to oxygen levels, is a target for understanding infectious disease control. Several studies have demonstrated that HIF-1α plays an important role during the infectious process, while its role in relation to parasite virulence has not been addressed. In this work, we studied the expression levels of HIF-1α and related angiogenic vascular endothelial growth factor A (VEGF-A) in human macrophages infected with promastigotes of hypo- or hyper-virulent Leishmania major human isolates. L. major parasites readily subverted host macrophage functions for their survival and induced local oxygen consumption at the site of infection. In contrast to hypo-virulent parasites that induce high HIF-1α expression levels, hyper-virulent L. major reduced HIF-1α expression in macrophages under normoxic or hypoxic conditions, and consequently impeded the expression of VEGF-A mRNA. HIF-1α may play a key role during control of disease chronicity, severity, or outcome.

Panax Ginseng inhibited HIF-1a activation and inflammatory cytokine in HMC-1 cells activated by phorbol myristate acetate and A23187

  • Choi, In-Young;Jeong, Hyun-Ja;An, Hyo-Jin;Kang, Tae-Hee;Zo, Chul-Won;Song, Bong-Keun;Park, Eun-Jeong;Kim, Eun-Cheol;Um, Jae-Young;Kim, Hyung-Min;Hong, Seung-Heon
    • Advances in Traditional Medicine
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    • 제8권4호
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    • pp.440-447
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    • 2008
  • This study investigated the role of Panax ginseng (PG) on the phorbol myristate acetate (PMA) + calcium ionophore A23187-induced hypoxia-inducible factor-$1{\alpha}$ (HIF-$1{\alpha}$) activation, phosphorylation of the extracellular signal-regulated kinase (ERK), and inflammatory cytokine production from the human mast cell line, HMC-1. HIF-$1{\alpha}$ and phosphorylation of ERK were observed by Western blotting. The inflammatory cytokine production was determined by enzyme-linked immunosorbent assay. PG inhibited the PMA+A23187-induced HIF-$1{\alpha}$ expression and the subsequent production of vascular endothelial growth factor. In addition, PG suppressed PMA + A23187-induced phosphorylation of ERK. We also show that the increased cytokines interleukin (IL)-$1{\beta}$, IL-6, and tumour necrosis factor-${\alpha}$ level was significantly inhibited by treatment of PG. In the present study, we report for the first time that PG is an inhibitor of HIF-$1{\alpha}$ and cytokines on the mast cell-mediated inflammatory responses.

Hypoxia-induced Angiogenesis during Carcinogenesis

  • 최규실;배문경;정주원;문효은;김규원
    • BMB Reports
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    • 제36권1호
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    • pp.120-127
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    • 2003
  • The formation of new blood vessels, angiogenesis, is an essential process during development and disease. Angiogenesis is well known as a crucial step in tumor growth and progression. Angiogenesis is induced by hypoxic conditions and regulated by the hypoxia-inducible factor 1 (HIF-1). The expression of HIF-1 correlates with hypoxia-induced angiogenesis as a result of the induction of the major HIF-1 target gene, vascular endothelial cell growth factor (VEGF). In this review, a brief overview of the mechanism of angiogenesis is discussed, focusing on the regulatory processes of the HIF-1 transcription factor. HIF-1 consists of a constitutively expressed HIF-1 beta(HIF-1β) subunit and an oxygen-regulated HIF-1 alpha(HIF-1α) subunit. The stability and activity of HIF-1α are regulated by the interaction with various proteins, such as pVHL, p53, and p300/CBP as well as by post-translational modifications, hydroxylation, acetylation, and phosphorylation. It was recently reported that HIF-1α binds a co-activator of the AP-1 transciption factor, Jab-1, which inhibits the p53-dependent degradation of HIF-1 and enhances the transcriptional activity of HIF-1 and the subsequent VEGF expression under hypoxic conditions. ARD1 acetylates HIF-1α and stimulates pVHL-mediated ubiquitination of HIF-1α. With a growing knowledge of the molecular mechanisms in this field, novel strategies to prevent tumor angiogenesis can be developed, and form these, new anticancer therapies may arise.

Human selenium binding protein-1 (hSP56) is a negative regulator of HIF-1α and suppresses the malignant characteristics of prostate cancer cells

  • Jeong, Jee-Yeong;Zhou, Jin-Rong;Gao, Chong;Feldman, Laurie;Sytkowski, Arthur J.
    • BMB Reports
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    • 제47권7호
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    • pp.411-416
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    • 2014
  • In the present study, we demonstrate that ectopic expression of 56-kDa human selenium binding protein-1 (hSP56) in PC-3 cells that do not normally express hSP56 results in a marked inhibition of cell growth in vitro and in vivo. Down-regulation of hSP56 in LNCaP cells that normally express hSP56 results in enhanced anchorage-independent growth. PC-3 cells expressing hSP56 exhibit a significant reduction of hypoxia inducible protein (HIF)-$1{\alpha}$ protein levels under hypoxic conditions without altering HIF-$1{\alpha}$ mRNA (HIF1A) levels. Taken together, our findings strongly suggest that hSP56 plays a critical role in prostate cells by mechanisms including negative regulation of HIF-$1{\alpha}$, thus identifying hSP56 as a candidate anti-oncogene product.

INSULIN AND HYPOXIA INDUCE VEGF AND GLYCOLITIC ENZYMES VIA DIFFERENT SIGNALING PATHWAYS

  • Park, Youngyeon;Park, Hyunsung
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2001년도 International Symposium on Dietary and Medicinal Antimutgens and Anticarcinogens
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    • pp.199-199
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    • 2001
  • Both hypoxia and insulin induce same target genes including vascular endothelial growth factor (VEGF), glycolitic enzymes and glucose transporters. However these two signals eventually trigger quite different metabolic pathways. Hypoxia induces glycolysis for anaerobic ATP production, while insulin increase glycolysis for lipogenesis and energy storage. Hypoxia-induced gene expression is mediated by Hypoxia-inducible Factorl (HIF-1) that consists of HIF-1 $\alpha$ and $\beta$ subunit.(omitted)

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