• Title/Summary/Keyword: Hypoxia-inducible Factor-$1{\alpha}$

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비소세포 폐암에서 HIF-$1{\alpha}$의 발현: 예후 및 종양표지자와의 관련성 (Expression of Hypoxia-inducible Factor-$1{\alpha}$ in Non-small Cell Lung Cancer: Relationship to Prognosis and Tumor Biomarkers)

  • 조성래;변정훈;김종인;이봉근;천봉권
    • Journal of Chest Surgery
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    • 제39권11호
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    • pp.828-837
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    • 2006
  • 배경: 악성종양에서 신생혈관 생성 및 당분해의 증가는 저산소 상태의 미세환경을 나타내며, 이는 종양의 침습성, 전이 및 환자의 예후와 관련이 있는 것으로 알려져 있다. Hypoxia-inducible factor 1(HIF-1)는 당원 수송체, 당분해 효소, 혈관내피세포 성장인자 등의 유전자의 전사를 활성화한다고 알려져 있다. 그리고 HIF-1의 전사 활성도는 HIF-$1{\alpha}$ 아단위의 표현이 조절되는 정도에 의존한다. 비소세포 폐암에서 HIF-$1{\alpha}$의 발현이 혈관 생성능, 종양세포 증식능 및 이상형 p53의 축적 등 종양의 생물학적 특성에 미치는 영향과 환자의 수술 후 예후와의 관계를 규명하고자 한다. 대상 및 방법: 1997년부터 1999년까지 비소세포 폐암으로 진단받고 전폐절제술 혹은 폐엽절제술을 시행 받은 59명의 폐암 환자들에서 얻어진 파라핀 조직 블록을 대상으로 하였다. ABC(avidin-biotin complex) 방법에 기초한 면역조직화학검사를 이용하여 암조직과 정상조직에서 HIF-$1{\alpha}$, VEGF(vascular endothelial growth factor), p53 단백의 발현을 조사하고, Ki-67의 발현을 이용한 증식지수를 측정하였다. HIF-$1{\alpha}$ 발현과 환자의 생존기간을 포함한 임상적-병리학적 변수들과의 상관관계, VEGF, p53의 발현과 증식지수와의 상관관계를 분석하였다. 결과: HIF-$1{\alpha}$의 과발현은 40.7%(24예/59예)였다. HIF-$1{\alpha}$의 과발현은 병리학적 TNM병기(p=0.004), T병기(p=0.020), N병기(p=0.004), 림프관/혈관 침범(p=0.019) 등과 관련이 있었다. 또 혈관내피세포 성장인자의 발현(p<0.001) 및 이상형의 p53의 발현(p=0.040)과 관련성이 있었다. Kaplan-Meier 생존분석에서 HIF-$1{\alpha}$의 과발현이 있는 환자의 5년 생존울은 22%로 HIF-$1{\alpha}$의 저발현 환자의 5년 생존율 61%에 비해 불량한 생존율을 보였고, 단변량분석과 다변량분석에서 HIF-$1{\alpha}$의 발현은 불량한 예후를 나타내는 인자로 관찰되었다. 결론: 이상의 결과로 비소세포 폐암 환자에서 HIF-$1{\alpha}$의 과발현은 종양내 신생혈관의 생성과 림프절 전이와 관련이 있는 표지자로 여겨지며, 수술 후 불량한 예후를 나타내었다.

Korean Red Ginseng extract reduces hypoxia-induced epithelial-mesenchymal transition by repressing NF-κB and ERK1/2 pathways in colon cancer

  • Kim, Eui Joo;Kwon, Kwang An;Lee, Young Eun;Kim, Ju Hyun;Kim, Se-Hee;Kim, Jung Ho
    • Journal of Ginseng Research
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    • 제42권3호
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    • pp.288-297
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    • 2018
  • Background: The incidence of colorectal cancer (CRC) is increasing, with metastasis of newly diagnosed CRC reported in a large proportion of patients. However, the effect of Korean Red Ginseng extracts (KRGE) on epithelial to mesenchymal transition (EMT) in CRC is unknown. Therefore, we examined the mechanisms by which KRGE regulates EMT of CRC in hypoxic conditions. Methods: Human CRC cell lines HT29 and HCT116 were incubated under hypoxic (1% oxygen) and normoxic (21% oxygen) conditions. Western blot analysis and real-time PCR were used to evaluate the expression of EMT markers in the presence of KRGE. Furthermore, we performed scratched wound healing, transwell migration, and invasion assays to monitor whether KRGE affects migratory and invasive abilities of CRC cells under hypoxic conditions. Results: KRGE-treated HT29 and HCT116 cells displayed attenuated vascular endothelial growth factor (VEGF) mRNA levels and hypoxia-inducible $factor-1{\alpha}$ ($HIF-1{\alpha}$) protein expression under hypoxic conditions. KRGE repressed Snail, Slug, and Twist mRNA expression and integrin ${\alpha}V{\beta}6$ protein levels. Furthermore, hypoxia-repressed E-cadherin was restored in KRGE-treated cells; KRGE blocked the invasion and migration of colon cancer cells by repressing $NF-{\kappa}B$ and ERK1/2 pathways in hypoxia. Conclusions: KRGE inhibits hypoxia-induced EMT by repressing $NF-{\kappa}B$ and ERK1/2 pathways in colon cancer cells.

The MEK Inhibitor, PD98059 Blocks the Transactivation, but not the Stabilization or DNA Binding Ability, of Hypoxia-Inducible Factor-1$\alpha$

  • Hur, Eun-Seon;Chang, Keun-Young;Lee, Eun-Jung;Lee, Seung-Ki;Park, Hyun-Sung
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2001년도 International Symposium on Signal transduction in Toxicology
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    • pp.41-83
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    • 2001
  • Under low oxygen tension, cells increase the transcription of specific genes that are involved in angiogenesis, erythropoiesis and glycolysis. Hypoxia-induced gene expression primarily depends on the stabilization of the subunit of Hypoxia-Inducible Factor-1 (HIF-1), which acts as a heterodimeric transactivator.(omitted)

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Overexpression of CD44 Standard Isoform Upregulates HIF-1α Signaling in Hypoxic Breast Cancer Cells

  • Ryu, Dayoung;Ryoo, In-geun;Kwak, Mi-Kyoung
    • Biomolecules & Therapeutics
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    • 제26권5호
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    • pp.487-493
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    • 2018
  • Cluster of differentiation 44 (CD44), a cell surface receptor for hyaluronic acid (HA), is involved in aggressive cancer phenotypes. Herein, we investigated the role of the CD44 standard isoform (CD44s) in hypoxia-inducible $factor-1{\alpha}$ ($HIF-1{\alpha}$) regulation using MCF7 overexpressing CD44s (pCD44s-MCF7). When pCD44s-MCF7 was incubated under hypoxia, levels of $HIF-1{\alpha}$, vascular endothelial growth factor, and the $HIF-1{\alpha}$ response element-derived luciferase activity were significantly increased compared to those in the control MCF7. Incubation of pCD44s-MCF7 cells with HA further increased $HIF-1{\alpha}$ accumulation, and the silencing of CD44s attenuated $HIF-1{\alpha}$ elevation, which verifies the role of CD44s in $HIF-1{\alpha}$ regulation. In addition, the levels of phosphorylated extracellular signal-regulated kinase (ERK) was higher in hypoxic pCD44s-MCF7 cells, and $HIF-1{\alpha}$ accumulation was diminished by the pharmacological inhibitors of ERK. CD44s-mediated $HIF-1{\alpha}$ augmentation resulted in two functional outcomes. First, pCD44s-MCF7 cells showed facilitated cell motility under hypoxia via the upregulation of proteins associated with epithelial-mesenchymal transition, such as SNAIL1 and ZEB1. Second, pCD44s-MCF7 cells exhibited higher levels of glycolytic proteins, such as glucose transporter-1, and produced higher levels of lactate under hypoxa. As a consequence of the enhanced glycolytic adaptation to hypoxia, pCD44s-MCF7 cells exhibited a higher rate of cell survival under hypoxia than that of the control MCF7, and glucose deprivation abolished these differential responses of the two cell lines. Taken together, these results suggest that CD44s activates hypoxia-inducible $HIF-1{\alpha}$ signaling via ERK pathway, and the $CD44s-ERK-HIF-1{\alpha}$ pathway is involved in facilitated cancer cell viability and motility under hypoxic conditions.

Tissue microarray를 이용한 여러 암에서의 thymosin β4, vascular endothelial growth factor, 및 hypoxia-inducible factor-1α 발현양상 연구 (Analysis of the Expression Patterns of Thymosin β4, Vascular Endothelial Growth Factor, and Hypoxia-Inducible Factor-1α in Various Tumors Using Tissue Microarray)

  • 이보영;이승현;안병권;옥미선;차희재
    • 생명과학회지
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    • 제21권3호
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    • pp.417-423
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    • 2011
  • 사이모신 베타 4와 관련 단백질인 HIF-$1{\alpha}$ 및 VEGF의 발현을 여러 인간 암 조직에서 tissue microarray를 사용하여 조사하였다. 사이모신 베타 4는 골육중, 대장 선암, 식도 편평세포암, 신장 및 방광의 이행세포암, 폐암 및 간암에서 많이 발현되었으며 HIF-$1{\alpha}$은 비강 역위성 유두종, 폐암 및 식도 편평세포암에서 강한 발현을 보였으며 대체로 발현되는 양상이나 위치가 사이모신 베타 4와 일치하는 것으로 관찰되었다. VEGF는 암 조직에서보다 암조직에 분포된 혈관내피에서 강하게 발현되는 양상을 나타내었으며 암세포에서는 사이모신 베타 4나 HIF-$1{\alpha}$에 비해 강하게 발현되지 않았다. 위암, 간 혈관육종, 담낭 선암과 자궁 내막 선암에서 적당 수준의 VEGF 발현이 관찰되었으며 VEGF의 발현 양상 및 위치는 위암, 골육종, 지방종, 폐암, 간암, 담낭 선암, 식도 편평세포암, 대장 및 직장암, 신세포암을 포함하는 특정 암에서 사이모신 베타 4 및 HIF-$1{\alpha}$와 일치하는 것으로 관찰되었다.

HIF-1-Dependent Induction of Jumonji Domain-Containing Protein (JMJD) 3 under Hypoxic Conditions

  • Lee, Ho-Youl;Choi, Kang;Oh, Hookeun;Park, Young-Kwon;Park, Hyunsung
    • Molecules and Cells
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    • 제37권1호
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    • pp.43-50
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    • 2014
  • Jumonji domain-containing proteins (JMJD) catalyze the oxidative demethylation of a methylated lysine residue of histones by using $O_2$, ${\alpha}$-ketoglutarate, vitamin C, and Fe(II). Several JMJDs are induced by hypoxic stress to compensate their presumed reduction in catalytic activity under hypoxia. In this study, we showed that an H3K27me3 specific histone demethylase, JMJD3 was induced by hypoxia-inducible factor (HIF)-$1{\alpha}/{\beta}$ under hypoxia and that treatment with Clioquinol, a HIF-$1{\alpha}$ activator, increased JMJD3 expression even under normoxia. Chromatin immunoprecipitation (ChIP) analyses showed that both HIF-$1{\alpha}$ and its dimerization partner HIF-$1{\beta}$/Arnt occupied the first intron region of the mouse JMJD3 gene, whereas the HIF-$1{\alpha}/{\beta}$ heterodimer bound to the upstream region of the human JMJD3, indicating that human and mouse JMJD3 have hypoxia-responsive regulatory regions in different locations. This study shows that both mouse and human JMJD3 are induced by HIF-1.

Hypoxia Induces Paclitaxel-Resistance through ROS Production

  • Oh, Jin-Mi;Ryu, Yun-Kyoung;Lim, Jong-Seok;Moon, Eun-Yi
    • Biomolecules & Therapeutics
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    • 제18권2호
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    • pp.145-151
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    • 2010
  • Oxygen supply into inside solid tumor is often diminished, which is called hypoxia. Many gene transcriptions were activated by hypoxia-inducible factor (HIF)-$1{\alpha}$. Here, we investigated the effect of hypoxia on paclitaxel-resistance induction in HeLa cervical tumor cells. When HeLa cells were incubated under hypoxia condition, HIF-$1{\alpha}$ level was increased. In contrast, paclitaxel-mediated tumor cell death was reduced by the incubation under hypoxia condition. Paclitaxel-mediated tumor cell death was also inhibited by treatment with DMOG, chemical HIF-$1{\alpha}$ stabilizer, in a dose-dependent manner. A significant increase in intracellular ROS level was detected by the incubation under hypoxia condition. A basal level of cell density was increased in response to 10 nM $H_2O_2$. HIF-$1{\alpha}$ level was increased by treatment with various concentration of $H_2O_2$. The increased level of HIF-$1{\alpha}$ by hypoxia was reduced by the treatment with N-acetylcysteine (NAC), a well-known ROS scavenger. Paclitaxel-mediated tumor cell death was increased by treatment with NAC. Taken together, these findings demonstrate that hypoxia could play a role in paclitaxel-resistance induction through ROS-mediated HIF-$1{\alpha}$ stabilization. These results suggest that hypoxia-induced ROS could, in part, control tumor cell death through an increase in HIF-$1{\alpha}$ level.

Effects of HIF-1α/VP16 Hybrid Transcription Factor on Estrogen Receptor in MCF-7 Human Breast Cancer Cells

  • Cho, Jung-Yoon;Park, Mi-Kyung;Lee, Young-Joo
    • Biomolecules & Therapeutics
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    • 제13권4호
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    • pp.227-231
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    • 2005
  • The estrogen receptor (ER) is activated and degraded by estrogen. We have examined ER downregulation and activation under hypoxia mimetic conditions. Cobalt chloride induced ER downregulation at 24 h of treatment. This degradation involved hypoxia-inducible factor-1$\alpha$ (HIF-1$\alpha$) as examined by using a constitutively active form of HIF-1$\alpha$, HIF-1$\alpha$/VP16, constructed by replacing the transactivation domain of HIF-1$\alpha$ with that of VP16. Western blot analysis revealed that E2-induced ER downregulation was observed within ${\~}6h$, whereas HIF-1$\alpha$/VP16-induced ER degradation was observed within 12${\~}$20h. HIF-1$\alpha$/VP16 activated the transcription of estrogen-responsive reporter gene in the absence of estrogen. These results suggest that ER downregulation and activation under hypoxia maybe mediated in part by a HIP-1$\alpha$ expression.

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-$1{\alpha}$.

Biphasic Regulation of Mitogen-Activated Protein Kinase Phosphatase 3 in Hypoxic Colon Cancer Cells

  • Kim, Hong Seok;Kang, Yun Hee;Lee, Jisu;Han, Seung Ro;Kim, Da Bin;Ko, Haeun;Park, Seyoun;Lee, Myung-Shin
    • Molecules and Cells
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    • 제44권10호
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    • pp.710-722
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    • 2021
  • Hypoxia, or low oxygen tension, is a hallmark of the tumor microenvironment. The hypoxia-inducible factor-1α (HIF-1α) subunit plays a critical role in the adaptive cellular response of hypoxic tumor cells to low oxygen tension by activating gene-expression programs that control cancer cell metabolism, angiogenesis, and therapy resistance. Phosphorylation is involved in the stabilization and regulation of HIF-1α transcriptional activity. HIF-1α is activated by several factors, including the mitogen-activated protein kinase (MAPK) superfamily. MAPK phosphatase 3 (MKP-3) is a cytoplasmic dual-specificity phosphatase specific for extracellular signal-regulated kinase 1/2 (Erk1/2). Recent evidence indicates that hypoxia increases the endogenous levels of both MKP-3 mRNA and protein. However, its role in the response of cells to hypoxia is poorly understood. Herein, we demonstrated that small-interfering RNA (siRNA)-mediated knockdown of MKP-3 enhanced HIF-1α (not HIF-2α) levels. Conversely, MKP-3 overexpression suppressed HIF-1α (not HIF-2α) levels, as well as the expression levels of hypoxia-responsive genes (LDHA, CA9, GLUT-1, and VEGF), in hypoxic colon cancer cells. These findings indicated that MKP-3, induced by HIF-1α in hypoxia, negatively regulates HIF-1α protein levels and hypoxia-responsive genes. However, we also found that long-term hypoxia (>12 h) induced proteasomal degradation of MKP-3 in a lactic acid-dependent manner. Taken together, MKP-3 expression is modulated by the hypoxic conditions prevailing in colon cancer, and plays a role in cellular adaptation to tumor hypoxia and tumor progression. Thus, MKP-3 may serve as a potential therapeutic target for colon cancer treatment.