• 제목/요약/키워드: Cancer biology

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벼메뚜기(Oxya chinensis sinuosa Mistshenko) 분말 섭취와 유산소성 운동훈련에 의한 마우스의 에너지 대사 변화 (Effects of Grasshopper (Oxya chinensis sinuosa Mistshenko) Powder and Aerobic Exercise on Energy Metabolism in ICR Mice)

  • 김이슬;전병덕;최석립;김우철;이동운;류승필
    • 한국응용곤충학회지
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    • 제55권1호
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    • pp.53-62
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    • 2016
  • 본 연구의 목적은 벼메뚜기(Oxya chinensis sinuosa) 분말 섭취가 유산소성 운동훈련(트레드밀 달리기)의 병행 유무에 의해 ICR 생쥐의 에너지 대사를 증가시키는지를 알아보고자 하는 것이다. 이 목적을 달성하기 위하여, 28 마리의 ICR 생쥐를 보통식 대조군(CON), 보통식 대조군으로서 운동훈련 병행군(COEX), 벼메뚜기 분말이 혼합된 사료 섭취군(GH), 그리고 벼메뚜기 분말이 혼합된 사료를 섭취함과 동시에 운동훈련을 병행군(GHEX)으로 구분하였다. 벼메뚜기 분말 사료섭취 및 운동은 6주간 진행하였다. 체중증가율은 유의하지 않았다. 지방량은 GH와 GHEX에서 유의하게 감소하였다. 혈중 glutamic oxaloacetic transaminase와 glutamic pyruvic transaminase 수준은 처치 집단간 변화가 없었다. 제2형 당수송체 및 제4형 당수송체는 처치 집단간 유의한 차이가 없었다. GHEX의 fibronectin type III domain-containing protein 5 단백질 발현량이 가장 높았다. AMP-activated protein kinase 단백질 수준은 GHEX에서 유의하게 증가하였다. Glycogen synthase kinase 3 beta 단백질 발현량은 GHEX가 CON과 비교할 때 감소하였다. 이러한 결과들은 벼메뚜기 분말을 섭취하면서 지구성 운동훈련을 하는 경우에 에너지 대사에 영향을 준다는 것을 제시하고 있다.

Proteomic Analysis and the Antimetastatic Effect of N-(4methyl)phenyl-O-(4-methoxy) phenyl-thionocarbamate-Induced Apoptosis in Human Melanoma SK-MEL-28 cells

  • Choi Su-La;Choi Yun-Sil;Kim Young-Kwan;Sung Nack-Do;Kho Chang-Won;Park Byong-Chul;Kim Eun-Mi;Lee Jung-Hyung;Kim Kyung-Mee;Kim Min-Yung;Myung Pyung-Keun
    • Archives of Pharmacal Research
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    • 제29권3호
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    • pp.224-234
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    • 2006
  • We employed human SK-MEL-28 cells as a model system to identify cellular proteins that accompany N-(4-methyl)phenyl-O-(4-methoxy)phenyl-thionocarbamate (MMTC)-induced apoptosis based on a proteomic approach. Cell viability tests revealed that SK-MEL-28 skin cancer cells underwent more cell death than normal HaCaT cells in a dose-dependent manner after treatment with MMTC. Two-dimensional electrophoresis in conjunction with matrixassisted laser desorption/ionization-time of flight (MALDI-TOF) mass spectrometry analysis or computer matching with a protein database further revealed that the MMTC-induced apoptosis is accompanied by increased levels of caspase-1, checkpoint suppressor-1, caspase-4, NF-kB inhibitor, AP-2, c-Jun-N-terminal kinase, melanoma inhibitor, granzyme K, G1/S specific cyclin D3, cystein rich protein, Ras-related protein Rab-37 or Ras-related protein Rab-13, and reduced levels of EMS (oncogene), ATP synthase, tyrosine-phosphatase, Cdc25c, 14-3-3 protein or specific structure of nuclear receptor. The migration suppressing effect of MMTC on SK-MEL-28 cell was tested. MMTC suppressed the metastasis of SK-MEL-8 cells. It was also identified that MMTC had little angiogenic effect because it did not suppress the proliferation of HUVEC cell line. These results suggest that MMTC is a novel chemotherapeutic and metastatic agents against the SK-MEL-28 human melanoma cell line.

Poly-lysine이 연결된 hEGF와 angiogenin의 융합단백질의 고체상 재접힘 (Solid-Phase Refolding of Poly-Lysine fusion Protein of hEGF and Angiogenin)

  • 박상중;류강;서창우;채영규;권오병;박승국;이은규
    • KSBB Journal
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    • 제17권2호
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    • pp.153-157
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    • 2002
  • Poly-Iysine이 tagging된 hEGF와 angiogenin(6L10ESA)의 융합단백질의 고체상 재접힘이 heparin-Sepharose colullln에서 수행되었을 때, untagging 단백질(E5h)의 기존의 액상 재접힘 방법과 비교하여 재접힘 수율은 약 13배 정도 증가하였다. 게다가 poly-Iysine tagging된angiogenin은 heparin에 친화도를 높여주므로 2.5배에서 3배 정도의 흡탁 수율이 증가한다. 재접힘 수율은 고체상 반응으로 인해 높은 재현성을 보였다. 재접힘 공정시간은 대략 8배 단축되었다. 고체상 재전힘된 단백질은 자신의 생물학적 역가를 유지하였다. 따라서 이 연구는 고체상 재접힘 방법이 분자간의 상호작용을 억제하여 응집현상을 현저히 줄였기 때문에 기인한 결과로 생각된다. 따라서 응집으로 인한 재접힘 수율이 낮은 단백질의 재접힘 긍정에 고체상 재접힘 공정을 사용하면 높은 재접힘 수율을 얻을 수 있다.

Molecular Mechanisms of 5-Azacytidine-Induced Trifluorothymidine-Resistance In Chinese Hamster V79 Cells

  • Jin Kyong-Suk;Lee Yong-Woo
    • 대한의생명과학회지
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    • 제11권2호
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    • pp.165-173
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    • 2005
  • A potent demethylating agent, 5-Azacytidine (5-AzaC) has been widely used as in many studies on DNA methylation, regulation of gene expression, and cancer biology. The mechanisms of the demethylating activity were known to be formation of complex between DNA and DNA methyltransferase (MTase), which depletes cellular MTase activity. However, 5-AzaC can also induce hypermethylation of a transgene in a transgenic cell line, G12 cells and it was explained as a result of defense mechanisms to inactivate foreign gene(s) somehow. This finding evoked the question that whether the phenomenon of hypermethylation induced by 5-AzaC is limited to the transgene or it can be occurred in endogenous gene(s). In order to answer the question, mutagenicity test of 5-AzaC and molecular characterization of mutants obtained from the test were performed using an endogenous gene, thymidine kinase (tk) in Chinese hamster V79 cells. When V79 and V79-J3 subclone cells were treated with 1, 2.5 ,5, $10{\mu}M$ of 5-AzaC for 48 hours, their maximum mutant frequencies were revealed as $6\times10^{-3}\;at\;5{\mu}M$(350-fold induction over background) and $8\times10^{-3}\;at\;2.5{\mu}M$ (l,800-fold induction over background) respectively. Since the induction rates were too high to be induced by true mutations, many trifluorothymidine (TFT)-resistant $(TFT^R)$ cells were subjected to Northern blot analysis to check the presence of tk transcripts. Surprisingly, all clones tested possessed the transcripts in a similar level, that implicates the $TFT^R$ phenotype induced by 5-AzaC has not given rise to hypermethylation of the gene in spite of unusually high mutation frequency. In addition, it has shown that the TK activity in the pool of 5-AzaC-induced $TFT^R$ cells has about a half of that in spontaneously-induced $TFT^R$ cells or in non-selected parental V79-J3 cells. This result suggests that the mechanism(s) underlying the TFT-resistance between spontaneously occurred and 5-AzaC-induced cells may be different. These findings have shown that the $TFT^R$ phenotype induced by 5-AzaC has not given rise to hypermethylation of the tk gene, and 5-AzaC may be induced by one or combined pathways among many drug resistance mechanisms. The exact mechanisms for the 5-AzaC-induced $TFT^R$ phenotype remain to elucidate.

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Sensing the Stress: the Role of the Stress-activated p38/Hog1 MAPK Signalling Pathway in Human Pathogenic Fungus Cryptococcus neoformans

  • Bahn, Yong-Sun;Heitman, Joseph
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2007년도 International Meeting of the Microbiological Society of Korea
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    • pp.120-122
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    • 2007
  • All living organisms use numerous signal-transduction pathways to sense and respond to their environments and thereby survive and proliferate in a range of biological niches. Molecular dissection of these signalling networks has increased our understanding of these communication processes and provides a platform for therapeutic intervention when these pathways malfunction in disease states, including infection. Owing to the expanding availability of sequenced genomes, a wealth of genetic and molecular tools and the conservation of signalling networks, members of the fungal kingdom serve as excellent model systems for more complex, multicellular organisms. Here, we employed Cryptococcus neoformans as a model system to understand how fungal-signalling circuits operate at the molecular level to sense and respond to a plethora of environmental stresses, including osmoticshock, UV, high temperature, oxidative stress and toxic drugs/metabolites. The stress-activated p38/Hog1 MAPK pathway is structurally conserved in many organisms as diverse as yeast and mammals, but its regulation is uniquely specialized in a majority of clinical Cryptococcus neoformans serotype A and D strains to control differentiation and virulence factor regulation. C. neoformans Hog1 MAPK is controlled by Pbs2 MAPK kinase (MAPKK). The Pbs2-Hog1 MAPK cascade is controlled by the fungal "two-component" system that is composed of a response regulator, Ssk1, and multiple sensor kinases, including two-component.like (Tco) 1 and Tco2. Tco1 and Tco2 play shared and distinct roles in stress responses and drug sensitivity through the Hog1 MAPK system. Furthermore, each sensor kinase mediates unique cellular functions for virulence and morphological differentiation. We also identified and characterized the Ssk2 MAPKKK upstream of the MAPKK Pbs2 and the MAPK Hog1 in C. neoformans. The SSK2 gene was identified as a potential component responsible for differential Hog1 regulation between the serotype D sibling f1 strains B3501 and B3502 through comparative analysis of their meiotic map with the meiotic segregation of Hog1-dependent sensitivity to the fungicide fludioxonil. Ssk2 is the only polymorphic component in the Hog1 MAPK module, including two coding sequence changes between the SSK2 alleles in B3501 and B3502 strains. To further support this finding, the SSK2 allele exchange completely swapped Hog1-related phenotypes between B3501 and B3502 strains. In the serotype A strain H99, disruption of the SSK2 gene dramatically enhanced capsule biosynthesis and mating efficiency, similar to pbs2 and hog1 mutations. Furthermore, ssk2, pbs2, and hog1 mutants are all hypersensitive to a variety of stresses and completely resistant to fludioxonil. Taken together, these findings indicate that Ssk2 is the critical interface protein connecting the two-component system and the Pbs2-Hog1 pathway in C. neoformans.

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진피 메탄올 추출물의 활성산소종 생성을 통한 인체 백혈병 세포의 apoptosis 유발 (Induction of Apoptosis by Citri Pericarpium Methanol Extract through Reactive Oxygen Species Generation in U937 Human Leukemia Cells)

  • 김가희;이문희;한민호;박철;홍수현;최영현
    • 생명과학회지
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    • 제23권8호
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    • pp.1057-1063
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    • 2013
  • 진피(Citri Pericarpium)의 항암작용 기전 해석을 위하여 U937 백혈병 세포의 apoptosis 유발에 미치는 메탄올 추출물(EMCP)의 영향을 조사하였으며, apoptosis 조절에 중요한 몇 가지 유전자들의 발현 및 활성 변화, ROS의 생성 변화를 조사하였다. EMCP 처리에 의한 U937 세포의 증식 억제는 apoptosis 유도와 연관성이 있음을 DAPI 염색을 통한 apoptotic body 출현의 증가 및 Flow cytometry 분석에 의한 Sub-G1기 세포 빈도의 증가로 확인하였다. EMCP 처리에 의한 apoptosis 유도에서 Bax 발현 증가, caspases의 활성 및 PARP의 단편화 등이 동반되었으며, ROS 생성의 증가와 연관성이 있었다. 산화적 손상에 대해 세포나 조직을 보호하는 역할을 하는 것으로 알려진 세포 내 항산화 효소인 HO-1의 발현이 EMCP의 처리에 의해 증가되었으나 ROS 생성 억제제인 NAC의 전처리에 의해 감소된 HO-1의 발현은 전사인자인 Nrf2의 핵으로의 이동 억제와 관련되어 있었다. 이상의 결과에서 EMCP 처리에 의한 U937 세포의 apoptosis 유발에는 ROS 생성의 증가와 pNrf2에 의해 조절되는 HO-1의 발현 증가가 중요한 기전으로 작용한다는 것을 알 수 있었다. 이러한 자료는 진피의 항암기전 해석을 이해하는데 중요한 기초자료로서 활용될 수 있을 것으로 생각된다.

β-lapachone-Induced Apoptosis of Human Gastric Carcinoma AGS Cells Is Caspase-Dependent and Regulated by the PI3K/Akt Pathway

  • Yu, Hai Yang;Kim, Sung Ok;Jin, Cheng-Yun;Kim, Gi-Young;Kim, Wun-Jae;Yoo, Young Hyun;Choi, Yung Hyun
    • Biomolecules & Therapeutics
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    • 제22권3호
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    • pp.184-192
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    • 2014
  • ${\beta}$-lapachone is a naturally occurring quinone that selectively induces apoptotic cell death in a variety of human cancer cells in vitro and in vivo; however, its mechanism of action needs to be further elaborated. In this study, we investigated the effects of ${\beta}$-lapachone on the induction of apoptosis in human gastric carcinoma AGS cells. ${\beta}$-lapachone significantly inhibited cellular proliferation, and some typical apoptotic characteristics such as chromatin condensation and an increase in the population of sub-G1 hypodiploid cells were observed in ${\beta}$-lapachone-treated AGS cells. Treatment with ${\beta}$-lapachone caused mitochondrial transmembrane potential dissipation, stimulated the mitochondria-mediated intrinsic apoptotic pathway, as indicated by caspase-9 activation, cytochrome c release, Bcl-2 downregulation and Bax upregulation, as well as death receptor-mediated extrinsic apoptotic pathway, as indicated by activation of caspase-8 and truncation of Bid. This process was accompanied by activation of caspase-3 and concomitant with cleavage of poly(ADP-ribose) polymerase. The general caspase inhibitor, z-VAD-fmk, significantly abolished ${\beta}$-lapachone-induced cell death and inhibited growth. Further analysis demonstrated that the induction of apoptosis by ${\beta}$-lapachone was accompanied by inactivation of the phosphatidylinositol 3-kinase (PI3K)/Akt signaling pathway. The PI3K inhibitor LY29004 significantly increased ${\beta}$-lapachone-induced apoptosis and growth inhibition. Taken together, these findings indicate that the apoptotic activity of ${\beta}$-lapachone is probably regulated by a caspase-dependent cascade through activation of both intrinsic and extrinsic signaling pathways, and that inhibition of the PI3K/Akt signaling may contribute to ${\beta}$-lapachone-mediated AGS cell growth inhibition and apoptosis induction.

Resveratrol Induces Glioma Cell Apoptosis through Activation of Tristetraprolin

  • Ryu, Jinhyun;Yoon, Nal Ae;Seong, Hyemin;Jeong, Joo Yeon;Kang, Seokmin;Park, Nammi;Choi, Jungil;Lee, Dong Hoon;Roh, Gu Seob;Kim, Hyun Joon;Cho, Gyeong Jae;Choi, Wan Sung;Park, Jae-Yong;Park, Jeong Woo;Kang, Sang Soo
    • Molecules and Cells
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    • 제38권11호
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    • pp.991-997
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    • 2015
  • Tristetraprolin (TTP) is an AU-rich elements (AREs)-binding protein, which regulates the decay of ARE-scontaining mRNAs such as proto-oncogenes, anti-apoptotic genes and immune regulatory genes. Despite the low expression of TTP in various human cancers, the mechanism involving suppressed expression of TTP is not fully understood. Here, we demonstrate that Resveratrol (3,5,4'-trihydroxystilbene, Res), a naturally occurring compound, induces glioma cell apoptosis through activation of tristetraprolin (TTP). Res increased TTP expression in U87MG human glioma cells. Res-induced TTP destabilized the urokinase plasminogen activator and urokinase plasminogen activator receptor mRNAs by binding to the ARE regions containing the 3' untranslated regions of their mRNAs. Furthermore, TTP induced by Res suppressed cell growth and induced apoptosis in the human glioma cells. Because of its regulation of TTP expression, these findings suggest that the bioactive dietary compound Res can be used as a novel anti-cancer agent for the treatment of human malignant gliomas.

황금 에탄올 추출물에 의한 인간 신장암 세포주 Caki-1의 G2/M arrest 유발 (Induction of Cell Cycle Arrest at G2/M phase by Ethanol Extract of Scutellaria baicalensis in Human Renal Cell Carcinoma Caki-1 Cells)

  • 박동일;정진우;박철;홍수현;신순식;최성현;최영현
    • 대한한의학방제학회지
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    • 제23권2호
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    • pp.199-208
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    • 2015
  • Objectives : In the present study, we investigated the effects of ethanol extract of Scutellaria baicalensis (EESB) on the progression of cell cycle in human renal cell carcinoma Caki-1 cells. Methods : The effects of EESB on cell growth and apoptosis induction were evaluated by trypan blue dye exclusion assay and flow cytometry, respectively. The mRNA and protein levels were determined by Western blot analysis and reverse transcription-polymerase chain reaction, respectively. Results : It was found that EESB treatment on Caki-1 cells resulted in a dose-dependent inhibition of cell growth and induced apoptotic cell death as detected by Annexin V-FITC staining. The flow cytometric analysis indicated that EESB resulted in G2/M arrest in cell cycle progression which was associated with the down-regulation of cyclin A expression. Our results also revealed that treatment with EESB increased the mRNA and proteins expression of tumor suppressor p53 and cyclin-dependent kinase (Cdk) inhibitor p21(WAF1/CIP1), without any noticeable changes in cyclin B1, Cdk2 and Cdc2. In addition, the incubation of cells with EESB resulted in a significant increase in the binding of p21 and Cdk2 and Cdc2. These findings suggest that EESB-induced G2/M arrest and apoptosis in Caki-1 cells is mediated through the p53-mediated upregulation of Cdk inhibitor p21. Conclusions : Taken together, these findings suggest that EESB may be a potential chemotherapeutic agent and further studies will be needed to identify the biological active compounds that confer the anti-cancer activity of S. baicalensis.

Transcription factor EGR-1 transactivates the MMP1 gene promoter in response to TNFα in HaCaT keratinocytes

  • Yeo, Hyunjin;Lee, Jeong Yeon;Kim, JuHwan;Ahn, Sung Shin;Jeong, Jeong You;Choi, Ji Hye;Lee, Young Han;Shin, Soon Young
    • BMB Reports
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    • 제53권6호
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    • pp.323-328
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    • 2020
  • Matrix metalloproteinase 1 (MMP-1), a calcium-dependent zinccontaining collagenase, is involved in the initial degradation of native fibrillar collagen. Tissue necrosis factor-alpha (TNFα) is a pro-inflammatory cytokine that is rapidly produced by dermal fibroblasts, monocytes/macrophages, and keratinocytes and regulates inflammation and damaged-tissue remodeling. MMP-1 is induced by TNFα and plays a critical role in tissue remodeling and skin aging processes. However, the regulation of the MMP1 gene by TNFα is not fully understood. We aimed to find additional cis-acting elements involved in the regulation of TNFα-induced MMP1 gene transcription in addition to the nuclear factor-kappa B (NF-κB) and activator protein 1 (AP1) sites. Assessments of the 5'-regulatory region of the MMP1 gene, using a series of deletion constructs, revealed the requirement of the early growth response protein 1 (EGR-1)-binding sequence (EBS) in the proximal region for proper transcription by TNFα. Ectopic expression of EGR-1, a zinc-finger transcription factor that binds to G-C rich sequences, stimulated MMP1 promoter activity. The silencing of EGR-1 by RNA interference reduced TNFα-induced MMP-1 expression. EGR-1 directly binds to the proximal region and transactivates the MMP1 gene promoter. Mutation of the EBS within the MMP1 promoter abolished EGR-1-mediated MMP-1 promoter activation. These data suggest that EGR-1 is required for TNFα-induced MMP1 transcriptional activation. In addition, we found that all three MAPKs, ERK1/2, JNK, and p38 kinase, mediate TNFα-induced MMP-1 expression via EGR-1 upregulation. These results suggest that EGR-1 may represent a good target for the development of pharmaceutical agents to reduce inflammation-induced MMP-1 expression.