• 제목/요약/키워드: C-MYC gene

검색결과 81건 처리시간 0.023초

MCF-7 세포주에서 Glutathione S-Transferase K1 (hGSTK1) 과발현에 의한 방사선 내성의 유도 (Inductoin of Radioresistance by Overexpression of Glutathione S-Transferase K1 (hGSTK1) in MCF-7 Cells)

  • 김재철;신세원
    • Radiation Oncology Journal
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    • 제19권4호
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    • pp.381-388
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    • 2001
  • 목적 : 사람의 유방암 세포인 MCF-7 세포주를 대상으로 gultathione S-transferase K1 (hGSTK1) 유전자의 발현 정도 및 방사선 조사에 의한 hGSTK1 유전자의 발현 변화를 관찰하고 hGSTK1 유전자를 과발현시킴으로써 hGSTK1이 방사선 감수성에 어떤 영향을 미치는 지를 관찰하였다. 재료 및 방법 : 사람의 모유두 세포 pBluescript phagemid cDNA library로부터 선별한 hGSTK1 cDNA를 pcDNA3.1/Myc-His (+) vector에 결합시킨 후, 사람의 유방암 세포인 MCF극 세포에 이입시켰다. hGSTK1 유전자를 이입시키지 않은 MCF극 세포와 hGSTK1을 이입시킨 MCF-7 세포에 $2\~12\;Gy$의 엑스선을 조사하여 생존 분획을 비교하였다. hGSTK1 유전자를 이입시키지 않은 MCF-7 세포와 hGSTK1을 이입시킨 MCF-7 세포에서 방사선량, 분할조사 여부, 방사선 조사 후 경과 시간에 따른 hGSTK1 mRNA 발현의 차이를 보기 위하여 RT-PCR 분석을 시행하였다. 결과 : hGSTK1 유전자를 이입시키기 전의 MCF-7 세포보다 hGSTK1 유전자를 이입시킨 MCF-7 세포에서 생존 분획이 유의하게 높은 것으로 나타났다. hGSTK1 유전자를 이입시키지 않은 MCF-7 세포에서 2 Gy 생존 분획은 $0.3250{\pm}0.0319$였고, hGSTK1 유전자를 이입시킨 MCF-7 세포에서 2 Gy 생존 분획은 $0.4125{\pm}0.0325$였다 (p<0.05). 그러나 RT-PCR에 의한 hGSTK1 mRNA 분석에서는 방사선량, 분할조사 여부, 방사선 조사 후 경과 시간에 따른 발현의 차이를 볼 수 없었다. 결론 : MCF-7 세포주에서 hGSTK1의 과발현은 방사선 감수성에 영향을 미쳐서 MCF-7 세포의 생존 분획을 증가 시켰다고 볼 수 있으나 이에 대한 정확한 기전을 알기 위해서는 더 많은 연구가 필요할 것이다.

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남생이(Geoclemys reevesii) 대뇌에 있어서 raf Protein Kinase의 면역세포화학적 분포 (Immunocytochemical Localization Qf raf Protein Kinase in Cerebrum of Geoclemys reevesii (Gray))

  • 최원철;문현근
    • 한국동물학회지
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    • 제33권2호
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    • pp.141-151
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    • 1990
  • Raf protein kinases and protein kinase C는 세포질내 serine/threonine-specific protein에 속한다. 그리고 기능적인 구조와 세포내의 분포 양상은 서로 비슷하다. Raf family oncogene를 발현시키는 a-raf와 c-raf protein kinase에 대한 antibodies로써 남생이 대뇌의 raf protein kinase의 분포를 조사하였다. 일반적으로 raf protein kinase는 제한된 지역에서 즉,general pallium,hippocampal formation, pdmordiuin hippocampi,nucleus of lateral olfactory tract, basal amygdaloid nucleus와bed of stria terminalis에 나타났으며, c-raf protein kinase의 면역학적 labeling은 a-raf보다 그 범위가 넓었다. 그렇지만 labeling되는 intensity는 오히려 a-raf보다 낮았다. 그런데 a-raf에서 가장 명확한 좋은 예는 basal amygdaloid nucleus내의 구형모양의 세포인데, 이 세포는 세포질이 매우 강하게 labeling되어 지므로 ring모양과 같이 나타났다. 특히 c-raf는 protein kinase C 가 많이 나타나는 pyramidal 세포나 Purkinje세포에 많이 존재하는 것을 볼 때 protein kinase에 의하여 활성화되는 myc와 서로 상협작용을 유도한다고 제안하는 바이다.

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Apoptosis and Anti-proliferaction by Saussurea lappa and Pharbitis nil in AGS Human Gastric Cancer Cell Line

  • Ko Seong-Gyu;Oh Hee-Rah;Lee Sun-Dong;Hwang Gwi-Seo
    • 대한한방내과학회지
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    • 제24권1호
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    • pp.134-143
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    • 2003
  • Objectives : We performed this study to understand the molecular basis of the antitumor effect of Saussurea lappa, Pharbitis nil, Plantago asiatica and Taraxacum mongolicum, which have been used for cancer treatment in Korean traditional medicine. Design: We analyzed, the effect of these medicinal herbs on proliferation and apoptosis of tumor cells and its association with gene expression, We performed semi-quantitative reverse transcription-polymerase chain reaction(RT-PCR) analysis of cell cycle- and apoptosis-related genes using a gastric cancer cell line AGS. Results : Cell counting assay and $[^3H]thymidine$ uptake analysis showed that Saussurea lappa and Pharbitis nil strongly inhibit cell proliferation of AGS in a dose-dependent manner. Interestingly, gene espression assay revealed that mRNA espression levels of c-Jun, c-Fos, c-Myc, and Cyclin D1 were markedly decreased by Saussurea lappa and Pharbitis nil. Furthermore, Saussurea lappa was identified to activate expression of the p53 tumor suppressor and its downstream effector $p21^{Wafl}$, which leads to $G_1$ cell cycle arrest and apoptosis. These observations suggest that the anticancer effect of Saussurea lappa and Pharbitis nil might be associated with their regulatory capability of tumor-related gene expression.

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NDRG2 Expression Increases Apoptosis Induced by Doxorubicin in Malignant Breast Caner Cells

  • Kim, Myung-Jin;Kang, Kyeong-Ah;Yang, Young;Lim, Jong-Seok
    • Biomolecules & Therapeutics
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    • 제17권4호
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    • pp.370-378
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    • 2009
  • N-myc downstream-regulated gene 2 (NDRG2) has recently been found to be a tumor suppressor gene. Although it has been reported that NDRG2 expression in breast cancer cells decreases cell proliferation by inhibiting STAT3 activation via SOCS1 induction, the molecular mechanism of chemotherapeutic agent-induced apoptosis is not well known. To elucidate the effect of NDRG2 on the apoptotic pathway induced by doxorubicin, we established stable cell lines expressing NDRG2 and investigated the effect of NDRG2 expression on the doxorubicin-induced apoptosis. While STAT3 activation was remarkably inhibited by NDRG2 overexpression, the expression level of p21 was increased by NDRG2 expression. We confirmed that NDRG2-expressing cells treated with doxorubicin suppressed STAT3 activation and upregulated p21 expression. NDRG2 expression considerably enhanced TUNEL positive apoptotic cells, poly-ADP ribose polymerase (PARP) cleavage, release of cytochrome c to cytosol, and caspase-3 activity in doxorubicin-induced apoptosis. Bid expression in a resting state and after treatment with doxorubicin increased in MDA-MB-231-NDRG2 cells compared to MDA-MB-231-mock cells. Meanwhile, Bcl-$x_L$ expression decreased in MDA-MB-231-NDRG2 cells compared to MDA-MB-231-mock cells in a resting state and in doxorubicin-treated cells. Collectively, these data suggest that suppression of STAT3 activation by NDRG2 influences the sensitivity to doxorubicin-induced apoptosis of breast cancer cells and this may provide a potential therapeutic benefit to overcome the resistance against doxorubicin in breast cancer.

Prediction Model for the Cellular Immortalization and Transformation Potentials of Cell Substrates

  • Lee, Min-Su;Matthews Clayton A.;Chae Min-Ju;Choi, Jung-Yun;Sohn Yeo-Won;Kim, Min-Jung;Lee, Su-Jae;Park, Woong-Yang
    • Genomics & Informatics
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    • 제4권4호
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    • pp.161-166
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    • 2006
  • The establishment of DNA microarray technology has enabled high-throughput analysis and molecular profiling of various types of cancers. By using the gene expression data from microarray analysis we are able to investigate diagnostic applications at the molecular level. The most important step in the application of microarray technology to cancer diagnostics is the selection of specific markers from gene expression profiles. In order to select markers of Immortalization and transformation we used c-myc and $H-ras^{V12}$ oncogene-transfected NIH3T3 cells as our model system. We have identified 8751 differentially expressed genes in the immortalization/transformation model by multivariate permutation F-test (95% confidence, FDR<0.01). Using the support vector machine algorithm, we selected 13 discriminative genes which could be used to predict immortalization and transformation with perfect accuracy. We assayed $H-ras^{V12}$-transfected 'transformed' cells to validate our immortalization/transformation dassification system. The selected molecular markers generated valuable additional information for tumor diagnosis, prognosis and therapy development.

TNF-induced genes and Proteins

  • 이태호
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1993년도 제1회 추계심포지움 and 제2회 생리분자과학연구센터워크숍
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    • pp.17-20
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    • 1993
  • As a step toward a more complete understanding of the molecular actions of TNF, we prepared a cDNA library from TNF-treated human FS-4 fibroblasts and used differential hybridization to identify cDNA clones corresponding to mRNAs enriched in TNF-treated eells. In Quiescent FS-4 cells n induces an increase in the level of some mRNAs within 20 to 30 min. Some of these immediate-early response mRNAs are elevated only transiently for about 30 to 120 min, e. g., c-fos and c-myc (Lin and Vilcek,1987) or the transcription factor IRF-1 (Fujita et al.1989). Such immediate-early gene products may be important for the activation of other genes, but their transient induction suggests that they are not the actual effector molecules responsible for the phenotypic changes induced by TNF. We chose a 3-h incubation with W because we were seeking cDNAs corresponding to messages that are more stably elevated after TNF treatment. Indeed, the results shown in Figure 8 and 9 indicate that all of the mRNAs corresponding to the eight TSG cDNAs isolated remained significantly elevated after 16h of continuous treatment with TNF, and their kinetics of induction were clearly different from those of the immediate-early response mRNAs such as c-fos, c-myc or IRF-1. Nevertheless, only the induction of TSG-21 (collagenase) and TSG-27 (stromelysin) nNAs was completely inhibited by cycloheximide and the induction of TSG-37 (metallothionein-II) was reduced in the presence of this inhibitor of protein synthesis. Induction of the other five TSG mRNAs by TNF was completelyresistant to cycloheximide, suggest ins that no protein intermediate is needed for the upregulation of these mRNAs.

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Selective Gene Express Profiles in Rat Uterus during Estrus Cycle

  • Kim, Do-Rim;Yu, Seong-Jin;Kim, Jee-Yun;Youm, Mi-Young;Lee, Chae-Kwan;Kang, Sung-Goo
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
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    • pp.70-70
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    • 2003
  • The uterus undergoes dynamic changes during the cycle and displays many features typical of developmental process. In order to be prepared for implantation, endometrium undergoes predictable, sequential phases of proliferation and secretory changes. The uterus during estrus cycle synthesize a complex of signaling molecules with specific spatial and temporal modes of expression and which are critical for cell proliferation and differentiation. The purpose of this investigation was to use cDNA microarrays to evaluate the expression of genes of rat uterus in estrus cycle. Animals were sacrificed on proestrus, estrus, metestrus, diestrus. Differential gene expression profiles were revealed(growth-related c-myc reponsive protein RCL, heat shock 47-kDa protein (HSP47), cytochrome c oxidase polypeptide Vlc2 (COX6C2), calreticulin (CALR)). Reverse transcription polymerase chain reaction (RT-PCR) was used to validate the relative expression pattern. Using this approach, we found several genes whose expression in rat uterus was altered with estrus cycle. Our long-term goal is to determine the role of these differentially expressed genes during estrus cycle. This study was supported by through the Biohealth Products Research Center(BPRC), Inje University.

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Gene expression pattern during osteogenic differentiation of human periodontal ligament cells in vitro

  • Choi, Mi-Hye;Noh, Woo-Chang;Park, Jin-Woo;Lee, Jae-Mok;Suh, Jo-Young
    • Journal of Periodontal and Implant Science
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    • 제41권4호
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    • pp.167-175
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    • 2011
  • Purpose: Periodontal ligament (PDL) cell differentiation into osteoblasts is important in bone formation. Bone formation is a complex biological process and involves several tightly regulated gene expression patterns of bone-related proteins. The expression patterns of bone related proteins are regulated in a temporal manner both in vivo and in vitro. The aim of this study was to observe the gene expression profile in PDL cell proliferation, differentiation, and mineralization in vitro. Methods: PDL cells were grown until confluence, which were then designated as day 0, and nodule formation was induced by the addition of 50 ${\mu}g$/mL ascorbic acid, 10 mM ${\beta}$-glycerophosphate, and 100 nM dexamethasone to the medium. The dishes were stained with Alizarin Red S on days 1, 7, 14, and 21. Real-time polymerase chain reaction was performed for the detection of various genes on days 0, 1, 7, 14, and 21. Results: On day 0 with a confluent monolayer, in the active proliferative stage, c-myc gene expression was observed at its maximal level. On day 7 with a multilayer, alkaline phosphatase, bone morphogenetic protein (BMP)-2, and BMP-4 gene expression had increased and this was followed by maximal expression of osteocalcin on day 14 with the initiation of nodule mineralization. In relationship to apoptosis, c-fos gene expression peaked on day 21 and was characterized by the post-mineralization stage. Here, various genes were regulated in a temporal manner during PDL fibroblast proliferation, extracellular matrix maturation, and mineralization. The gene expression pattern was similar. Conclusions: We can speculate that the gene expression pattern occurs during PDL cell proliferation, differentiation, and mineralization. On the basis of these results, it might be possible to understand the various factors that influence PDL cell proliferation, extracellular matrix maturation, and mineralization with regard to gene expression patterns.

RNases and their role in Cancer

  • Beeram, Eswari
    • 식품보건융합연구
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    • 제5권2호
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    • pp.27-34
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    • 2019
  • RNases plays a pivotal role in biological system and different RNases are known for their various functions like angiogenesis, immunological response, antiviral, antitumour activity and apoptosis. In which anti tumour activity of RNase is proved to improve genome stability in normal cells up to some extent. RNases like RNase L shows antiviral and antitumour activities against virus infected cells and cancer cells through 2'-5' oligo adenylate pathway and induces RNaseL dependent apoptosis where as RNase A modulates various proliferative pathways like MAP kinase, JNK, TGF-${\beta}$ and activates apoptosis in cancer cells and promotes immunological response through processing of Ags. IRE1 RNase acts as both tumour suppressor gene and oncogene in normal and cancer cells and involved in both antitumour and tumorigenic activities. RNase III upregulates miRNA in cancer cells there by acting via posttranscriptional level and proven to be effective against colorectal adeno carcinoma. In addition to this IRE1 RNase is a double edged sword through RIDD pathway in ER (18). To some of the cancers expressing c-myc IRE1 acts as tumour suppressor where as in cancers where myc is downregulated IRE1 acts as tumour provoking through RIDD pathway (18). Thus RNases play vital role in regulating the genome stability.

조각자(皂角刺)가 estradiol valerate로 유발된 백서(白鼠)의 다낭성 난소에 미치는 영향 (Effects of Gleditsiae Spina(GS) on the Polycystic Ovary Induced by Estradiol Valerate in Rats)

  • 구희준;조성희
    • 대한한방부인과학회지
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    • 제23권2호
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    • pp.71-84
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    • 2010
  • Purpose: In the theory of traditional medicine, Glenditsia spina(GS) can resolve carbuncle, relive swelling, dispel wind and destroy parasites. This study was designed to investigate the effects of GS on gene expression of ovarian tissue in polycystic ovary syndrome(PCOS) rats. Methods: In this experiment, female rats injected with a single dose of 2 mg estradiol valerate(EV) and GS was given for 5 weeks. The genetic profile for the effects on ovarian tissue in PCOS rats was measured using microarray technique, and the functional analysis on these genes was conducted. Results: 985 genes were increased in control and restored to normal level in GS group. (B), 733 genes were decreased in control group and restored to normal level in GS group. (F). Metabolic pathways related in B group genes were Graft-versus-host disease, Allograft rejection, Autoimmune thyroid disease, Cytokine-cytokine receptor interaction, Small cell lung cancer, Type I diabetes mellitus. Metabolic pathways related in F group genes were Antigen processing and present, Adipocytokine signalling pathway, Focal adhesion, ECM-receptor interaction, Pancreatic cancer, Notch signalling pathway, Tight junction. The network of total protein interactions was measured using cytoscape program, and some key molecules, such as c-Fos, c-Myc, ABL1 related in B group, MAPK8, RASA1, CALR related in F group that can be used for elucidation of therapeutical mechanism of medicine in future were identified. Conclusion: These results suggest possibility of GS as anti-cancer and anti-hyperplasia drug in PCOS. In addition, the present author also suggests that related mechanisms are involved in suppression of proto-oncogene such as c-Fos, c-Myc and ABL1, and in regulation of cell cycle such as RASA1.