• 제목/요약/키워드: Oncogenes

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생쥐에서 종양세포의 암유전자발현에 대한 울솔산의 효과 (Effects of Ursolic Acid on Oncogene Expression Detected by In Situ Hybridization in Mice)

  • 류태형;박성미;박건영;정해영;하재청;이정규
    • 약학회지
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    • 제36권6호
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    • pp.529-537
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    • 1992
  • To investigate the effect of ursolic acid on the expression of oncogenes in tumor cells of mice, sarcoma 180 ascites tumor cells were implanted into the left groin of ICR mice and the tumor bearing mice were treated with ursolic acid. The expression of oncogenes were measured by in situ hybridization method. Ursolic acid significantly reduced the expression of oncogenes in the tumor cells. Therefore, it can be said that the prestated anticarcinogenic effect of ursolic acid could be partly ascribed to the mechanism included in the oncogene´s transcription level.

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k-ras와 c-myc, wnt 억제에 의한 NKG2D 리간드의 발현변화 (Inhibition of Oncogenes Affects the Expression of NKG2D Ligands in Cancer Cells)

  • 허웅;이영신;배재호
    • 생명과학회지
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    • 제23권10호
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    • pp.1216-1222
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    • 2013
  • 자연살상세포(NK cells)은 림프구계의 세포로서 외부 침임 병원균을 막고 체내 형질변환세포를 제거하는데 참여하고 있다. 이러한 자연살상세포의 활성은 특정한 항원이 필요 없고 활성화 신호와 억제성 신호의 균형에 의해 조절되고 있다. 자연살상세포의 중요한 활성화 신호 중의 하나는 NKG2D 수용체를 통한 것인데, 이 NKG2D 수용체를 통해 자연살상세포는 암세포에 있는 NKG2D 리간드를 인식할 수 있다. 지금까지 인간에서는 여덟개의 NKG2D 리간드가 밝혀져 있고 이러한 리간드의 발현은 다양한 기전을 엄격하게 조절되고 있다. 암세포는 암유전자(oncogenes)에 의해 세포내 다양한 유전자의 발현이 정상세포와 확연히 달라지는데, 이러한 암유전자에 의해서 NKG2D 리간드의 발현이 영향을 받을 것으로 생각되어 진다. 이 연구는 인간의 암세포에서 가장 자주 발현되는 세가지 암유전자 k-ras와 c-myc, wnt의 억제를 통해 NKG2D 리간드의 발현이 어떻게 변화되는 지를 알아보았다. k-ras와 c-myc의 억제는 NKG2D 리간드의 발현을 효과적을 증가시켰고 암세포가 자연살상세포에 더욱 잘 죽게 변화되었다. 그러나 wnt 억제는 MICA와 ULBP1의 전사를 감소시켰다. wnt 억제에 의한 NKG2D 리간드의 전사억제에도 불구하고 세포막의 단백질 발현은 변하지 않아서 암세포의 자연살상세포에 대한 감수성은 별다른 변화를 보이지 않았다. 따라서 k-ras와 c-myc, wnt 억제는 각각 다른 반응을 보였으며 최종적인 자연살상세포에 대한 감수성은 NKG2D 리간드의 세포표면단백질 발현정도에 의해 결정됨을 알 수 있었다.

Convergence of Cancer Metabolism and Immunity: an Overview

  • Van Dang, Chi;Kim, Jung-whan
    • Biomolecules & Therapeutics
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    • 제26권1호
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    • pp.4-9
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    • 2018
  • Cancer metabolism as a field of research was founded almost 100 years ago by Otto Warburg, who described the propensity for cancers to convert glucose to lactate despite the presence of oxygen, which in yeast diminishes glycolytic metabolism known as the Pasteur effect. In the past 20 years, the resurgence of interest in cancer metabolism provided significant insights into processes involved in maintenance metabolism of non-proliferating cells and proliferative metabolism, which is regulated by proto-oncogenes and tumor suppressors in normal proliferating cells. In cancer cells, depending on the driving oncogenic event, metabolism is re-wired for nutrient import, redox homeostasis, protein quality control, and biosynthesis to support cell growth and division. In general, resting cells rely on oxidative metabolism, while proliferating cells rewire metabolism toward glycolysis, which favors many biosynthetic pathways for proliferation. Oncogenes such as MYC, BRAF, KRAS, and PI3K have been documented to rewire metabolism in favor of proliferation. These cell intrinsic mechanisms, however, are insufficient to drive tumorigenesis because immune surveillance continuously seeks to destroy neo-antigenic tumor cells. In this regard, evasion of cancer cells from immunity involves checkpoints that blunt cytotoxic T cells, which are also attenuated by the metabolic tumor microenvironment, which is rich in immuno-modulating metabolites such as lactate, 2-hydroxyglutarate, kynurenine, and the proton (low pH). As such, a full understanding of tumor metabolism requires an appreciation of the convergence of cancer cell intrinsic metabolism and that of the tumor microenvironment including stromal and immune cells.

Possible Involvement of Rearranged Proto-oncogene in T Cell Malignancy

  • Lee, Kwang-Ho;Lee, Seung-Gak;Park, Tae-Kyu
    • BMB Reports
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    • 제28권5호
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    • pp.414-419
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    • 1995
  • The retroviruses carrying ${\nu}-myc$ and ${\nu}-raf$ oncogenes were infected into fetal thymic organ culture (FTOC) to study the molecular mechanisms involved in T cell development. T cell lymphomas in the different stages of T cell development were obtained from this culture system. Interestingly, a few cell lines obtained from this system have a lack of transfected oncogenes, however these cells have the characteristics of transformed cells. In spite of the discrete phenotype of these transformed cell lines, the same pattern of recombination of endogenous c-raf genes was detected from Southern blot analysis. We suggest in this regard that the translocation event of thymocytes, or abnormal promoter activity, can cause lymphomagenesis by way of c-raf.

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Application of Temperature-Sensitive Mutations to Oncogene Studies in Drosophila

  • Baek, Kwang-Hyun
    • Archives of Pharmacal Research
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    • 제22권3호
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    • pp.229-231
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    • 1999
  • Recessive oncogenes are genetic functions important in the regulation of tissue growth and differentiation. These genetic functions are defined on the basis of the phenotype expressed by homozygotes. Defining the role of these genes in normal developmental and physiological processes is important to the development of accurate models of the normal regulation of growth and differentiation. Drosophila can be a good system to investigate the neoplastic mechanism of oncogenes and provide a greater understanding in the developmental progression of both invertebrates and vertebrates and vertebrates. The lethal (2) giant larvae gene is a recessive oncogene of Drosophila and temperature sensitive mutations of this gene have been isolated. Here, the application of temperature-sensitive mutations in Drosophila oncogene studies is discussed.

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Roles of Oncogenic Long Non-coding RNAs in Cancer Development

  • Do, Hyunhee;Kim, Wanyeon
    • Genomics & Informatics
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    • 제16권4호
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    • pp.18.1-18.9
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    • 2018
  • Long non-coding RNAs (lncRNAs) are classified as RNAs that are longer than 200 nucleotides and cannot be translated into protein. Several studies have demonstrated that lncRNAs are directly or indirectly involved in a variety of biological processes and in the regulation of gene expression. In addition, lncRNAs have important roles in many diseases including cancer. It has been shown that abnormal expression of lncRNAs is observed in several human solid tumors. Several studies have shown that many lncRNAs can function as oncogenes in cancer development through the induction of cell cycle progression, cell proliferation and invasion, anti-apoptosis, and metastasis. Oncogenic lncRNAs have the potential to become promising biomarkers and might be potent prognostic targets in cancer therapy. However, the biological and molecular mechanisms of lncRNA involvement in tumorigenesis have not yet been fully elucidated. This review summarizes studies on the regulatory and functional roles of oncogenic lncRNAs in the development and progression of various types of cancer.

Parameters Involved in Autophosphorylation in Chronic Myeloid Leukemia: a Systems Biology Approach

  • Kumar, Himansu;Tichkule, Swapnil;Raj, Utkarsh;Gupta, Saurabh;Srivastava, Swati;Varadwaj, Pritish Kumar
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권13호
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    • pp.5273-5278
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    • 2015
  • Background: Chronic myeloid leukemia (CML) is a stem cell disorder characterized by the fusion of two oncogenes namely BCR and ABL with their aberrant expression. Autophosphorylation of BCR-ABL oncogenes results in proliferation of CML. The study deals with estimation of rate constant involved in each step of the cellular autophosphorylation process, which are consequently playing important roles in the proliferation of cancerous cells. Materials and Methods: A mathematical model was proposed for autophosphorylation of BCR-ABL oncogenes utilizing ordinary differential equations to enumerate the rate of change of each responsible system component. The major difficulty to model this process is the lack of experimental data, which are needed to estimate unknown model parameters. Initial concentration data of each substrate and product for BCR-ABL systems were collected from the reported literature. All parameters were optimized through time interval simulation using the fminsearch algorithm. Results: The rate of change versus time was estimated to indicate the role of each state variable that are crucial for the systems. The time wise change in concentration of substrate shows the convergence of each parameter in autophosphorylation process. Conclusions: The role of each constituent parameter and their relative time dependent variations in autophosphorylation process could be inferred.

Prognostically Significant Fusion Oncogenes in Pakistani Patients with Adult Acute Lymphoblastic Leukemia and their Association with Disease Biology and Outcome

  • Sabir, Noreen;Iqbal, Zafar;Aleem, Aamer;Awan, Tashfeen;Naeem, Tahir;Asad, Sultan;Tahir, Ammara H;Absar, Muhammad;Hasanato, Rana MW;Basit, Sulman;Chishti, Muhammad Azhar;Ul-Haque, Muhammad Faiyaz;Khalid, Ahmad Muktar;Sabar, Muhammad Farooq;Rasool, Mahmood;Karim, Sajjad;Khan, Mahwish;Samreen, Baila;Akram, Afia M;Siddiqi, Muhammad Hassan;Shahzadi, Saba;Shahbaz, Sana;Ali, Agha Shabbir
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권7호
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    • pp.3349-3355
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    • 2012
  • Background and objectives: Chromosomal abnormalities play an important role in genesis of acute lymphoblastic leukemia (ALL) and have prognostic implications. Five major risk stratifying fusion genes in ALL are BCR-ABL, MLL-AF4, ETV6-RUNX11, E2A-PBX1 and SIL-TAL1. This work aimed to detect common chromosomal translocations and associated fusion oncogenes in adult ALL patients and study their relationship with clinical features and treatment outcome. Methods: We studied fusion oncogenes in 104 adult ALL patients using RT-PCR and interphase-FISH at diagnosis and their association with clinical characteristics and treatment outcome. Results: Five most common fusion genes i.e. BCR-ABL (t 9; 22), TCF3-PBX1 (t 1; 19), ETV6-RUNX1 (t 12; 21), MLL-AF4 (t 4; 11) and SIL-TAL1 (Del 1p32) were found in 82/104 (79%) patients. TCF3-PBX1 fusion gene was associated with lymphadenopathy, SIL-TAL1 positive patients had frequent organomegaly and usually presented with a platelets count of less than $50{\times}10^9/l$. Survival of patients with fusion gene ETV6-RUNX1 was better when compared to patients harboring other genes. MLL-AF4 and BCR-ABL positivity characterized a subset of adult ALL patients with aggressive clinical behaviour and a poor outcome. Conclusions: This is the first study from Pakistan which investigated the frequency of5 fusion oncogenes in adult ALL patients, and their association with clinical features, treatment response and outcome. Frequencies of some of the oncogenes were different from those reported elsewhere and they appear to be associated with distinct clinical characteristics and treatment outcome. This information will help in the prognostic stratification and risk adapted management of adult ALL patients.

종양괴사인자(TNF)가 ME-180 사람 경부 암종세포에서 종양 발생 유전자의 발현에 미치는 영향 (Effect of Tumor Necrosis Factor-${\alpha}$(TNF) on the Expression of Oncogenes in ME-180 Human Cervical Carcinoma Cells)

  • 한형미;김형수;손경희;최경백;정승태;김진호;이병무;김주일
    • 약학회지
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    • 제41권5호
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    • pp.629-637
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    • 1997
  • Tumor necrosis factor-${alpha}$ (TNF) induced a cytotoxic response in ME-180 cervical carcinoma cells in vitro. This cytotoxic response was accompanied by a temporal series of mitogenic stimuli : increased c-fos, c-jun and jun-B expression. Depletion of protein kinase C (PKC) by exposure of ME-180 cells to 100ng/ml phorbol myristate acetate (PMA) for 24hours almost completely abolished TNF-mediated increase in these signals, indicating that a PKC-dependent pathway is involved in TNF-mediated increases in the expression of c-fos, c-jun and jun-B. Characteristics of TNF receptors after exposure to 100ng/ml PMA or 24hours were not altered, suggesting that diminished induction of these oncogenes by TNF after PMA treatment is not due to any changes at the receptor level. To examine whether a PKC-dependent pathway is involved in TNF-mediated cytotoxicity in ME-180 cells, cytotoxicity was measured after depletion of PKC. No apparent changes in cytototoxicity after PKC depletion suggest that a PKC-dependent pathway is not involved in TNF-mediated cytotoxicity. Furthermore, results from cytotoxicity tests after exposure to staurosporine (PKC inhibitor) did not show any changes in the TNF-mediated cytotoxicity, confirming that a PKC-dependent pathway is not involved in this process. These data indicate that 1) TNF induces expression of c-fos, c-jun and jun-B oncogenes via a PKC-dependent pathway and 2) PKC-dependent expression of these three oncogenes by TNF may not be involved in TNF-mediated cytotoxicity in ME-180 cells.

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2,3,7,8-TCDD의 세포형질전환 및 내성획득에 관여하는 세포내 인자에 관한 연구 (Studies on Cellular Factors Responsible for 2,3,7,8-TCDD Resistency and Cellular Transformation)

  • 염태경;최영실;김옥희;강호일
    • 한국환경성돌연변이발암원학회지
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    • 제26권1호
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    • pp.1-6
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    • 2006
  • To enhance our understanding of toxicity mediated through the pathway by which TCDD stimulates gene expression, we have investigated genes whose expressions are changed after treatment with TCDD and/or MNNG in human Chang liver cell. First, we treated with MNNG and TCDD for two weeks to transform human Chang liver cell. We obtained cell looks like to be transformed and compared the differential gene expression by using cDNA chip (Macrogen) which carrys genes related with signal transduction pathways, oncogenes and tumor suppressor genes, etc. We found that TCDD up- or down-regulated 203 and 111 genes including oncogenes and tumor suppressor genes in human Chang liver cell two fold or more, respectively. Second, we compared the differential gene expression after treatment with TCDD only by using cDNA chip (Superarray) which carrys genes related with cell cycle regulations, and found that TCDD up regulated genes related with cell proliferation as well as cell growth inhibition in human Chang liver cell two fold or more, respectively. These results suggest that toxicity induced by TCDD may reflect sustained alterations in the expression of many genes and that the changes reflect both direct and indirect effects of TCDD.

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