• 제목/요약/키워드: Oncogenesis

검색결과 60건 처리시간 0.028초

Analysis of Genes Regulated by HSP90 Inhibitor Geldanamycin in Neurons

  • ;;권오유
    • 대한의생명과학회지
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    • 제15권1호
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    • pp.97-99
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    • 2009
  • Geldanamycin is a benzoquinone ansamycin antibiotic that binds to cytosol HSP90 (Heat Shock Protein 90) and changes its biological function. HSP90 is involved in the intracellular important roles for the regulation of the cell cycle, cell growth, cell survival, apoptosis, angiogenesis and oncogenesis. To identify genes expressed during geldanamycin treatment against neurons of rats (PC12 cells), DNA microarray method was used. We have isolated 2 gene groups (up-or down-regulated genes) which are geldanamycin differentially expressed in neurons. Granzyme B is the gene most significantly increased among 204 up-regulated genes (more than 2 fold over-expression) and Chemokine (C-C motif) ligand 20 is the gene most dramatically decreased among 491 down-regulated genes (more than 2 fold down-expression). The gene increased expression of Cxc110, Cyp11a1, Gadd45a, Gja1, Gpx2, Ifua4, Inpp5e, Sox4, and Stip1 are involved stress-response gene, and Cryab, Dnaja1, Hspa1a, Hspa8, Hspca, Hspcb, Hspd1, Hspd1, and Hsph1 are strongly associated with protein folding. Cell cycle associated genes (Bc13, Brca2, Ccnf, Cdk2, Ddit3, Dusp6, E2f1, Illa, and Junb) and inflammatory response associated genes (Cc12, Cc120, Cxc12, Il23a, Nos2, Nppb, Tgfb1, Tlr2, and Tnt) are down-regulated more than 2 times by geldanamycin treatment. We found that geldanamycin is related to expression of many genes associated with stress response, protein folding, cell cycle, and inflammation by DNA microarray analysis. Further experimental molecular studies will be needed to figure out the exact biological function of various genes described above and the physiological change of neuronal cells by geldanamycin. The resulting data will give the one of the good clues for understanding of geldanamycin under molecular level in the neurons.

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백혈병 세포주 HL-60에서 과루실(瓜蔞實)의 세포고사 유도 효과 (Apoptosis-inducing Effect of Fructus Trichosanthis in HL-60 Leukemic Cells)

  • 권강범;김은경;한미정;류도곤
    • 한국전통의학지
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    • 제15권1호
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    • pp.83-89
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    • 2006
  • Many naturally occurring plant extracts are studied for their beneficial effects for health and particularly on cancer. Apoptosis, or programmed cell death, occurs in both normal and pathological conditions, including cancer. Dysregulation of apoptosis allows transformed cells to continually and uninhibitedly enter the cell cycle, thus perpetuating the sequence of mutation, genomic instability and, finally, oncogenesis. To investigate the apoptosis-Inducing effect of the extract of Fructus Trichosanthis (EFT) on leukemic HL-60 cells and its mechanism, HL-60 cells in vitro in culture medium were given different doses of the extract. The inhibitory rate of cells were measured by microculture tetrazolium assay, cell apoptotic rate was detected by flow cytometry, morphology of cell apoptosis was observed by DAPI fluorescence staining, and the activations of caspases and PARP were detected using Western blotting analysis. The extract could activate the caspase-3 and caspase-8, induce PARP cleavage, inhibit growth of HL-60 cells, and cause apoptosis significantly. The suppression was in dose-dependent manner. Marked morphological changes of cell apoptosis including condensation of chromatin and nuclear fragmentation were observed clearly by DAPI fluorescence staining especially. These results will provide strong laboratory evidence of EFT for clinical treatment of acute leukemia.

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Genetic alterations in Wnt family of genes and their putative association with head and neck squamous cell carcinoma

  • Aditya, Jain;Smiline Girija, A.S.;Paramasivam, A.;Priyadharsini, J. Vijayashree
    • Genomics & Informatics
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    • 제19권1호
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    • pp.5.1-5.11
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    • 2021
  • Head and neck squamous cell carcinoma (HNSCC) is the most frequent type of head and neck cancer that usually arises from the mucosal surfaces of several organs including nasal cavity, paranasal sinuses, oral cavity, tongue, pharynx, and larynx. The Wnt signaling pathway is a crucial mechanism for cellular maintenance and development. It regulates cell cycle progression, apoptosis, proliferation, migration, and differentiation. Dysregulation of this pathway correlates with oncogenesis in various tissues including breast, colon, pancreatic as well as head and neck cancers. The present study aims to assess the gene alterations in the Wnt family of genes so as to derive an association with HNSCC. Computational approaches have been utilized for the identification of gene alterations in the Wnt family of genes. Several databases such as cBioportal, STRING, and UALCAN were used for the purpose. The frequency of alteration was high in case of Wnt family member 11 (5%). Gene amplification, deep deletions, missense and truncating mutations were observed in HNSCC patients. There was a marked difference in the gene expression profile of WNT11 between grades as well as normal samples. The survival probability measured using the Kaplan-Meier curve also presented with a significant difference among male and female subjects experiencing a low/medium level expression. The female patients showed less survival probability when compared to the male subjects. This provides the prognostic significance of the WNT11 gene in HNSCC. Taken together, the present study provides clues on the possible association of WNT11 gene alterations with HNSCC, which has to be further validated using experimental approaches.

Relationship between ganglioside expression and anti-cancer effects of a plant-derived antibody in breast cancer cells

  • Ju, Won Seok;Song, Ilchan;Park, Se-Ra;Seo, Sang Young;Cho, Jin Hyoung;Min, Sung-Hun;Kim, Dae-Heon;Kim, Ji-Su;Kim, Sun-Uk;Park, Soon Ju;Ko, Kisung;Choo, Young-Kug
    • Journal of Plant Biotechnology
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    • 제46권3호
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    • pp.217-227
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    • 2019
  • Production of therapeutic monoclonal antibodies (mAbs) using a plant platform has been considered an alternative to the mammalian cell-based production system. A plant-derived mAb CO17-1AK ($mAb^P$ COK) can specifically bind to various types of cancer cell lines. The target protein of $mAb^P$ COK is the epithelial cell adhesion molecule (EpCAM) highly expressed in human epithelial cancer cells, including breast and colorectal cancer cells. It has been hypothesized that its overexpression supports tumor growth and metastasis. A ganglioside is extended well beyond the surfaces of the various cell membranes and has roles in cell growth, inflammation, differentiation, and carcinogenesis. However, the regulation of EpCAM gene expression in breast cancers and the role of gangliosides in oncogenesis are unclear. Here, the purpose of this study was to determine the effects of $mAb^P$ COK on human breast cancer cell proliferation, apoptosis, and ganglioside expression patterns. Our results show that treatment with $mAb^P$ COK suppressed the growth of breast cancer cells and induced apoptotic cell death. It also upregulated the expression of metastasis-related gangliosides in breast cancer cells. Thus, treatment with $mAb^P$ COK may have chemo-preventive therapeutic effects against human breast cancer.

누드마우스의 흉강에 폐암세포주의 주입에 의한 종양형성과 HER2/neu와 TGF-${\beta}_1$의 발현 (Tumorigenesis after Injection of Lung Cancer Cell Line (SW-900 G IV) into the Pleural Cavity of Nude Mice)

  • 박억숭;김송명;김종인
    • Journal of Chest Surgery
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    • 제43권6호
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    • pp.588-595
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    • 2010
  • 배경: 종양의 종류에 따라 발현되는 종양 항원의 종류도 다양하며 그 발현률의 차이는 더욱 다양하다. 이와 같은 이유로 폐암의 치료연구를 위해서는 인체를 대신할 만한 동물 모형이 절대 필요하다. 저자는 편평상피세포암의 세포주를 배양하여 Nude mice의 흉강 내에 주입하는 방법으로 종양형성을 시도하여 종양형성의 성공 유무와 조직학적 변화와 함께 폐암과 관련 있는 EGFR (epidermal growth factor receptor)의 수용기 중 하나인 HER2/neu 종양 유전자와 세포 성장 억제 작용과 악성화 과정에서의 저항성으로 작용하는 TGF-${\beta}_1$을 각각 정량 하도록 하여 인공적인 동소 폐암의 경우 암유전자의 발현에 관하여 조사해보고자 하였다. 대상 및 방법: 면역성이 없는 20마리의 수컷생쥐 (Male BALB/c nude mice)로 5마리를 대조군으로 하였으며, 나머지 15마리는 실험군으로 하고 체중은 20~25 gm (Orient, Japan)의 범위에 있었다. HER2/neu는 채혈하여 보관된 혈액의 혈청을 분리하여 CLIA (chemiluminiscent immunoassay) 법으로 정량적으로 측정하였으며 TGF-${\beta}_1$은 immunosandwitch법을 이용하여 정량 분석하였다. 통계학적 분석을 위하여 SPSS통계(SPSS Version10.0, USA)프로그램을 이용하였으며 Student T test를 하였으며 p값이 0.05 미만인 경우를 유의성이 있는 것으로 간주하였다. 결과: 정상 대조군에서나 인위적으로 주입한 폐암 세포주에 의한 폐암이 만들어진 이후에도 HER2/neu 유전자의 증폭은 전혀 반응을 나타내지 못하였다. 하지만 TGF-${\beta}_1$ 대조군의 정량치는 $28,490{\pm}8,549pg/mL$이었고 폐암 세포 주입군은 $42,362{\pm}14,449pg/mL$로 유의하게 1.48배 높게 나왔다(p<0.483). HER2/neu 유전자와 TGF-${\beta}_1$은 유의한 상관관계가 없는 것으로 나타났다. 결론: TGF-${\beta}_1$유전자는 대조군에 비하여 1.48배 정도의 증폭이 발현되었다. TGF-${\beta}_1$의 증폭은 Nude mice에서 발암에 의한 생체 치유 억제 기전이 확실히 작동하고 있다는 것을 의미하며, 인체의 조기 폐암의 발견에 역할을 가능케 하는 정량 검사법으로 이용할 수도 있을 것이다.

A Genetic Variant in MiR-146a Modifies Digestive System Cancer Risk: a Meta-analysis

  • Li, Ying-Jun;Zhang, Zhen-Yu;Mao, Ying-Ying;Jin, Ming-Juan;Jing, Fang-Yuan;Ye, Zhen-Hua;Chen, Kun
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권1호
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    • pp.145-150
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    • 2014
  • MicroRNAs (miRNAs) negatively regulate gene expression and act as tumor suppressors or oncogenes in oncogenesis. The association between a single nucleotide polymorphism (SNP) in miR-146a rs2910164 and susceptibility to digestive system cancers was inconsistent in previous studies. In this study, we conducted a literature search of PubMed to identify all relevant studies published before August 31, 2013. A total of 21 independent case-control studies were included in this updated meta-analysis with 9,558 cases and 10,614 controls. We found that the miR-146a rs2910164 polymorphism was significantly associated with decreased risk of digestive system cancers in an allele model (OR=0.90, 95%CI 0.87-0.94), homozygote model (OR=0.84, 95%CI 0.77-0.91), dominant model (OR=0.90, 95%CI 0.84-0.96), and recessive model (OR=0.85, 95%CI 0.79-0.91), while in a heterozygous model (OR = 0.99, 95% CI 0.89-1.11) the association showed marginal significance. Subgroup analysis by cancer site revealed decreased risk in colorectal cancer above allele model (OR=0.90, 95%CI 0.83-0.97) and homozygote model (OR=0.85, 95%CI 0.72-1.00). Similarly, decreased cancer risk was observed when compared with allele model (OR=0.87, 95%CI 0.81-0.93) and recessive model (OR=0.81, 95%CI 0.72-0.90) in gastric cancer. When stratified by ethnicity, genotyping methods and quality score, decreased cancer risks were also observed. This current meta-analysis indicated that miR-146a rs2910164 polymorphism may decrease the susceptibility to digestive system cancers, especially in Asian populations.

완전 절제된 제IIIA기 비소세포폐암에서 Cyclin D1, p53, Bcl-2 단백질 발현의 의의 (Correlation between Cyclin D1, p53, Bcl-2 Protein Expression and Prognosis in Primary, Resected Stage IIIA Non-Small Cell Lung Cancer (NSCLC))

  • 정경영;양우익
    • Journal of Chest Surgery
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    • 제31권12호
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    • pp.1200-1205
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    • 1998
  • 연구목적: 폐암은 protooncogene의 활성화와 종양억제유전인자(tumor suppressor gene)의 비활성화 등 다단 과정에 의하여 발생한다. 치료목적의 완전 절제가 가능하였던 제 IIIA기 비소세포폐암 환자에서 cyclin D1, p53, bcl-2 gene의 변이가 폐암에 미치는 영향을 조사하고자 하였다. 대상 및 방법: 1990년부터 1995년까지 연세의료원에서 치료목적의 완전절제가 가능하였던 stageIIIA 비소세포폐암 환자 100명의 paraffin block과 임상기록을 이용하였다. 각 환자의 조직절편을 labelled streptavidin-biotin method로 immunohistochemical 염색하였고 cyclin D1, p53, Bcl-2 immunostaining을 위한 조직절편들은 immunostaining하기 전 citrate buffer 내에서 10분에서 20분간 microwave oven으로 전처치한 후 cyclin D1은 NCL-cyclin D1-GM으로 p53는 lone DO-7으로 bcl-2는 clone 124로 overnight incubation하였다. 수술 후 평균 추적조사기간은 24.1 개월(range; 2∼84 개월)이었다. 결과: 100예의 폐암 중 56예가 편평상피세포암, 37예가 선암, 5예가 adenosquamous cell carcinoma, 2예가 대세포암이었고 수술 후 5년 생존율은 32.1%이었다. cyclin D1의 양성율은 35 %, p53는 56 %, bcl-2는 17 %였으나 cyclin D1, p53, Bcl-2 단백질 양성 발현과 생존율과의 상관관계는 없었다. 결론: 연구결과 cyclin D1, p53, Bcl-2 단백질 양성 발현이 비소세포폐암 발생기전과 연관되어 있으나 수술 후 예후인자로서는 부적당한 것으로 판단되었다.

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EphA2 Receptor Signaling Mediates Inflammatory Responses in Lipopolysaccharide-Induced Lung Injury

  • Hong, Ji Young;Shin, Mi Hwa;Chung, Kyung Soo;Kim, Eun Young;Jung, Ji Ye;Kang, Young Ae;Kim, Young Sam;Kim, Se Kyu;Chang, Joon;Park, Moo Suk
    • Tuberculosis and Respiratory Diseases
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    • 제78권3호
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    • pp.218-226
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    • 2015
  • Background: Eph receptors and ephrin ligands have several functions including angiogenesis, cell migration, axon guidance, fluid homeostasis, oncogenesis, inflammation and injury repair. The EphA2 receptor potentially mediates the regulation of vascular permeability and inflammation in response to lung injury. Methods: Mice were divided into 3 experimental groups to study the role of EphA2 signaling in the lipopolysaccharide (LPS)-induced lung injury model i.e., IgG+phosphate-buffered saline (PBS) group (IgG instillation before PBS exposure), IgG+LPS group (IgG instillation before LPS exposure) and EphA2 monoclonal antibody (mAb)+LPS group (EphA2 mAb pretreatment before LPS exposure). Results: EphA2 and ephrinA1 were upregulated in LPS-induced lung injury. The lung injury score of the EphA2 mAb+LPS group was lower than that of the IgG+LPS group ($4.30{\pm}2.93$ vs. $11.45{\pm}1.20$, respectively; p=0.004). Cell counts (EphA2 mAb+LPS: $11.33{\times}10^4{\pm}8.84{\times}10^4$ vs. IgG+LPS: $208.0{\times}10^4{\pm}122.6{\times}10^4$; p=0.018) and total protein concentrations (EphA2 mAb+LPS: $0.52{\pm}0.41mg/mL$ vs. IgG+LPS: $1.38{\pm}1.08mg/mL$; p=0.192) were decreased in EphA2 mAb+LPS group, as compared to the IgG+LPS group. In addition, EphA2 antagonism reduced the expression of phospho-p85, phosphoinositide 3-kinase $110{\gamma}$, phospho-Akt, nuclear factor ${\kappa}B$, and proinflammatory cytokines. Conclusion: This results of the study indicated a role for EphA2-ephrinA1 signaling in the pathogenesis of LPS-induced lung injury. Furthermore, EphA2 antagonism inhibits the phosphoinositide 3-kinase-Akt pathway and attenuates inflammation.

Pin1 Promoter rs2233678 and rs2233679 Polymorphisms in Cancer: A Meta-analysis

  • Zhu, Yan-Mei;Liu, Jing-Wei;Xu, Qian;Yuan, Yuan
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권10호
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    • pp.5965-5972
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    • 2013
  • PIN1 is one member of the parvulin PPIase family. By controlling Pro-directed phosphorylation, PIN1 plays an important role in cell transformation and oncogenesis. There are many polymorphisms in the PIN1 gene, including rs2233678 and rs2233679 affecting the PIN1 promoter. Recently, a number of case-control studies were conducted to investigate the association between PIN1 gene rs2233678 and rs2233679 polymorphism and cancer risk. However, published data are still conflicting. In this paper, we summarized data for 5,427 cancer cases and 5,469 controls from 9 studies and attempted to assess the susceptibility of PIN1 gene polymorphism to cancers by a synthetic meta-analysis. Odds ratios (ORs) with 95% confidence intervals (CIs) were estimated to assess the relationship. All analyses were performed using Stata software. Our results suggested that rs2233678 represented a protective factor in overall analysis (CC vs GG: OR= 0.697, 95%CI: 0.498-0.976; CG vs GG: OR=0.701, 95%CI: 0.572-0.858; Dominant model: OR= 0.707, 95%CI: 0.590-0.847; C allele vs G allele: OR=0.734, 95%CI: 0.623-0.867) and especially for squamous cell carcinoma of the head and neck, lung cancer and breast cancer in Asians and Caucasians. The rs2233679 polymorphism was significantly associated with decreased cancer risk in overall analysis (CT vs CC: OR=0.893, 95%CI=0.812-0.981; Dominant model: OR=0.893, 95%CI=0.816-0.976; T allele vs C allele; OR=0.947, 95%CI=0.896-1.000) and especially in Asians. In conclusion, our meta-analysis suggested that -842G>C (rs2233678) and -667C>T (rs2233679) may contribute to genetic susceptibility for cancer risks. Further prospective research with larger numbers of worldwide participants is warranted to draw comprehensive and firm conclusions.

분화도 좋은 구강 편평상피세포암종에서 Dominant Negative p63 isoform의 발현 (EXPRESSION OF DOMINANT NEGATIVE p63 ISOFORM IN WELL-DIFFERENCIATED ORAL SQUAMOUS CELL CARCINOMA)

  • 김인수;김철환;김경욱
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제33권3호
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    • pp.191-198
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    • 2007
  • The p53 which is well known as tumor suppressor gene is located at 17p13. p53 is a sequence-specific DNA binding transcription factor that responds to certain cytotoxic stresses, such as DNA damage, by enhancing the transcription of genes that regulate cell-cycle progression as well as programmed cell death. The p63 gene that is located at 3q27-29, is recognized members of the p53 family, and responsible for the transcription of 6 isoforms. Three isoforms ($TAp63{\alpha}$, $TAp63{\beta}$, $TAp63{\gamma}$) contain an N-terminal transactivation (TA) domain and can induce apoptosis. The other 3 isoforms (${\Delta}Np63{\alpha}$, ${\Delta}Np63{\beta}$, ${\Delta}Np63{\gamma}$) lack the TA domain and may function in a dominant-negative fashion by inhibiting the transactivation functions of p53 and TAp63 proteins, and thus act as oncoproteins. A number of studies have investigated the role of p63 in human squamous cell carcinomas from different organs. Only a few studies have examined ${\Delta}Np63$ isoform in oral squamous cell carcinoma including normal epithelium. This study aimed to evaluate expression of ${\Delta}Np63$ isoform in human oral squamous cell carcinoma tissue and normal mucosa. The 3 cases of well differenciated oral squamous cell carcinoma specimen including adjacent normal mucosa were examined, and immunohistochemical study with monoclonal antibody(4A4) and tumor cell apoptosis analysis with Transmission Electon Microscopy were studied. And, RT-PCR analysis was done for expression of ${\Delta}Np63$ isoform. The results were as followed. 1. Normal gingiva showed the restricted p63 expression in basal cell layer. 2. Well differentiated squamous cell carcinoma showed mainly p63 expression in overall area of malignancy, especially in basal cell layer to adjacent stromal tissue. 3. Tumor cells around keratinized area with no p63 expression disclosed less micro-organelle in decreased size cytoplasm and severe chromatin margination with nuclear destruction that means apoptosis. 4. Comparison of mRNA expression of ${\Delta}Np63$ isoform by RT-PCR showed variable expression of ${\Delta}Np63$ isoform, but ${\Delta}Np63{\alpha}$ was most highly expressed in all 3 tumor specimen. From theses results, it should be suggested that ${\Delta}Np63$ isoform expression in well differentiated squamous cell carcinoma was closely related to tumor oncogenesis, expecially overexpression of ${\Delta}Np63{\alpha}$ is a most important factor in tumor genesis of oral squamous cell carcinoma.