• Title/Summary/Keyword: PCR-LOH

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Loss of Heterozygosity at 3p in Korean Non-Small Cell Lung Cancer (한국인 비소세포폐암에서의 3p의 소실)

  • Lee, Choon-Taek;Kim, Mi-Hee;Park, Kyung-Ho;Park, Jong-Ho;Baek, Hee-Jong;Zo, Jae-Ill;Kim, Jin-Kyoo;Kim, Chang-Min
    • Tuberculosis and Respiratory Diseases
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    • v.45 no.5
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    • pp.975-983
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    • 1998
  • Purpose: Frequent deletion of 3p in numerous cancer including lung cancer suggests the presence of tumor suppressor gene. 3p has been analysed by RFLP and PCR-LOH of microsatellite locus. In this study, we observed the deletion of 3p in Korean NSCLC by PCR-LOH of 4 microsatellite loci and investigated the clinical significance. Method: 62 surgically resected NSCLC DNA and normal lung DNA have been analysed by PCR-LOH at three dinucleotide[D3S1228 (3p14.1-14.3), D3S1067 (3p14.3-21.1), D3S1029 (3p21.1-21.3)] and one tetranucleotide[D3S1537 (3p 22-24.2)] repeat microsatellite loci. Results: Among 59 informative cases, 3p deletion by PCR-LOH at four microsatellite loci was found in 31 patients(52.5%). 3p deletion were found in 55% of squamous cell lung cancer and 47% of adenocarcinoma patients. No significant difference has been found in clinical parameters such as staging, smoking and survival according to the status of 3p deletion. Conclusion: Deletions in 3p have played an important role in Korean NSCLC though no clinical significance was detected.

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Loss of Heterozygosity on the Long Arm of Chromosome 21 in Non-Small Cell Lung Cancer (비소세포폐암에서 21q 이형체 소실)

  • Chai, Po-Hee;Bae, Nack-Cheon;Lee, Eung-Bae;Park, Jae-Yong;Kang, Kyung-Hee;Kim, Kyung-Rok;Bae, Moon-Seob;Cha, Seung-Ik;Chae, Sang-Chul;Kim, Chang-Ho;Jung, Tae-Hoon
    • Tuberculosis and Respiratory Diseases
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    • v.50 no.6
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    • pp.668-675
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    • 2001
  • Background : Non-smalll lung cancer(NSCLC) develops as a result of the accumulation of multiple genetic abnormalities. Loss of heterozygosity(LOH) is one of the most frequent genetic alterations that is found in NSCLC, and the chromosomal regions that display a high rate of LOH are thought to harbor tumor suppressor genes(TSGs). This study was done to determine the frequency of LOH in 21q with the aim of identifying potential TSG loci. Method : Thirty-nine surgically resected NSCLCs were analysed. Patients peripheral lymphocytes were used as the source of the normal DNA. Five microsatellite Inarkers of 21q were used to study LOH : 21q21.1(D21S1432, and D21S1994); 21q21.2-21.3(D21S1442) ; 21q22.1(21S1445) ; and 21q22.2-22.3(D21S266). The fractional allelic loss(FAL) in a tumor was calculated as the ratio of the number of markers showing LOH to the number of informative markers. Result : LOH for at least one locus was detected in 21 of 39 tumors(53.8%). Among the 21 tumors with LOH, 5(21.8%) showed LOH at almost all informative loci. Although statistically not significant, LOH was found more frequently in squamous cell carcinomas(15 of 23, 65.2%) than in adenocarcinomas(6 of 16, 37.5%). In the squamous cell carcinomas the frequency of LOH was higher in stage II-III (80.0%) than in stage I (53.8%). The FAL value in squamous cell carcinomas($0.431{\pm}0.375$) was significantly higher than that found in adenocarcinomas($0.l92{\pm}0.276$). Conclusion : These results suggest that LOH on 21q may be involved in the development of NSCLC, and that TSG(s) that contribute to the pathogenesis of NSCLC may exist on 21q.

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Identification of Tumor Suppressor Loci on the Long Arm of Chromosome 5 in Primary Small Cell Lung Cancers (원발성 소세포폐암에서 염색체 5번의 장완에 위치한 종양억제유전자좌의 확인)

  • Cho, Eun-Song;Kim, Ho-Guen;Cho, Chul-Ho;Chang, Joon;Chung, Kyung-Young;Kim, Young-Sam;Park, Jae-Min;Kim, Sung-Kyu;Kim, Se-Kyu
    • Tuberculosis and Respiratory Diseases
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    • v.49 no.1
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    • pp.49-59
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    • 2000
  • Backgrounds : Recent cytogenetic studies indicated that long of the long arm of chromosome 5 is a frequent event in small cell lung canær (SCLC), suggesting the presence of a tumor suppressor gene in its place. To map the precise tumor-suppressor loci on the chromosome arm for further positional cloning efforts, we tested 15 primary SCLCs. Methods : The DNAs extracted from paraffin-embedded tissue blocks with primary tumor and corresponding control tissue were investigated. Nineteen polymorphic microsatellite markers located in the long arm of chromosome 5 were used in the microsatellite analysis. Results : We found that ten (66.7%) of 15 tumors exhibited LOH in at least one of tested microsatellite markers. Two (13%) of 10 tumors exhibiting LOH lost a larger area in chromosome 5q. LOH was observed in five common deleted regions at 5q. Among those areas, LOH between 5q34-qter and 5q35.2-35.3 was most frequent (75%). LOH was also observed in more than 50% of the tumors at four other regions, between 5q14-15 and 5q23-31, 5q31.1, 5q31.3-33.3, and 5q34-35. Three of 15 tumors exhibited shifted bands in at least one of the tested microsatellite markers. Shifted bands occurred in 2.5% (7 of 285) of the loci tested. Conclusion : Our data demonstrated that at least five tumor-suppressor loci exist in the long arm of chromosome 5 and that they may play an important role in small cell lung cancer tumorigenesis.

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Identification of Tumor Suppressor Loci on the Short Arm of Chromosome 16 in Primary Small Cell Lung Cancers (원발성 소세포폐암에서 염색체 16번의 단완에 위치한 종양억제유전자좌의 확인)

  • Kee, Hyun Jung;Shin, Ju Hye;Chang, Joon;Chung, Kyung Young;Shin, Dong Hwan;Kim, Young Sam;Chang, Yoon Soo;Kim, Sung Kyu;Kwak, Seung Min;Kim, Se kyu
    • Tuberculosis and Respiratory Diseases
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    • v.55 no.6
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    • pp.597-611
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    • 2003
  • Background : Loss of the short arm of chromosome 16 is a frequent event in various cancers, which suggests the presence of tumor suppressor gene(s) there. To map precise tumor suppressor loci on the chromosome arm for further positional cloning efforts, we tested 23 primary small cell lung cancers. Method : The DNAs extracted from paraffin embedded tissue blocks with primary tumor and corresponding control tissue were investigated. Twenty polymorphic microsatellite markers located in the short arm of chromosome 16 were used in the microsatellite analysis. Results : We found that six (26.1%) of 23 tumors exhibited LOH in at least one of tested microsatellite markers. Two (8.7%) of 6 tumors exhibiting LOH lost a larger area in chromosome 16p. LOH was observed in five common deleted regions at 16p. Among those areas, LOH between D16S668 and D16S749 was most frequent (21.1%). LOH was also observed at four other regions, between D16S3024 and D16S748, D16S405, D16S420, and D16S753. Six of 23 tumors exhibited shifted bands in at least one of the tested microsatellite markers. Shifted bands occurred in 3.3% (15 of 460) of the loci tested. Conclusion : Our data demonstrated that at least five tumor suppressor loci might exist in the short arm of chromosome 16 and that they may play an important role in small cell lung cancer tumorigenesis.

Alteration of Multiple Tumor Suppressor Genes in Head and Neck Squamous Cell Carcinoma (두경부 편평상피세포암에서 종양억제유전자들의 변이)

  • Song Si-Youn;Park Kang-Shik;Bai Chang-Hoon
    • Korean Journal of Head & Neck Oncology
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    • v.20 no.2
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    • pp.147-155
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    • 2004
  • Objectives: Head and neck squamous cell carcinoma (HNSCC) is the most common head and neck malignant tumor. The molecular genetic changes involving both oncogenes and tumor suppressor genes are known to be involved in head and neck squamous cell carcinogenesis, but the roles of the known tumor suppressor genes in carcinogenesis are not fully elucidated. The objectives of this study are to demonstrate the genetic alterations including the loss of heterozygosity (LOH) , amplification, and microsatellite instability of known tumor suppressor genes in HNSCC and to evaluate the relationship between genetic alterations of tumor suppressor genes and clinicopathologic features. Materials and Methods: Genetic alterations of 10 micro satellite markers of the 6 known tumor suppressor genes (APC, EXT1, DPC4, p16, FHIT, and PTEN) were analysed by DNA-PCR in paraffin-embedded histologically confirmed HNSCC specimens. Results: The genetic alterations of tumor suppressor genes were found frequently. Among the genetic alterations, LOH was most frequently found one. LOH was found frequently in APC (45.4%), EXT1 (36.4%), DPC4 (54.5%), and p16 (50%), but not found in FHIT. Also, the author found that abnormalities of APC gene was related to cervical lymph node metastasis and recurrence and that abnormalities of EXT1 gene were coexisted with those of APC gene or DPC4 gene. But these coexistences had no correlation with clinical features. Conclusion: These results suggested that APC, EXT1, p16, and DPC4 genes might play important roles and multiple tumor suppressor genes may participate dependently or independently in the carcinogenesis of HNSCC. These results also suggested that APC gene might relate to prognosis.

Activation and Abnormalities of Cell Cycle Regulating Factor in Head and Neck Squamous Cell Carcinoma Cell Lines: Abnormal Expression of CDKN2 Gene in Laryngeal Squamous Cell Carcinoma (두경부 편평상피세포암 세포주에서 세포주기조절인자의 활성 및 이상 : 후두편평상피세포암에서 종양억제유전자 CDKN2 유전자의 발현이상)

  • Song, Si-Youn;Han, Tae-Hee;Bai, Chang-Hoon;Kim, Yong-Dae;Song, Kei-Won
    • Journal of Yeungnam Medical Science
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    • v.22 no.2
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    • pp.166-182
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    • 2005
  • Background: Cyclin-dependent kinase (CDK) inhibitors are family of molecules that regulate the cell cycle. The CDKN2, a CDK4 inhibitor, also called p16, has been implicated in human tumorigenesis. The CDKN2 inhibits the cyclin/CDK complexes which regulate the transition from G1 to S phase of cell cycle. There is a previous report that homozygous deletion of CDKN2 region on chromosome 9p21 was detected frequently in astrocytoma, glioma and osteosarcoma, less frequently in lung cancer, leukemia and ovarian cancer, but not detected in colon cancer and neuroblastoma. However, little is known about the relationship between CDKN2 and laryngeal cancer. Therefore this study was initiated to investigate the role of CDKN2 in human laryngeal squamous cell carcinoma development.1) Materials and methods: We used 5 human laryngeal carcinoma cell lines whether they have deletions or losses of CDKN2 gene expression by DNA-PCR or RT-PCR, respectively. We examined 8 fresh frozen human laryngeal cancer tissues to detect the loss of heterozygosity (LOH) of CDKN2. PCR was performed by using microsatellite markers of short arm of human chromosome 9 (D9S126, D9S144, D9S156, D9S161, D9S162, D9S166, D9S171, D9S200 and D9SIFNA). For informative cases, allelic loss was scored if the signal of one allele was significantly decreased in tumor DNA when compared to the same allele in normal DNA. Results: The CDKN2 DNA deletion was observed in 3 cell lines. The CDKN2 mRNA expression was observed in only one cell line, which was very weak. LOH was detected in 7 cases (87.5%). Conclusion: These results suggest that CDKN2 plays a role in the carcinogenesis of human laryngeal squamous cell carcinoma.

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Genetic Alteration of Tumor Suppressor Gene and Microsatellite in Nonsmall Cell Lung Cancer (비소세포폐암에서 종양억제유전자와 극소위성 변이에 관한 연구)

  • Shin, Tae-Rim;Hong, Young-Sook;Kim, Jhin-Gook;Chang, Jung-Hyun
    • Tuberculosis and Respiratory Diseases
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    • v.49 no.4
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    • pp.453-465
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    • 2000
  • Background : Lung carcinogenesis is a multistage process involving alterations in multiple genes and diverse pathway. Mutational activation of oncogenes and inactivation of tumor suppressor genes, and subsequent increased genetic instability are the major genetic events. The p53 gene and FHIT gene as tumor suppressor genes contribute to the pathogenesis of lung cancer, evidenced by mutation, microsatellite instability(MI) and loss of heterozygosity(LOH). Methods : We analysed genetic mutations of p53 and FHIT gene in 29 surgical specimens of nonsmall cell lung cancer using PCR-single strand conformation polymorphism, DNA sequencing and RT-PCR. MI and LOH were analyzed in loci of D3S1285, D9S171, and TP53. Results : In 2 cases, point mutation of p53 gene was observed on exon 5. MI of 3 times and LOH of 14 times were observed in at least one locus. In terms of the location of microsatellite, D3S1285 as a marker of FH1T was observed in 5 cases out of 26 specimens; D9S171 as a marker of p16 in 5 out of 17; and TP53 as a marker of p53 in 7 out of 27. In view of histologic type, squamous cell carcinoma presented higher frequency of microsatellite alteration, compared to others. Mutation of FHIT gene was observed in 11 cases and 6 cases of those were point mutation as a silent substitution on exon 8. FHIT mRNA expression exhibited deletion on exon 6 to 9 in 4 cases among 15 specimens, presenting beta-actin normally. Conclusion : Our results show comparable frequency of genetic alteration in nonsmall cell lung cancer to previous studies of Western countries. Microsatellite analysis might have a role as a tumor marker especially in squamous cell carcinoma. Understanding molecular abnormalities involved in the pathogenesis could potentially lead to prevention, earlier diagnosis and the development of novel investigational approaches to the treatment of lung cancer.

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Laser Captured Microdissection

  • 이경아
    • The Zoological Society Korea : Newsletter
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    • v.18 no.2
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    • pp.21-25
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    • 2001
  • 대부분의 조직은 여러 가지 세포가 모여서 이루어지기 때문에 그 중의 어떤 특정세포에서 발현하는 물질을 분석하려면 조직을 이루고 있는 각각의 세포를 분리해내야 한다. 이렇게 순수하게 세포를 분리해내는 기술 중의 하나가 Laser Captured Microdissection (LCM)이 다. LCM의 개발로 기존에 사용되던 방법에 비하여 빠르고 간편하면서, 매우 정확하게 원하는 세포를 순수 분리해서 그 세포의 분자생물학적 또는 생화학적인 분석을 할 수 있게 되었다. LCM은 현미경으로 조직절편을 관찰하면서 원하는 세포를 낮은 에너지의 laser를 사용하여 도려내는 방법으로 조직절편 이외에도 도말된 혈액이나 자궁경부 조직, 그리고 배양된 세포를 cytocentrifugation한 후에 원하는 세포를 포획 할 수도 있다. LCM을 이용한 연구는 여러 분야에서 다양하게 진행되고 있으며, 특히 같은 조직 내에 존재하는 정상세포와 전이중인 세포, 그리고 암세포를 구분해 냄으로써 암의 전이기전 및 병인 연구에 매우 큰 공헌을 하고 있다. 이렇게 분리된 세포는 RT-PCR, LOH (loss of heterozygosity), microsatellite instability, differential gene profiling, cDNA microarray, Western blot, 2D PAGE protein analysis 등의 기법을 접목하여 연구하게 된다. 본 논단을 통하여 1996년 개발된 LCM의 원리와 이제까지 LCM을 이용한 연구 성과를 살펴보고자 한다.

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Microsatellite Instability in Non-Small Cell Lung Cancer (비소세포폐암에서 Microsatellite Instability)

  • Jeon, Hyo-Sung;Kim, Jeong-Ran;Son, Ji-Woong;Park, Sun-Ha;Park, Tae-In;Kim, Chang-Ho;Kim, In-San;Jung, Tae-Hoon;Park, Jae-Yong
    • Tuberculosis and Respiratory Diseases
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    • v.48 no.1
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    • pp.24-32
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    • 2000
  • Purpose: Microsatellite instability(MSI) is frequently used as an indicator of microsatellite mutator phenotype(MMP) tumors. MSI has been observed in a percentage of non-small cell lung cancer(NSCLC). However, its role in tumorigenesis of NSCLC remains unknown. The frequency and pattern of MSI in NSCLC were evaluated and clinical parameters of MSI-positive tumors with those of MSS(microsatellite stable) tumors were compared. Materials and Methods: Twenty surgically resected NSCLCs were analyzed for 15 microsatellite markers located at chromosomes 3p and 9p. The peripheral blood lymphocytes of patients were used as the source of the normal DNA. Results: 1) Of 20 cases, 8(40%) demonstrated MSI. 2) Instability was observed more frequently in tri- and tetra-nucleotide repeats than in dinucleotide repeats. In all cases, instability appeared as a shift of individual allelic bands. 3) LDH was observed in 10(50%) of 20 tumors analyzed. 4) Of 20 cases, MSI-H tumor(showing MSI in the majority of markers) was absent. There were 5 MSI-L tumors(showing MSI in a greater than 10% of markers). 5) No significant difference was observed between MSI-L tumors and MSI-negative tumors in terms of clinicopathologic features such as pack-year history of smoking, histologic subtype, and(delete) stage of disease. There was also no significant difference in the incidence of LDH in relation to the status of MSI. Conclusion: These data strongly suggest that MSI plays different roles in lung and colon cancer. MMP pathway appears to be far less important in the tumorigenesis of NSCLC, caused mainly by cigarette smoke, with little familial tendency.

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The Effect of Morphine on REST Expression in Human Neuroblastoma NMB Cells

  • Kim, Do-Kyung;Kim, Chun-Sung;Kim, Heung-Joong;Kook, Joong-Ki;Kim, Seung-Hee;Lee, Baek-Hee;Lee, Yun-Ho;Mo, Shin-Yeob;Loh, Horace H.
    • International Journal of Oral Biology
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    • v.35 no.2
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    • pp.69-74
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    • 2010
  • The mu opioid receptor (MOR) has been regarded as the main site of interaction with analgesics in major clinical use, particularly morphine. The repressor element-1 silencing transcription factor (REST) functions as a transcriptional repressor of neuronal genes in non-neuronal cells. However, it is expressed in certain mature neurons, suggesting that it may have complex and novel roles. In addition, the interactions between MOR and REST and their functions remain unclear. In this study, we examined the effects of morphine on the expression of REST mRNA and protein in human neuroblastoma NMB cells to investigate the roles of REST induced by MOR activation in neuronal cells. To determine the effects of morphine on REST expression, we performed RT-PCR, real-time quantitative RT-PCR, western blot analysis and radioligand binding assays in NMB cells. By RTPCR and real-time quantitative RT-PCR, the expression of REST was found to be unchanged by either the MOR agonist morphine or the MOR specific antagonist CTOP. By western blot, morphine was shown to significantly inhibit the expression of REST, but this suppression was completely blocked by treatment with CTOP. In the radioligand binding assay, the overexpression of REST led to an increased opioid ligand binding activity of endogenous MOR in the NMB cells. These results together suggest that morphine inhibits the expression of REST in human neuroblastoma cells through a post-transcriptional regulatory mechanism mediated through MOR.