• 제목/요약/키워드: Interspersed Repetitive Sequences

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Comparative Analysis of Repetitive Elements of Imprinting Genes Reveals Eleven Candidate Imprinting Genes in Cattle

  • Kim, HyoYoung;Kim, Heebal
    • Asian-Australasian Journal of Animal Sciences
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    • 제22권6호
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    • pp.893-899
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    • 2009
  • Few studies have reported the existence of imprinted genes in cattle compared to the human and mouse. Genomic imprinting is expressed in monoallelic form and it depends on a single parent-specific form of the allele. Comparative analysis of mammals other than the human is a valuable tool for explaining the genomic basis of imprinted genes. In this study, we investigated 34 common imprinted genes in the human and mouse as well as 35 known non-imprinted genes in the human. We found short interspersed nuclear elements (SINEs), long interspersed nuclear elements (LINEs), and long terminal repeats (LTRs) in imprinted (human and mouse) and control (cattle) genes. Pair-wise comparisons for the three species were conducted using SINEs, LINEs, and LTRs. We also calculated 95% confidence intervals of frequencies of repetitive sequences for the three species. As a result, most genes had a similar interval between species. We found 11 genes with conserved SINEs, LINEs, and LTRs in the human, mouse, and cattle. In conclusion, eleven genes (CALCR, Grb10, HTR2A, KCNK9, Kcnq1, MEST, OSBPL5, PPP1R9A, Sgce, SLC22A18, and UBE3A) were identified as candidate imprinted genes in cattle.

Evaluation of the Selected 12-locus MIRU for Genotyping Beijing Family Mycobacterium Tuberculosis in Korea

  • Kang, Heeyoon;Ryoo, Sungweon;Park, Youngkil;Lew, Woojin
    • Tuberculosis and Respiratory Diseases
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    • 제67권6호
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    • pp.499-505
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    • 2009
  • Background: Mycobacterial Interspersed Repetitive Units (MIRUs) that are located mainly in intergenic regions dispersed throughout the Mycobacterium tuberculosis genome. The selected MIRU loci, which were composed of a 12-locus set, demonstrated a high power for discrimination of Mycobacterium tuberculosis isolates collected from Kangwon province of Korea. To evaluate its ability to discriminate the M. tuberculosis strains, 45 clinical isolates were genotyped using the methods IS6110 RFLP and MIRU. Methods: All the samples were collected during the period from January 2007 to December 2007 from TB patients, who were residents and registered to a public health center of Kangwon Province in Korea. A total of 45 DNAs were extracted from clinical isolated mycobacterial strains and genotyped using IS6110 RFLP, the MIRU method. Results: We compared the 12-MIRU with IS6110 RFLP in the 45 samples, the 12-locus version offered less discriminatory power (Hunter-Gaston discriminatory index [HGDI]: 0.959 vs 0.998; 57.78% of clustered cases vs 8.89%). Conclusion: This 12-locus MIRU can be useful when additional combinations of other loci for genotyping M. tuberculosis in Korea where the Beijing family strains are dominant.

Genome-Wide Identification and Classification of MicroRNAs Derived from Repetitive Elements

  • Gim, Jeong-An;Ha, Hong-Seok;Ahn, Kung;Kim, Dae-Soo;Kim, Heui-Soo
    • Genomics & Informatics
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    • 제12권4호
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    • pp.261-267
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    • 2014
  • MicroRNAs (miRNAs) are known for their role in mRNA silencing via interference pathways. Repetitive elements (REs) share several characteristics with endogenous precursor miRNAs. In this study, 406 previously identified and 1,494 novel RE-derived miRNAs were sorted from the GENCODE v.19 database using the RepeatMasker program. They were divided into six major types, based on their genomic structure. More novel RE-derived miRNAs were confirmed than identified as RE-derived miRNAs. In conclusion, many miRNAs have not yet been identified, most of which are derived from REs.

주요 식중독 그람 음성 세균 4속의 REP-PCR genotyping (REP-PCR Genotyping of Four Major Gram-negative Foodborne Bacterial Pathogens)

  • 정혜진;서현아;김영준;조준일;김근성
    • 한국식품과학회지
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    • 제37권4호
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    • pp.611-617
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    • 2005
  • 본 연구에서는 E. coli. Salmonella, Shigella, Vibrio 등 4속의 주요 식중독유발 그람 음성 세균들을 대상으로 반복성 염기서열인 REP DNA sequence를 응용한 REP-PCR을 실시하였다. 이전의 보고에서 이들 4속의 식중독 유발세균 중 각각 혹은 일부를 대상으로 반복성 염기서열을 이용한 PCR을 적용한 사례는 있지만 그때 적용한 primer, PCR 반응조건 및 전기영동조건 등이 다양하였다. 그러므로 본 연구에서는 이와같은 4속의 세균들에 대하여 최적화된 동일한 primer와 PCR 반응조건 및 전기영동조건을 표준조건으로서 적용하였다. 그 결과로서 모든 4속의 식중독 세균 균주마다 REP-PCR 후 생성되는 fingerprinting pattern에서 속마다 1-3개의 공통적이며 독특한 band가 생성되는 것이 확인되어 이러한 pattern을 이용한 속 수준의 분리 동정과 그와 같은 주요 band들 이외의 부수적인 band들을 고려하여 종 수준까지의 분리도 가능함을 확인하였다. 따라서 본 연구를 통하여 반복적 DNA 염기서열을 이용한 REP-PCR이 주요 식중독 세균의 분리 동정 방법으로 사용될 수 있음을 확인하였다. 또한 본 연구를 통하여 얻은 결과는 더 많은 속(genus)의 식중독세균을 대상으로 한 새로운 분리 동정 방법을 확립하기 위하여 사용될 수 있을 것이다.

Genomic DNA Chip: Genome-wide profiling in Cancer

  • 이종호
    • 한국생물정보학회:학술대회논문집
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    • 한국생물정보시스템생물학회 2001년도 제2회 생물정보 워크샵 (DNA Chip Bioinformatics)
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    • pp.61-86
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    • 2001
  • All cancers are caused by abnormalities in DNA sequence. Throughout life, the DNA in human cells is exposed to mutagens and suffers mistakes in replication, resulting in progressive, subtle changes in the DNA sequence in each cell. Since the development of conventional and molecular cytogenetic methods to the analysis of chromosomal aberrations in cancers, more than 1,800 recurring chromosomal breakpoints have been identified. These breakpoints and regions of nonrandom copy number changes typically point to the location of genes involved in cancer initiation and progression. With the introduction of molecular cytogenetic methodologies based on fluorescence in situ hybridization (FISH), namely, comparative genomic hybridization (CGH) and multicolor FISH (m-FISH) in carcinomas become susceptible to analysis. Conventional CGH has been widely applied for the detection of genomic imbalances in tumor cells, and used normal metaphase chromosomes as targets for the mapping of copy number changes. However, this limits the mapping of such imbalances to the resolution limit of metaphase chromosomes (usually 10 to 20 Mb). Efforts to increase this resolution have led to the "new"concept of genomic DNA chip (1 to 2 Mb), whereby the chromosomal target is replaced with cloned DNA immobilized on such as glass slides. The resulting resolution then depends on the size of the immobilized DNA fragments. We have completed the first draft of its Korean Genome Project. The project proceeded by end sequencing inserts from a library of 96,768 bacterial artificial chromosomes (BACs) containing genomic DNA fragments from Korean ethnicity. The sequenced BAC ends were then compared to the Human Genome Project′s publicly available sequence database and aligned according to known cancer gene sequences. These BAC clones were biotinylated by nick translation, hybridized to cytogenetic preparations of metaphase cells, and detected with fluorescein-conjugated avidin. Only locations of unique or low-copy Portions of the clone are identified, because high-copy interspersed repetitive sequences in the probe were suppressed by the addition of unlabelled Cotl DNA. Banding patterns were produced using DAPI. By this means, every BAC fragment has been matched to its appropriate chromosomal location. We have placed 86 (156 BAC clones) cytogenetically defined landmarks to help with the characterization of known cancer genes. Microarray techniques would be applied in CGH by replacement of metaphase chromosome to arrayed BAC confirming in oncogene and tumor suppressor gene: and an array BAC clones from the collection is used to perform a genome-wide scan for segmental aneuploidy by array-CGH. Therefore, the genomic DNA chip (arrayed BAC) will be undoubtedly provide accurate diagnosis of deletions, duplication, insertions and rearrangements of genomic material related to various human phenotypes, including neoplasias. And our tumor markers based on genetic abnormalities of cancer would be identified and contribute to the screening of the stage of cancers and/or hereditary diseases

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