• 제목/요약/키워드: Mitochondrial genome

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Application of Random Forests to Association Studies Using Mitochondrial Single Nucleotide Polymorphisms

  • Kim, Yoon-Hee;Kim, Ho
    • Genomics & Informatics
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    • 제5권4호
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    • pp.168-173
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    • 2007
  • In previous nuclear genomic association studies, Random Forests (RF), one of several up-to-date machine learning methods, has been used successfully to generate evidence of association of genetic polymorphisms with diseases or other phenotypes. Compared with traditional statistical analytic methods, such as chi-square tests or logistic regression models, the RF method has advantages in handling large numbers of predictor variables and examining gene-gene interactions without a specific model. Here, we applied the RF method to find the association between mitochondrial single nucleotide polymorphisms (mtSNPs) and diabetes risk. The results from a chi-square test validated the usage of RF for association studies using mtDNA. Indexes of important variables such as the Gini index and mean decrease in accuracy index performed well compared with chi-square tests in favor of finding mtSNPs associated with a real disease example, type 2 diabetes.

DNA Light-strand Preferential Recognition of Human Mitochondria Transcription Termination Factor mTERF

  • Nam, Sang-Chul;Kang, Chang-Won
    • BMB Reports
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    • 제38권6호
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    • pp.690-694
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    • 2005
  • Transcription termination of the human mitochondrial genome requires specific binding to termination factor mTERF. In this study, mTERF was produced in E. coli and purified by two-step chromatography. mTERF-binding DNA sequences were isolated from a pool of randomized sequences by the repeated selection of bound sequences by gel-mobility shift assay and polymerase chain reaction. Sequencing and comparison of the 23 isolated clones revealed a 16-bp consensus sequence of 5'-GTG$\b{TGGC}$AGANCCNGG-3' in the light-strand (underlined residues were absolutely conserved), which nicely matched the genomic 13-bp terminator sequence 5'-$\b{TGGC}$AGAGCCCGG-3'. Moreover, mTERF binding assays of heteroduplex and single-stranded DNAs showed mTERF recognized the light strand in preference to the heavy strand. The preferential binding of mTERF with the light-strand may explain its distinct orientation-dependent termination activity.

염색체 말단부위 (Back to the Ends: Chromosomal DNA)

  • 이미형;서동철
    • Childhood Kidney Diseases
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    • 제12권1호
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    • pp.1-10
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    • 2008
  • Nucleic scids transfer the genetic information for serving a central biological purpose. The nucleic acids are polymers of nucleotides and they are mainly ribonucleic acid(RNA) and deoxyribonucleic acid(DNA). The nucleotides are stoichiometrically composed of five-carbon sugars, nitrogeneous bases, and phosphoric acids. The chemistry of nucleic acids and characteristics of different genomes are decribed for further study. Most of DNA genomes tend to be circular including bacterial genomes and eukaryotic mitochondrial DNA. Eukaryotic chromosomes in cells, in contrast, are generally linear. The ends of linear chromosomes are called telomeres. The genomes of different species, such as mammals, plants, invertebrates can be compared with the chromosome ends. The telomeric complex allows cells to distinguish the random DNA breaks and natural chromosomal ends. The very ends of chromosomes cannot be replicated by any ordinary mechanisms. The shortening of telomeric DNA templates in semiconservative replication is occurred with each cell division. The short telomere length is critically related to aging, tumors and dieases.

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Comprehensive comparative analysis of chloroplast genomes from seven Panax species and development of an authentication system based on species-unique single nucleotide polymorphism markers

  • Nguyen, Van Binh;Giang, Vo Ngoc Linh;Waminal, Nomar Espinosa;Park, Hyun-Seung;Kim, Nam-Hoon;Jang, Woojong;Lee, Junki;Yang, Tae-Jin
    • Journal of Ginseng Research
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    • 제44권1호
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    • pp.135-144
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    • 2020
  • Background: Panax species are important herbal medicinal plants in the Araliaceae family. Recently, we reported the complete chloroplast genomes and 45S nuclear ribosomal DNA sequences from seven Panax species, two (P. quinquefolius and P. trifolius) from North America and five (P. ginseng, P. notoginseng, P. japonicus, P. vietnamensis, and P. stipuleanatus) from Asia. Methods: We conducted phylogenetic analysis of these chloroplast sequences with 12 other Araliaceae species and comprehensive comparative analysis among the seven Panax whole chloroplast genomes. Results: We identified 1,128 single nucleotide polymorphisms (SNP) in coding gene sequences, distributed among 72 of the 79 protein-coding genes in the chloroplast genomes of the seven Panax species. The other seven genes (including psaJ, psbN, rpl23, psbF, psbL, rps18, and rps7) were identical among the Panax species. We also discovered that 12 large chloroplast genome fragments were transferred into the mitochondrial genome based on sharing of more than 90% sequence similarity. The total size of transferred fragments was 60,331 bp, corresponding to approximately 38.6% of chloroplast genome. We developed 18 SNP markers from the chloroplast genic coding sequence regions that were not similar to regions in the mitochondrial genome. These markers included two or three species-specific markers for each species and can be used to authenticate all the seven Panax species from the others. Conclusion: The comparative analysis of chloroplast genomes from seven Panax species elucidated their genetic diversity and evolutionary relationships, and 18 species-specific markers were able to discriminate among these species, thereby furthering efforts to protect the ginseng industry from economically motivated adulteration.

조직별 및 나이에 따른 마이토콘드리아 DNA 결손 (${\Delta}mtDNA^{4977}$)의 축적 (Accumulation of mtDNA Deletion (${\Delta}mtDNA^{4977}$) showing Tissue-Specific and Age-Related Variation)

  • 정혜진;정형민;조성원;김현아;이경술;권황;최동희;곽인평;윤태기;이숙환
    • Clinical and Experimental Reproductive Medicine
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    • 제30권3호
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    • pp.203-206
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    • 2003
  • Objectives: Controversial arguments exists on both the case for and against on the accumulation of mitochondrial DNA (mtDNA) deletion in association to tissue and age. The debate continues as to whether this mutation is a major contributor to the phenotypic expression of aging and common degenerative diseases or simply a clinical insignificant epiphenomenon. The objective of this study was to determine whether the accumulation of mtDNA deletion is correlated with age-related and tissue-specific variation. Materials and Methods: One hundred and fifty-seven tissues from blood, ovary, uterine muscle, and abdominal muscle were obtained from patients ranging in age from 31$\sim$60 years. After reviewing the clinical reports, patients with mitochondrial disorder were excluded from this study. The tissues were obtained at gynecological surgeries with the consent of the patient. Total DNA isolated from blood, ovary, uterine muscle, and abdominal muscle was amplified by two rounds of PCR using two pairs of primers corresponding to positions 8225-8247 (sense), 13551-13574 (antisense) for the area around deleted mtDNA and 8421-8440 (sense), 13520-13501 (antisense) for nested PCR product. A statistical analysis was performed by $x^2$-test. Results: About 0% of blood, 94.8% of ovary, 71.4% of uterine muscle, and 86.1% abdominal muscle harbored mtDNA deletion. When we examined the proportion of deleted mtDNA according to age deletion rate was 90% of ovary, 63.6% of uterine muscle, 77.7% of abdominal muscle in thirties and 100% of all tissue in fifties. Conclusion: The findings of this study suggest that the mtDNA deletion is varied in tissue-specific pattern and increases with aging.

돼지 Duroc 품종에서 미토콘드리아 유전체 서열의 특성과 집단의 유전적 다양성 (Complete Mitochondrial Genome Sequence and Genetic Diversity of Duroc Breed)

  • 조인철;한상현;최유림;고문석;이정규;이준헌;전진태
    • Journal of Animal Science and Technology
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    • 제46권6호
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    • pp.937-946
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    • 2004
  • Duroc 품종은 돼지 사육에 있어 산육성과 육질 향상을 위해 이용되고 있다. 본 연구는 육종에 많이 이용되는 Duroc 품종의 모계 특이적인 서열의 검색과 계통유전학적 유연관계의 정립을 위하여 미토콘드리아 유전체의 전체 염기서열을 결정하고 집단 내 다형성을 조사하였다. mtDNA 전체 서열의 길이는 16,584-bp 이고, D-loop과 tRNA, rRNA 유전자 영역에서는 삽입/결실이 확인되었다. 4개의 coding gene (COⅡ, COⅢ, ND3, ND4)에서 불완전한 종결코돈을, ND4L과 ND2 유전자는 선택적 개시코돈 양상을 보였다. Duroc 집단에 대한 분석 결과 조절영역에서의 특이적인 11-bp 중복 단위가 일부 개체(15.2%)에서 발견되었고, ND2의 개시코돈과 CYTB 유전자에서도 다형현상을 보였다. 각각의 유전자 영역에서의 다형성은 서로 연관되어 있었고, 그 결과 Duroc 집단은 크게 두 가지 haplotype으로 구분되었다. 계통수에서 Duroc mtDNA 서열은 유럽계열 cluster에 위치하였으나, haplotype 분석과 기존에 연구결과들을 종합해 보면 Duroc 품종은 여러 모계선조 집단에서 기원한 것으로 보이며, 유럽과 아시아 계열 모두가 품종 형성에 이용된 것으로 사료된다된 것으로 사료된다.

베트남 Platycephalus cultellatus Richardson, 1846 (Teleostei; Scorpaeniformes)의 전장 미토콘드리아 유전체와 분자계통 (The Complete Mitochondrial Genome and Molecular Phylogeny of the Flathead Platycephalus cultellatus Richardson, 1846 from Vietnam (Teleostei; Scorpaeniformes))

  • ;;최윤희;김근용;허정수;김근식;유정화;김경미;윤문근
    • 한국어류학회지
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    • 제33권4호
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    • pp.217-225
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    • 2021
  • 양태과는 경제적으로 중요한 저서성 바닷물고기로써 인도태평양과 지중해의 열대 또는 온대지역의 하구역에 서식한다. 이번 연구에서 우리는 차세대염기서열분석법을 이용하여 flathead의 일종인 Platycephalus cultellatus Richardson, 1846의 전장 미토콘드리아 유전체를 최초로 분석하였다. 그 총 길이는 16,641 bp이었고, 단백질암호화 유전자 13개, 리보솜 RNA 유전자 2개, 전량 RNA 유전자 22개로 구성되었다. 그 유전자의 구성과 배열은 전형적인 척추동물과 같았다. 단백질암호화 유전자 13개를 바탕으로 작성된 분자계통수에서 P. cultellatus는 같은 과에 속하는 종들과 단계통군을 형성하였고, P. indicus를 비롯하여 Platycephalus sp.로 등록된 표본들과 함께 분기하였다. 또한 DNA 바코딩 분자마커로 널리 사용되는 cox1 유전자를 바탕으로 작성된 분자계통수에서 우리의 표본은 같은 종에 속하는 표본들과 단계통군을 형성하여 그 분류학적 위치가 명확하게 밝혀졌다. 이번 연구에서 새롭게 분석된 P. cultellatus의 미토콘드리아 유전체는 이후 flatheads의 분류와 분자계통을 위한 중요한 기초정보로 활용될 것이다.

Genomic approaches for the understanding of aging in model organisms

  • Park, Sang-Kyu
    • BMB Reports
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    • 제44권5호
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    • pp.291-297
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    • 2011
  • Aging is one of the most complicated biological processes in all species. A number of different model organisms from yeast to monkeys have been studied to understand the aging process. Until recently, many different age-related genes and age-regulating cellular pathways, such as insulin/IGF-1-like signal, mitochondrial dysfunction, Sir2 pathway, have been identified through classical genetic studies. Parallel to genetic approaches, genome-wide approaches have provided valuable insights for the understanding of molecular mechanisms occurring during aging. Gene expression profiling analysis can measure the transcriptional alteration of multiple genes in a genome simultaneously and is widely used to elucidate the mechanisms of complex biological pathways. Here, current global gene expression profiling studies on normal aging and age-related genetic/environmental interventions in widely-used model organisms are briefly reviewed.