• 제목/요약/키워드: 3' Exonuclease

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減數分裂, 最近의 進步(I) (Recent Advancement on the Knowledges of Meiotic Division (I))

  • 한창열
    • 식물조직배양학회지
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    • 제25권6호
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    • pp.453-475
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    • 1998
  • During the 100 years since the initial discovery of meiotic phenomenon many brilliant aspects have been elucidated, but further researches based on light microscopy alone as an experimental tool have been found to have some limits and shortcomings. By the use of electron microscopy and armed with the advanced knowledges on modern genetics and biochemistry it has been possible to applu molecular technology in gaining information on the detailed aspects of meiosis. As synapsis takes place, a three-layered proteinous structure called the synatonemal complex starts to form in the space between the homologous chromosomes. To be more precise, it begins to form along the paired chromosomes early in the prophase I of meiotic division. The mechanism that leads to precise point-by-point pairing between homologous chromocomes division. The mechamism that leads to precise point-by-point pairing between homologous chromosomes remains to be ascertained. Several items of information, however, suggest that chromsome alignment leading to synapsis may be mediated somehow by the nuclear membrane. Pachytene bivalents in eukaryotes are firmly attached to the inner niclear membrane at both termini. This attached begins with unpaired leptotene chromosomes that already have developed a lateral element. Once attached, the loptotene chromosomes begin to synapse. A number of different models have been proposed to account for genetic recombination via exchange between DNA strands following their breakage and subsequent reunion in new arrangement. One of the models accounting for molecular recombination leading to chromatid exchange and chiasma formation was first proposed in 1964 by Holliday, and 30 years later still a modified version of his model is favored. Nicks are made by endomuclease at corresponding sites on one strant of each DNA duplex in nonsister chromatid of a bivalent during prophase 1 of meiosis. The nicked strands loop-out and two strands reassociate into an exchanged arrangement, which is sealed by ligase. The remaining intact strand of each duplex is nicked at a site opposite the cross-over, and the exposed ends are digested by exonuclease action. Considerable progress has been made in recent years in the effort to define the molecular and organization features of the centromere region in the yeast chromosome. Centromere core region of the DNA duplex is flanked by 15 densely packed nucleosomes on ons side and by 3 packed nucleosomes on the other side, that is, 2000 bp on one side and 400 400 bp in the other side. All the telomeres of a given species share a common DNA sequence. Two ends of each chromosome are virtually identical. At the end of each chromosome there exist two kinds of DNA sequence" simple telpmeric sequences and telpmere-associated sequencies. Various studies of telomere replication, function, and behabior are now in progress, all greatly aided by molecular methods. During nuclear division in mitosis as well as in meiosis, the nucleili disappear by the time of metaphase and reappear during nuclear reorganizations in telophase. When telophase begins, small nucleoli form at the NOR of each nucleolar-organizing chromosome, enlarge, and fuse to form one or more large nucleoli. Nucleolus is a special structure attached top a specific nucleolar-organizing region located at a specific site of a particular chromosome. The nucleolus is a vertical factory for the synthesis of rRNAs and the assenbly of ribosome subunit precursors.sors.

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Cloning된 효모의 RNAI 유전자의 특성에 관하여 (Characterization of the cloned RNA1 gene of Saccharomyces cerevisiae)

  • 송영환;김대영;김진경
    • 한국어병학회지
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    • 제6권2호
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    • pp.93-101
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    • 1993
  • 효모의 RNAI유전자는 RNA processing에 관여 하는지 혹은 RNA transport에 관여 하는지 아직까지 유전자의 기능이 정확히 알려져 있지 않은 실정이다. 효모의 RNAI 유전자의 기능을 파악하기 위한 방법으로 본 연구에서는 rna1-1 mutant gene을 cloning하여 이에 대한 DNA sequence를 조사함으로써 RNAI 유전자와 rna1-1 유전자의 차이점을 이해하고자 하였다. rna1-1 marker를 갖는 yeast strain(R49)로 부터 genomic DNA를 추출하여 이를 BglII로 절단하여 genomic southern blotting을 행한 결과 wild type의 경우와 동일하게 3.4 kb에서 hybridization되는 signal을 얻었으며, RNAl 및 rna1-1이 yeast genome내에 single site로 존재함을 보여 주는 결과를 얻었다. mutant strain으로 부터 얻은 3.4 kb의 BglI fragment를 pUC19의 BamHI site에 subcloning하여 transformant들을 얻었고, wild type RNAl 유전자를 probe로 하여 rna1-1 mutant 유전자를 cloning할 수 있었다. pUC19에 cloning된 RNA1유전자 및 rna1-1유전자로부터 다양한 Ba131유도체를 얻어 이들에 대한 염기 서열을 비교한 결과 transcription initation site에서부터 down stream쪽으로 17 아미노산위치에 TCC가 TTC로 대치되어 있었으며 그 결과 serine이 phenylalanine으로 변환되는 결과를 얻었다. Wild type RNAI gene의 5'-region에는 3군데의 TATA-like sequence가 true TATA box인지 확인하기 위하여 Bal3I deletion에 의해 -103nt까지 deletion된 유도체를 얻었으며 ${\Delta}RNAI$, rna1-1, 81-2-6 clone이 rna1-1 allele와 complementation한지 확인하였으나 ${\Delta}RNAI$은 TS-complementation을 하지 못하였다. 따라서 현재까지 TATA-box라고 알려진 부분은 promoter로 작용하지 못함을 확인하였다.

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우리나라 감자에 발생하는 PVY의 병원학적 특성 및 외피단백질 유전자 분석 (Etiological Properties and Coat Protein Gen Analysis of Potato Virus Y Occuring in Potatoes of Korea)

  • 정승룡
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 1995년도 Proceedings of special lectures on Molecular Biological Approaches to Plant Disease National Agricultural Science and Technology Institute Suwon, Korea
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    • pp.77-96
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    • 1995
  • To obtain basic informations for the improvement of seed potato production in Korea, some etiological properties of potato virus Y(PVY) distributed in the major seed potato production area(Daekwanryeong) were characterized, and the nucleotide and amino acid sequences of the coat protein gene of the PVY strains isolated were analyzed. PVY strains in Daekwonryeong, an alpine area, were identified to be two strains, PVYo and PVYN by symptoms of indicator plants, and their distribution in potato fields was similar. Major symptom on potato varieties by PVY was grouped as either mosaic alone or mosaic accompanied with veinal necrosis in the lower leaves. The symptom occurrence of the two symptoms was similar with Irish Cobbler, but Superior showed a higher rate of mosaic symptom than the other. The PVY strain which was isolated from potato cv. Superior showing typical mosaic symptoms produced symptoms of PVY-O on the indicator plants of Chenopodium amaranticolor, Nicotiana tabacum cv. Xanthi nc and Physalis floridana, but no symptom o Capsicum annum cv. Ace. Moreover, results from the enzyme-linked immunosorbent assay with monoclonal and polyclonal antibodies showed that the isolated PVY reacts strongly with PYV-O antibodies but does not react specifically with PVY-T antibodies. The purified virus particles were flexious with a size of 730$\times$11nm. On the basis of the above characteristics, the strain was identified to be a PVY-O and named as of PVY-K strain. The flight of vector aphids was observed in late May, however, the first occurrence of infected plants was in mid June with the bait plants surrounded with PVY-infected potato plants and early July with the bait plants surrounded with PVY-free potato plants. PVY infection rates by counting symptoms on bait plants (White Burley) were 1.1% with the field surrounded with PVY-free potato plants and 13.7% the fields surrounded with PVY-infected potato plants, showing the effect of infection pressure. The propagated PVY-K strain on tobacco(N. sylvestris) was purified, and the RNA of the virus was extracted by the method of phenol extraction. The size of PVY-K RNA was measured to be 9, 500 nucleotides on agarose gel electrophoresis. The double-stranded cDNAs of PVY-K coat protein(CP) gene derived by the method of polymerase chain reaction were transformed into the competent cells of E. coli JM 109, and 2 clones(pYK6 and pYK17) among 11 clones were confirmed to contain the full-length cDNA. Purified plasmids from pYK17 were cut with Sph I and Xba I were deleted with exonuclease III and were used for sequencing analysis. The PVY-K CP gene was comprised of 801 nucleotides when counted from the clevage site of CAG(Gln)-GCA(Ala) to the stop codon of TGA and encoded 267 amino acids. The molecular weight of the encoded polypeptides was calculated to be 34, 630 daltons. The base composition of the CP gene was 33.3% of adenine, 25.2% of guanine, 20.1% of cytosine and 21.4% of uracil. The polypeptide encoded by PVY-K CP gene was comprised of 22 alanines, 20 threonines, 19 glutamic acids and 18 glycines in order. The homology of nucleotide sequence of PVY-K CP gene with those of PVY-O(Japan), PVY-T(Japan), PVY-TH(Japan), PVYN(the Netherlands), and PVYN(France) was represented as 97.3%, 88.9%, 89.3%, 89.6% and 98.5%, respectively. The amino acid sequence homology of the polypeptide encoded by PVY-K CP gene with those encoded by viruses was represented as 97.4%, 92.5%, 92.9%, 92.9%, and 98.5%, respectively.

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폐암발생의 위험인자로서 흡연과 Paraoxonase 1 유전자 다형성 (Cigarette Smoking and Polymorphism of the Paraoxonase 1 Gene as Risk factors for Lung Cancer)

  • 이철호;이계영;홍윤철;최강현;김용대;강종원;김헌;홍장수
    • Tuberculosis and Respiratory Diseases
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    • 제58권5호
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    • pp.490-497
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    • 2005
  • 연구배경 : Paraoxonase는 산소유리기 제거효소의 하나로서, 유기인제 화합물의 독소제거에 있어서 중요한 역할을 한다. 본 연구에서는 한국인 남성에서 PON1 Q192R 유전자 다형성이 흡연과 관련하여 폐암발생에 미치는 영향을 조사하였다. 대상 및 방법 : 연구대상자는 조직 병리학적으로 폐암으로 새롭게 진단받은 남성 환자 335명과, 이들과 3세 이내에서 연령을 짝지은 동수의 대조군으로 하였다. 직접면접조사를 통하여 인적사항과 직업력 그리고 흡연력, 음주력 등을 조사하였다. TaqMan 실시간 중합 효소 연쇄반응을 이용하여 PON1 유전자 다형성을 확인하고, 폐암과 흡연 그리고 PON1 유전자 다형성 유형 사이의 상호 관련성을 통계적으로 분석하였다. 결 과 : 흡연과 PON1 유전자 Q/Q형이 폐암 발생 위험도를 유의하게 증가시켰다. 흡연자에서 PON1 Q/Q형인 사람이 Q/R 혹은 R/R형인 사람에 비하여 폐암에 대한 교차비(95% 신뢰구간)가 2.56(1.52 - 4.31)으로 폐암발생 위험도가 통계적으로 유의하게 증가하였다. 비흡연자이며 PON1 Q/R 혹은 R/R형인 사람을 비교군으로 하였을 때, 비흡연자이며 PON1 Q/Q형인 군, 흡연자이며 Q/R 혹은 R/R형인 군, 흡연자이며 Q/Q형군으로 이행할수록 대응비는 모든 세포유형에서 유의하게 증가하였다. 특히 흡연자이며 Q/Q형인 사람은 비흡연자이며 PON1 Q/R 혹은 R/R형인 사람에 비하여, 편평세포암종은 53.77(6.55 - 441.14)배, 선암종은 6.25(1.38 - 28.32)배, 소세포암종은 59.94(4.66 - 770.39) 배 더 잘 생기는 것으로 나타났다. 결 론 : 흡연과 PON1 Q/Q형은 폐암의 위험인자이며, 흡연과 PON1 Q/Q형은 조직학적 유형에 관계없이 폐암발생 위험도를 서로 상승적으로 증가시키는 것으로 판단된다.