• 제목/요약/키워드: misincorporation

검색결과 5건 처리시간 0.019초

Optimization of SNP Genotyping Assay with Fluorescence Polarization Detection

  • Cai Chun Mei;Van Kyujung;Kim Moon Young;Lee Suk-Ha
    • 한국작물학회지
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    • 제50권5호
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    • pp.361-367
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    • 2005
  • Single nucleotide polymorphisms (SNPs) are valuable DNA markers due to their abundance and potential for use in automated high-throughput genotyping. Numerous SNP genotyping assays have been developed. In this report, one of effective and high throughput SNP genotyping assays, which was named the template-directed dye-terminator incorporation with fluorescence polarization detection (FP-TDI) was described. Although the most of this assay succeed, the objective of this work was to deter­mine the reasons for the failures, find ways to improve the assay and reduce the running cost. Ninety $F_2$-derived soybean, Glycine max (L.) Merr., RILs from a cross between 'Pureunkong' and 'Jinpumkong 2' were genotyped at four SNPs. FP measurement was done on $Victot^3$ microplate reader (perkinelmer Inc., Boston, MA, USA). Increasing the number of thermal cycles in the single-base extension step increased the separation of the FP values between the products corresponding to different genotypes. But in some assays, excess of heterozygous genotypes was observed with increase of PCR cycles. We discovered that the excess heterozygous was due to misincorporation of one of the dye­terminators during the primer extension reaction. After pyrophosphatase incubation and thermal cycle control, misincoporation can be effectively prevented. Using long amplicons instead of short amplicons for SNP genotyping and decreasing the amount of dye terminator and Acyclopol Taq polymerase to 1/2 or 1/3 decreased the cost of the assay. With these minor adjustments, the FP-TDI assay can be used more accurately and cost-effectively.

RECOMMENDED DIETARY ALLOWANCES FOR GENOMIC STABILITY

  • Fenech, Michael
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2001년도 International Symposium on Dietary and Medicinal Antimutgens and Anticarcinogens
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    • pp.9-9
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    • 2001
  • Several micronutrients (vitamins and minerals) are required as co-factors in DNA synthesis, DNA repair, DNA methylation and apoptosis. Some notable examples include (a) folic acid and vitamin B12 required for maintenance methylation of DNA and the synthesis of dTTP from dUTP, thus prevent the misincorporation of uracil into DNA, a highly mutagenic and chromosome-breaking event, (b) niacin, is essential in the form of the coenzymes NAD and NADP which act as a substrate for polyADPribose polymerase (PARP), an enzyme thought to facilitate efficient DNA repair and telomere length regulation and (c) zinc, apart from its antioxidant role as a co-factor in Cu/Zn SOD, it is required in its stabilizing role of the DNA-binding domain of p53 (residues 102-292) and thus is essential for apoptotic response to DNA damage. (omitted)

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Increased DNA Polymerase Fidelity of the Lamivudine Resistant Variants of Human Hepatitis B Virus DNA Polymerase

  • Hong, Young-Bin;Choi, Yong-Wook;Jung, Gu-Hung
    • BMB Reports
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    • 제37권2호
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    • pp.167-176
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    • 2004
  • Although efficient antiviral lamivudine is used for HBV-infected patients, a prolonged treatment with nucleoside analogs often results in lamivudine-resistant variants. In this study, we evaluated the fidelity of the lamivudine-resistant variants. The FLAG-tagged wild-type (FPolE) and Met550 variants (FPolE/M550A, M550V, and M550I) of HBV DNA polymerases were expressed in insect cells then purified. Like many other reverse transcriptases, no $3'{\rightarrow}5'$ exonuclease activity was detected in the HBV DNA polymerase. Since there is no proofreading activity, then the use of the site-specific nucleotide misincorporation method is beneficial. From the $f_{ins}$ value analysis, it is evident that M550I and M550V exhibit higher fidelity values than the wild-type HBV DNA polymerase, while M550A exhibits similar fidelity values. It is therefore suggested that lamivudine resistance comes from the stringency to dNTP binding and the discrimination of dCTP and lamivudine in M550V and M550I.

Gene Expression Profiling of Doxifluridine Treated Liver, Small and Large Intestine in Cynomolgus (Macaca fascicularis) Monkeys

  • Jeong, Sun-Young;Park, Han-Jin;Oh, Jung-Hwa;Kim, Choong-Yong;Yoon, Seok-Joo
    • Molecular & Cellular Toxicology
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    • 제3권2호
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    • pp.137-144
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    • 2007
  • The mechanism of cytotoxicity of doxifluridine, a prodrug fluorouracil (5-FU), has been ascribed to the misincorporation of fluoropyrimidine into RNA and DNA and to the inhibition of the nucleotide synthetic enzyme thymidylate synthase. Increased understanding of the mechanism of 5-FU has led to the development of strategies that increases its anticancer activity or predicts its sensitivity to patients. Using GeneChip?? Rhesus Macaque Genome arrays, we analyzed gene expression profiles of doxifluridine after two weeks repeated administration in cynomolgus monkey. Kegg pathway analysis suggested that cytoskeletal rearrangement and cell adhesion remodeling were commonly occurred in colon, jejunum, and liver. However, expression of genes encoding extracellular matrix was distinguished colon from others. In colon, COL6A2, COL18A1, ELN, and LAMA5 were over-expressed. In contrast, genes included in same category were down-regulated in jejunum and liver. Interestingly, MMP7 and TIMP1, the key enzymes responsible for ECM regulation, were overexpressed in colon. Several studies were reported that both gene reduced cell sensitivity to chemotherapy-induced apoptosis. Therefore, we suggest they have potential as target for modulation of 5-FU action. In addition, the expression of genes which have been previously known to involve in 5-FU pathway, were examined in three organs. Particularly, there were more remarkable changes in colon than in others. In colon, ECGF1, DYPD, TYMS, DHFR, FPGS, DUT, BCL2, BAX, and BAK1 except CAD were expressed in the direction that was good response to doxifluridine. These results may provide that colon is a prominent target of doxifluridine and transcriptional profiling is useful to find new targets affecting the response to the drug.

고대 DNA의 분석과 검증 (Analysis and Verification of Ancient DNA)

  • 지상현;서민석
    • 헤리티지:역사와 과학
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    • 제40권
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    • pp.387-411
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    • 2007
  • 고대 DNA분석은 인류학, 고고학, 생물학자뿐만 아니라 대중의 관심사가 될 정도로 점차 중요성이 강조되고 있다. 고고학자와 생물학자는 인류의 기원과 집단의 이주, 민족의 형성 그리고 고대인의 질병과 매장문화를 규명하는데 있어 고대 DNA분석을 접목하고 있으며, 이미 멸종된 동물의 계통진화학적인 연구에도 이를 활용하고 있다. 고대 DNA분석의 새로운 전기가 마련된 계기는 고대 시료에서 추출되는 미량의 DNA 증폭을 가능하게 한 종합효소연쇄반응(Polymerase chain reaction, PGR)법이 개발되면서였다. 그러나 고대 DNA는 탈아미노화나 절편화 등의 분자 손상 정도가 심한데 이것은 PCR에서 중합효소의 정확한 DNA 증폭을 방해하는 요인으로 작용한다. 시토신이 탈아미노화되어 우라실을 형성하는 것은 DNA의 염기치환오류를 일으킬 수 있으며, 이런 현상은 증폭 과정에서 고유의 염기서열에 대한 고정치환($C{\rightarrow}T$, $G{\rightarrow}A$)을 유도하게 된다. 또한 대부분의 고대시료는 외부 오염물에 노출되어 있는데, 특히 외부 DNA의 오염은 고대 DNA의 염기서열을 결정함에 있어서 부정확한 결과를 도출시키는 심각한 문제를 초래하곤 한다. 이와 같이 고대 시료는 오랜 기간 동안 자연 분해과정과 다양한 오염물질에 노출되어 있어 그 훼손 정도가 심한 것이 일반적이다. 고대 DNA 연구에 있어서 많은 생화학적 손상과 외부 DNA의 오염을 극복하기 위해서는 보통의 분자생물학적인 방법과 기준보다 더욱더 엄격한 검증 절차에 의하여 연구가 진행되어야 하며, 연구 결과의 신뢰성을 확보하는 것이 무엇보다 중요하다. 따라서 본 글에서는 고대 DNA의 손상과 오염물질에 의한 부정확한 염기서열결정과 오류를 보정하고 예방할 수 있는 연구 기준과 실험적 절차를 설명하고자 한다.