• Title/Summary/Keyword: DNA amplification

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Extension of a 5'- or 3'-end Genomic DNA Sequence by a Single PCR Amplification

  • Jeon, Taeck J.
    • Journal of Integrative Natural Science
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    • v.1 no.3
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    • pp.230-233
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    • 2008
  • A simple and rapid method is described for extending the 5'- or 3'-end genomic sequence of a known partial sequence by only a single round of PCR. This method involves digesting and ligating genomic and plasmid DNAs, and amplifying the 5'-upstream or 3'-end downstream sequence of the known DNA sequence, using two primers, one gene specific and the other plasmid specific. A single round of PCR amplification is sufficient to produce gene-specific bands detectable in gels. By using this approach, 5'-end genomic sequence of the D-amoeba sams gene was extended.

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Rapid and Efficient Purification of Nucleic Acids from the Macroalga Porphyra(Rhodophyta) (홍조류인 한국산 김종에서의 염색체 DNA 분리방법)

  • 류태형;최학선;최경희;이춘환
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.27 no.6
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    • pp.1166-1172
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    • 1998
  • A method for the isolation and purification of DNA from a red algae, Porphyra was innovated. The innovation of the method consists mainly of three steps that include sodium acetate treatment, chloroform extraction, and 0.2 volume isopropanol precipitation step. The sodium acetate treatment was designed to remove polysaccharide contamination, and the isopropanol step to remove proteins and salts contaminents. Genomic DNA,s of several species(for example, P. tenera, P. yezoensis, P. seriata, and P. pseudolinearis) was successfully isolated by the innovated method. The amount of DNA purified from one g of sample material with the innovated method was 53 g in average. The resulting DNA was characterized to include high molecular weight and showed no nuclease activity. The DNA was pure enough to be digested directly by various restriction enzymes without any difficulties. Porphyra DNA was pure enough and adequate for amplification reaction through the polymerase chain reaction (small nuclear rDNA PCR amplification).

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Characterization of the Nucleotide Sequence of a Polyubiquitin Gene (PUBC1) from Arabian Camel, Camelus dromedarius

  • Al-Khedhairy, Abdulaziz Ali A.
    • BMB Reports
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    • v.37 no.2
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    • pp.144-147
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    • 2004
  • Molecular amplification and sequencing of genomic DNA that encodes camel polyubiquitin (PUBC1) was performed by a polymerase chain reaction (PCR) using various sets of primers. The amplification generated a number of DNA fragments, which were sequenced and compared with the polyubiquitin coding sequences of various species. One DNA fragment that conformed to 325 bp was found to be 95 and 88% homologous to the sequences of human polyubiquitin B and C, respectively. The DNA translated into 108 amino acids that corresponded to two fused units of ubiquitin with no intervening sequence, which indicates that it is a polyubiquitin and contains at least two units of ubiquitin. Although, variations were found in the nucleotide sequence when compared to those of other species, the amino acid sequence was 100% homologous to the polyubiquitin sequences of humans, mice, and rats. This is the first report of the polyubiquitin DNA coding sequence and its corresponding amino acid sequence from camels, amplified using direct genomic DNA preparations.

Applied Research of Ultra Sonication for Ancient DNA Preparation of Excavated Human Skeletal Remains (초음파를 이용한 출토 인골 DNA 추출법 연구)

  • Kim, Yun-Ji;Jee, Sang-Hyun;Hong, Jong-Ouk
    • 보존과학연구
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    • s.29
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    • pp.137-148
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    • 2008
  • Analyses of ancient DNA (aDNA) from archaeological and historical skeletal material are characterized by low quality. Many soil contaminants such as humic acid, fulvic acid, and bone collagen are often co-extracted with aDNA and inhibit amplification by polymerase chain reaction (PCR). In this study, we compared with two methods of DNA extraction by phenolchloroform extraction and silica-bead extraction. In addition, we applied new protocol, ultra sonication based silica-bead extraction method to extract aDNA from some ancient human skeletal remains. This method was more effective by both mitochondrial DNA (mtDNA) and amelogenin gene amplification.

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Comparison of Non-amplified and Amplified DNA Preparation Methods for Array-comparative Gnomic Hybridization Analysis

  • Joo, Hong-Jin;Jung, Seung-Hyun;Yim, Seon-Hee;Kim, Tae-Min;Xu, Hai-Dong;Shin, Seung-Hun;Kim, Mi-Young;Kang, Hyun-Mi;Chung, Yeun-Jun
    • Molecular & Cellular Toxicology
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    • v.4 no.3
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    • pp.246-252
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    • 2008
  • Tumor tissue is usually contaminated by normal tissue components, which reduces the sensitivity of analysis for exploring genetic alterations. Although microdissection has been adopted to minimize the contamination of tumor DNA with normal cell components, there is a concern over the amount of microdissected DNA not enough to be applied to array-CGH reaction. To amplify the extracted DNA, several whole genome amplification (WGA) methods have been developed, but objective comparison of the array-CGH outputs using different types of WGA methods is still scarce. In this study, we compared the performance of non-amplified microdissected DNA and DNA amplified in 2 WGA methods such as degenerative oligonucleotide primed (DOP)-PCR, and multiple strand displacement amplification (MDA) using Phi 29 DNA polymerase. Genomic DNA was also used to make a comparison. We applied those 4 DNAs to whole genome BAC array to compare the false positive detection rate (FPDR) and sensitivity in detecting copy number alterations under the same hybridization condition. As a result microdissected DNA method showed the lowest FPDR and the highest sensitivity. Among WGA methods, DOP-PCR amplified DNA showed better sensitivity but similar FPDR to MDA-amplified method. These results demonstrate the advantage and applicability of microdissection for array-CGH analysis, and provide useful information for choosing amplification methods to study copy number alterations, especially based on precancerous and microscopically invaded lesions.

Evaluation of Amplified-based Target Preparation Strategies for Toxicogenomics Study : cDNA versus cRNA

  • Nam, Suk-Woo;Lee, Jung-Young
    • Molecular & Cellular Toxicology
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    • v.1 no.2
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    • pp.92-98
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    • 2005
  • DNA microarray analysis of gene expression in toxicogenomics typically requires relatively large amounts of total RNA. This limits the use of DNA microarray when the sample available is small. To confront this limitation, different methods of linear RNA amplification that generate antisense RNA (aRNA) have been optimized for microarray use. The target preparation strategy using amplified RNA in DNA microarray protocol can be divided into direct-incorporation labeling which resulted in cDNA targets (Cy-dye labeled cDNA from aRNA) and indirect-labeling which resulted in cRNA targets (i.e. Cy-dye labeled aRNA), respectively. However, despite the common use of amplified targets (cDNA or cRNA) from aRNAs, no systemic assessment for the use of amplified targets and bias in terms of hybridization performance has been reported. In this investigation, we have compared the hybridization performance of cRNA targets with cDNA targets from aRNA on a 10 K cDNA microarrays. Under optimized hybridization conditions, we found that 43% of outliers from cDNA technique and 86% from the outlier genes were reproducibly detected by both targets hybridization onto cDNA microarray. This suggests that the cRNA labeling method may have a reduced capacity for detecting the differential gene expression when compared to the cDNA target preparation. However, further validation of this discordant result should be pursued to determine which techniques possesses better accuracy in identifying truly differential genes.

Treatment of Genomic DNA with Restriction Enzyme(s) Improves Amplification Efficiency by Polymerase Chain Reaction (제한효소 처리된 Genomic DNA에 의한 Polymerase Chain Reaction 증폭 효율에 관한 연구)

  • Min Hae-Ki;Chang Young-Hyo
    • Korean Journal of Microbiology
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    • v.40 no.3
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    • pp.254-256
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    • 2004
  • Polymerase chain reaction (PCR) is a powerful tool for precisely amplifying selected DNA sequences that have had a broad impact on genomic studies. When examining human $\alpha$- and $\beta$- tryptase genes which have 95% DNA homology, inconsistent PCR amplification of genomic sequences hampered our progress. This study suggests that long PCR technique on the original DNA digested with restriction enzymes improves both efficiency and sensitivity of PCR. These improved results seem to derived from the effective denaturation of the original genomic DNA template or reduction of formation of secondary structures that block either primer annealing or extension in PCR. Elimination of homo- or hetero-duplex products derived from highly homologous genes provides an additional advantage in this study. This communication describes how the use of restriction enzymes improved these efficiencies, and also facilitated studies of highly homologous genes including tryptase genes.

A Simple Method for Elimination of False Positive Results in RT-PCR

  • Martel, Fatima;Grundemann, Dirk;Schomig, Edgar
    • BMB Reports
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    • v.35 no.2
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    • pp.248-250
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    • 2002
  • Discrimination between the amplification of mRNA and contaminating genomic DNA is a common problem when performing a reverse transcriptase-polymerase chain reaction (RT-PCR). Even after treatment of the samples with DNAse, it is possible that negative controls (samples in which no reverse transcriptase was added) will give positive results. This indicates that there was amplification of DNA, which was not generated during the reverse transcriptase step. The possibility exists that Taq DNA polymerase acts as a reverse transcriptase, generating cDNA from RNA during the PCR step. In order to test this hypothesis, we incubated samples with a DNAse-free RNAse after the cDNA synthesis. Comparison of the results that were obtained from these samples (incubated with or without DNAse-free RNAse) confirms that the reverse transcriptase activity of Taq DNA polymerase I is a possible source of false positive results when performing RT-PCR from intronless genes. Moreover, we describe here a simple and rapid method to overcome the false positive results that originate by this activity of Taq polymerase.

Limits of Direct PCR Amplification from Seaweeds Using Arbitrary and ITS Primers (해조류로부터 Arbitrary 및 ITS Primer들을 사용한 직접 PCR 유전자 증폭반응의 한계)

  • 김용국;진형주;박선미;진덕희;홍용기
    • Journal of Life Science
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    • v.9 no.1
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    • pp.15-21
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    • 1999
  • The random amplified ploymorphic DNAs (RAPD) assay is a simple and useful tool in identification of appropriate genetic markers, that requires no knowledge of target DNA sequence. RAPD products were generated directly from seaweed tissues, without prior nucleic acid extraction, of Porphyra yezoensis, Ulva pertusa and Undaria pinnatifida. The nuclear rDNA internal transcribed spacer (ITS) fragment however was not amplified directly from the seaweed tissues. Using DNA extracted by the LiCl method, both the ITS and RAPD's have been amplified by the polymerase chain reaction. RAPD of P yezoensis, thallus (n) and conchocelis (2n) produced lots of different polymorphic bands (36-50$\%$) depending on the arbitrary primers used. Difference was also observed between direct tissues amplification and DNA extracts amplification (53-57$\%$). Thus it is important to use the same ploidy of tissue for DNA extraction and as a RAPD template.

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