• Title/Summary/Keyword: DNA probe hybridization

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Using Reverse Dot Hybridization Method and 16S rRNA Gene (16S rDNA) for Identifying the Food Poisoning Microorganism in Foods (Reverse dot hybridization 방법과 16S rRNA gene(16S rDNA)을 이용한 식품에서 식중독균의 탐색)

  • Kim, Min-Seong;Shin, Kyu-Chul;Lee, Hyung-Gu;Han, Myung-Soo;Min, Byung-Re;Choi, Yong-Keel
    • Korean Journal of Food Science and Technology
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    • v.35 no.3
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    • pp.470-474
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    • 2003
  • DNA sequence information on small-subunit rRNA gene (16S rDNA) obtained from food-poisoning bacterial culture was used to investigate the presence of bacterial pathogens in food. By reverse dot blot detection method, presence of food-poisoning bacteria could be confirmed on hybridization of digoxigenin-labeled 16S rDNA Polymerase Chain Reaction (PCR) primer product and biotin-labeled specific oligonucleotide probe. Escherichia coli, Bacillus cereus. and Salmonella sp. were used as the representative food-poisoning bacterial microorganisms. An oligonucleotide probe, based on the variable region of 16S rRNA gene, was used as the specific probe. These tools may be more useful than classic biochemical method for rapid identification of contaminated food.

A Study on Match and Mismatch DNA Hybridization properties Using DNA Hybridization Detection Sensor (DNA Hybridization 검출 센서를 이용한 매치 및 미스매치 DNA hybridization 특성 연구)

  • Kim, Do-Kyun;Kwon, Young-Soo
    • Proceedings of the KIEE Conference
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    • 2003.10a
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    • pp.89-91
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    • 2003
  • The determination of DNA hybridization reaction can apply the molecular biology research, clinic diagnostics, bioengineering, environment monitoring, food science and other application area. So, the improvement of DNA detection system is very important for the determination of this hybridization reaction. In this study, we report the characterization of the probe and target oligonucleotide hybridization reaction using the evanescent field microscopy. First, we have fabricated DNA chip microarray. The particles which were immobilized oligonucleotides were arranged by the random fluidic self-assembly on the pattern chips, using hydrophobic interaction. Second, we have detected DNA hybridization reaction using evanescent field microscopy. The 5'-biotinylated probe oligonucleotides were immobilized on the surface of DNA chip microarray and the hybridization reaction with the Rhodamine conjugated target oligonucleotide was excited fluorescence generated on the evanescent field microscopy. In the foundation of this result, we could be employed as the basis of a probe olidonucleotide, capable of detecting the target oligonucleotide and monitoring it in a large analyte concentration range and various mismatching condition.

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Real-Time Detection of DNA Hybridization Assay by Using Evanescent Field Microscopy

  • Kim, Do-Kyun;Choi, Yong-Sung;Murakami, Yuji;Tamiya, Eiichi;Kwon, Young-Soo
    • KIEE International Transactions on Electrophysics and Applications
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    • v.11C no.3
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    • pp.85-90
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    • 2001
  • The determination of DNA hybridization reaction can apply the molecular biology research, clinic diagnostics, bioengineering, environment monitoring, food science and other application area. So, the improvement of DNA detection system is very important for the determination of this hybridization reaction. In this study, we report the characterization of the probe and target oligonucleotide hybridization reaction using the evanescent field microscopy. First, we have fabricated DNA chip microarray. The particles which were immobilized oligonucleotides were arranged by the random fluidic self-assembly on the pattern chips, using hydrophobic interaction. Second, we have detected DNA hybridization reaction using evanescent field microscopy. The 5'-biotinylated probe oligonucleotides were immobilized on the surface of DNA chip microarray and the hybridization reaction with the Rhodamine conjugated target oligonucleotide was excited fluorescence generated on the evanescent field microscopy. In the foundation of this result, we could be employed as the basis of a probe olidonucleotide, capable of detecting the target oligonucleotide and monitoring it in a large analyte concentration range and various mismatching condition.

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Cloning of nif genes from Enterobacter agglomerans in Escherichia coli. (Enterobacter agglomerans의 질소고정유전자 Cloning)

  • 정건섭;이정기;민태익;변유량;유주현
    • Microbiology and Biotechnology Letters
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    • v.15 no.2
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    • pp.116-121
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    • 1987
  • In order to cloning of the nif genes of Enterobacter agglomerans NFB-264, the digested total DNA of the strain was ligated to pBR 322 and transformed into E. coli. Through the negative selection and colony hybridization, the transformants were obtained. The recombinant plasmids, pNEL 10 and pNES 20 were extracted from these transformants. It was known from Southern hybridization that pNEL 10 contained the 12 Mdal foreign DNA fragment hybridized with nif Q-X probe and pNES 20 included the 5 Mdal foreign DNA fragment hybridized with nif NE and nif YK probe.

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Improvement in Sensitivity by Increasing the Frequency of SAW Sensors for DNA Detection (DNA 측정용 SAW 센서의 주파수 증대에 의한 감도향상)

  • Sakong, Jung-Yul;Kim, Jae-Ho;Lee, Soo-Suk;Roh, Yong-Rae
    • The Journal of the Acoustical Society of Korea
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    • v.26 no.1
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    • pp.42-47
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    • 2007
  • In this paper. we have studied improvement in sensitivity by increasing the frequency of SAW sensors for detecting the immobilization and hybridization of DNA. The sensor consists of twin SAW delay lines operating at 200MHz, a sensing channel and a reference channel. fabricated on $36^{\circ}$ rotated Y-cut X-propagation $LiTaO_3$ crystals. The optimum concentration of probe and target DNA was decided for the improvement of detection mechanism. and digital syringe pump system was used to reduce the human errors. The hybridization between immobilized probe DNA and target DNA on the gold-coated delay line results in mass loading on the delay line of the sensing channel. Thus, the relative frequency change was monitored in relation to the mass loading. The measurement results showed a good response of the sensor to the DNA hybridization with a maximum sensitivity level up to 0.066ng/m1/Hz.

Genomic DNA probe and purification of Theileria sergenti merozoites in Korean cattle (한우에 감염된 Theileria sergenti merozoite의 순수분리와 genomic DNA probe에 관한 연구)

  • Chae, Joon-seok;Lee, Joo-mook;Kwon, Oh-deog;Chae, Keon-sang
    • Korean Journal of Veterinary Research
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    • v.34 no.2
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    • pp.387-394
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    • 1994
  • To make the genomic DNA probe of Theileria sergenti, the merozoites were purified from bovine erythrocytes. The infected erythrocytes were lysed by Aeromonas hydrophila(Ah-1) hemolysin, and the parasites were isolated by ultracentrifugation on a Percoll discontinuous density gradient. For construction of a T sergenti genomic DNA library, T sergenti DNA was digested with Pstl and the fragments were ligated into the PstI site of pUC19 before transformation of Escherichia coli JM83. Out of thousands of transformants obtained by transformation of E coli JM83 with the genomic library, three plasmids were chosen. The sizes of the inserted DNAs were 2.9kb(2.4kb and 0.5kb) in pKTS1, 4.3kb in pKTS2 and 1.5kb in pKTS3, respectively. The DNA fragments used as probe KTS1(2.4kb), KTS2(4.3kb) and KTS3(1.5kb) were labeled digoxigenin-11-dUTP for the Southern hybridization. In Southern hybridization, all of the probes(KTS1, KTS2 and KTS3) reacted specifically to T sergenti DNA, but not to bovine leucocyte DNA. In order to find out the sensitivities of the digoxigenin-11-dUTP-labeled KTS1 and KTS3 as the probes, purified merozoite DNA and bovine DNA (control) were checked by dot blot hybridization with the probes. Both of the probes, KTS1 and KTS3, detected as minimum amount of 975pg of the T sergenti DNA, but not bovine DNA even to 500ng.

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DNA fingerprinting patterns of 5 serotypes of Actinobacillus actinomycetemcomitans (Actinobacillus actinomycetemcomitans의 혈청형별 제한절편장 다변화에 관한 연구)

  • Choi, Jeom-Il;Koh, Myung-Yun;Yun, Il
    • Journal of Periodontal and Implant Science
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    • v.26 no.2
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    • pp.365-375
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    • 1996
  • 5 serotypes(a, b, c, d, e) of Actinobacillus actinomycetemcomitans showed distinct hybridization patterns(DNA fingerprinting patterns) when the bacterial DNA were hybridized with randomly cloned 4.7-Kb sized DNA probe. The sizes of hybridized bands in each serotypes were different among serotypes and represented unique patterns of hybridization with the probe used. The serotype a showed two bands of fingerprinting patterns: 23.1 kb and 2.5 kb respectively. Serotype b and c showed single band: 6.6 kb and 9.5 kb, respectively. Serotype d and e showed two bands of hybridization: 23.1 kb and 2.8 kb, and 23.7 kb and 2.1 kb, respectively. The results indicate that this standard fingerpriting patterns of DNA hybridization with 4.7 kb probe can be further used for genotyping clinical isolates of Actinobacillus 8ctinomycetemcomitansand its relevance with periodontal disease activity.

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Tracking of the $Km^r$ Gene in Conjugal Transfer by Using DNA Probe (DNA Probe에 의한 $Km^r$ 유전자의 전이 추적)

  • 이성기;김치경
    • Microbiology and Biotechnology Letters
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    • v.20 no.4
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    • pp.483-490
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    • 1992
  • In order to understand the transfer behavior of a particular gene in water environments, kanamycin resistance ($Km^r$) gene was tracked by Southern hybridization with DNA probe in its conjugal transfer. A $Km^r$ natural bacterial isolate and genetically modified microorganisms (GMMs) constructed from the isolate were used as donor for conjugal transfer of the $Km^r$ gene. The transfer frequencies of the $Km^r$ gene from GMM strains were generally 10 to 100 times higher than those from the natural isolate. The conjugants obtained from GMM strains in LB broth had more plasmids newly appeared, and particularly the conjugants in A Wand FW waters revealed more rearrangement in their plasmids as a function of conjugation time. When plasmids of the conjugants obtained in LB broth were Southern hybridized with DNA probe of the $Km^r$ gene, the $Km^r$ plasmids in the conjugants were detected at the same position of the plasmids in donor cells, in spite of the fact that the plasmids were highly rearranged in conjugant cells. But the $Km^r$ plasmids in the donor of DKI and DKC601, and DKC600 were not identified in the conjugants obtained after 50 h conjugation in AW and after 30 h in AW, respectively. The size of the $Km^r$ plasmids showing hybridization signal were a little changed in the conjugants obtained in A Wand FW waters. Therefore, the method of Southern hybridization with DNA probe was proved to be very specific and useful for tracking of particular genes in water environments.

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DNA Chip using Single Stranded Large Circular DNA: Low Background and Stronger Signal Intensity

  • Park, Jong-Gu
    • Biomedical Science Letters
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    • v.10 no.2
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    • pp.75-84
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    • 2004
  • Massive identification of differentially expressed patterns has been used as a tool to detect genes that are involved in disease related process. We employed circular single stranded sense molecules as probe DNA for a DNA chip. The circular single stranded DNAs derived from 1,152 unigene cDNA clones were purified in a high throughput mode from the culture supernatant of bacterial transformants containing recombinant phagemids and arrayed onto silanized slide glasses. The DNA chip was examined for its utility in detection of differential expression profile by using cDNA hybridization. Hybridization of the single stranded probe DNA were performed with Cy3- or Cy5-labeled target cDNA preparations at $60^\circ$C. Dot scanning performed with the hybridized slide showed 29 up-regulated and 6 down-regulated genes in a cancerous liver tissue when compared to those of adjacent noncancerous liver tissue. These results indicate that the circular single stranded sense molecules can be employed as probe DNA of arrays in order to obtain a precious panel of differentially expressed genes.

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Department of DNA Chromatographic System for On-Site Detection of Food-Contaminating Bacteria (식중독균 현장탐지를 위한 DNA 크로마토그래피 분석시스템의 개발)

  • 김석하;정우성;백세환
    • KSBB Journal
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    • v.18 no.3
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    • pp.190-196
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    • 2003
  • An analytical system detecting DNA particularly utilizing a concept of membrane strip chromatography initially applied to home-version tests for, such as, pregnancy and ovulation has been developed. We have chosen S. typhimurium as model analyte among food-contaminating microorganisms that occurred in high frequencies, and invA gene, as a detection target, specific to Salmonella species. This gene was able to be amplified by PCR under optimal conditions employing newly designed primers in our laboratory. The PCR product was specifically measured via hybridization between the analyte and a DNA probe, which was a totally different feature from the conventional gel electrophoresis detecting the products based only on the molecular size. It is notable thar the DNA probe sequence was specially designed such that no separation of excess primers present after PCR was required. This was immobilized on a nitrocellulose (NC) membrane via streptavidin-biotin linkage minimizing a steric effect when the hybridization with the amplified DNA took place. The analyrical system detected the microorganism in a concentration of minimum $10^3$ cfu/mL (i.e., 10 cells per system), estimated from the standard curve, 20 to 40 minutes after adding the sample. This sneitivity was approximately 10 times higher than that of gel electrophoresis as an analytical tool conventionally used. Furthermore, the assay was able to be run at room temperature, which would ofter an extra advantage to users.