• Title/Summary/Keyword: Nucleotide Sequence

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Nucleotide Sequence of a Bacteriolytic Enzyme Gene from Alkalophilic Bacillus sp.

  • Jung, Myeong-Ho;Ohk, Seung-Ho;Yum, Do-Young;Kong, In-Soo;Bai, Dong-Hoon
    • Journal of Microbiology and Biotechnology
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    • v.3 no.2
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    • pp.73-77
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    • 1993
  • The nucleotide sequence of Bacillus sp. bacteriolytic enzyme gene, lytP and its flanking regions were determined. A unique open reading frame for a protein of Mw. 27, 000, and a putative terminator sequence, were found behind a concensus ribosome binding site located 8 nt upstream from ATG start codon. The primary amino acid sequence deduced from nucleotide sequence revealed a putative protein of 255 amino acid residues with an Mw. of 27, 420. No significant homology could be found between the amino acid sequence of Bacillus sp. bacteriolytic enzyme and that of other cell wall hydrolases.

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Analysis on the nucleotide sequence of the signal region of bacillus subitilis extracellular cellulase gene (Bacillus subtilis로 부터 분리한 cellulase 유전자의 조절부위에 대한 염기서열분석)

  • 서연수;이영호;백운화;강현삼
    • Korean Journal of Microbiology
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    • v.24 no.3
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    • pp.236-242
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    • 1986
  • The nucleotide sequence of the genetic control site of Bacillus subtilis gene for $(1-4)-{\beta}-D-glucan$ endoglucanase (cellulase) was determined according to the procedures of the dideoxy chain termination method(Sanger et. al., 1977). The deduced amino acid sequence of this enzyme has a hydrophobic signal peptide at the $NH_2$ terminus similar to those found in fifteen other extracellualr enzymes from Bacillus species. This is followed by a sequence resembling the Bacillus ribosome binding site 14 nucleotide before the first codon of the gene. The presumptive promoter sequence was located 92 base pairs upstream fromthe initiation codon. The homology region in signal sequences was striking when comparing all the signal sequences of sixteen extracellular enzymes from Bacillus species so far compiled.

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Identification of promoter sites in Babesia equi ema-l 5' intergenic nucleotide: I. PCR amplification and restriction mapping (Babesia equi ema-l 5' intergenic 뉴클레오타이드의 프로모터 위치 확인: I. PCR 증폭 및 제한효소지도)

  • 곽동미
    • Korean Journal of Veterinary Service
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    • v.27 no.1
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    • pp.103-109
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    • 2004
  • Babesia equi ema-1 5' intergenic(IG) nucleotide was PCR amplified and analyzed for restriction sites in order to identify a promoter region in this IG nucleotide sequence. B equi ema-1 5' IG specific primers identified a 1268 bp PCR product. The sequence had restriction sites for 34 restriction enzymes when analyzed by a computer program. Among them, 26 enzymes had only one restriction site, but the others had more than one sites. When four restriction enzymes (Bgll , HindⅢ, Kpn1 and BamH1) were treated to digest the 1268 bp nucleotide, they had restriction sites as expected by the computer program. Information of restriction sites in the 1268 bp IG nucleotide will be applied to select restriction enzymes for cloning the IG nucleotide to a vector.

Molecular Data Concerning Alloploid Character and the Origin of Chloroplast and Mitochondrial Genomes in the Liverwort Species Pellia borealis

  • Pacak, Andrezej
    • Journal of Plant Biotechnology
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    • v.2 no.2
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    • pp.101-108
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    • 2000
  • The liverwort Pellia borealis is a diploid, monoecious, allopolypliod species (n=18) that as it was postulated, originated after hybridization and duplication of chromosome sets of two cryptic species: Pellia epiphylta-species N (n=9) and Pellia epiphylla-species 5 (n=9). Our recent results have supported the allopolyploid origin of P.borealis. We have shown that the nuclear genome of P.borealis consists of two nuclear genomes: one derived from P.epiphylla-species N and the other from P.epiphylla-species 5. In this paper we show the origin of chloroplast and mitochondrial genomes in an allopolyploid species P.borealis. To our knowledge there is no information concerning the way of mitochondria and chloroplast inheritance in Brophyta. Using an allopolyploid species of p. borealis as a model species we have decided to look into chloroplast and mitochondrial genomes of P.borealis, P.epiphylla-species N and P.epiphylla-species S for nucleotide sequences that would allow us to differentiate between both cryptic species and to identify the origin of organelle genomes in the alloploid species. We have amplified and sequenced a chloroplast $tRNA^{Leu}$ gene (anticodon UAA) containing an intron that has shown to be highly variable in a nucleotide sequence and used for plant population genetics. Unfortunately these sequences were identical in all three liverwort species tested. The analysis of the nucleotide sequence of chloroplast, an intron containing $tRNA^{Gly}$ (anticodon UCC) genes, gave expected results: the intron nucleotide sequence was identical in the case of both P.borealis and P.epiphyllaspecies N, while the sequence obtained from P.epiphyllasperies S was different in several nucleotide positions. These results were confirmed by the nucleotide sequence of another chloroplast molecular marker the chloroplast, an intron-contaning $tRNA^{Lys}$ gene (anticodon UUU). We have also sequenced mitochondrial, an intron-containing $tRNA^{Ser}$ gene (anticodon GCU) in all three liverwort species. In this case we found that, as in the case of the chloroplast genome, P.borealis mitochondrial genome was inherited from P.epiphylla-species N. On the basis of our results we claim that both organelle genomes of P.borealis derived from P.epiphylla-species N.

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Molecular Phylogenetic Classification of Dermatophytes Isolated from Dogs and Cats (개와 고양이 유래 피부사상균의 분자생물학적 계통 분석)

  • Kim, Doo;Jeoung, Seok-Young;Ahn, So-Jeo
    • Journal of Veterinary Clinics
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    • v.23 no.4
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    • pp.405-410
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    • 2006
  • Using internal transcribed spacer 1 (ITS1) region ribosomal DNA sequences from 9 strains of Microsporum canis and 5 strains of Microsporum gypseum isolated from dogs and a cat with dermatophytosis, we demonstrated the mutual phylogenetic relationship of these strains. Nucleotide sequence analysis of the ITS 1 gene fragments from the 9 strains of M canis had the 100% nucleotide sequence similarities and the 5 strains of M gypseum also had the 100% nucleotide sequence similarities. The phylogenetic analysis of the nucleotide sequences of the 9 strains of M canis formed a nested cluster with the reference strains of M canis originating from USA, Australia, Japan, and Europe. M canis were genetically distinct from the other reference strains of Microsporum spp, but M distortum, M equinum, and M. ferrugineum were genetically very close to M canis. M gypseum from a cluster in the phylogenetic tree with M canis as an outgroup. The molecular analysis of ITS 1 genes provided the useful information for the identification of these microsporum species and the understanding of their relationship.

Complete Nucleotide Sequence of Small Multidrug Resistance Plasmid pKH4 (Small Multidrug Resistance(smr) 플라스미드 pKH4의 염기서열 결정)

  • 고창학;문경호
    • YAKHAK HOEJI
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    • v.43 no.6
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    • pp.789-792
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    • 1999
  • The complete nucleotide sequence of pKH4, a small multidrug resistance (smr) plasmid isolated from multidrug resistant Staphylococcus aureus SA5, was determined. Sequence analysis has revealed that pKH4 has two open reading frames for Rep and Smr proteins. The comparison of the amino acid sequence of Smr protein of pKH4 with those of other Smr proteins of various Staphylococcus showed that Smr protein of pKH4 is a new member of the SMR family.

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Genetic Characteristics of Porcine Epidemic Diarrhea Virus Isolated in Korea (돼지 유행성 설사 바이러스 국내분리주의 유전학적 특성 규명)

  • Chi, Yong-zhe;Kwon, Hyuk-moo;Jeong, Hyun-kyu;Han, Jeong-hee
    • Korean Journal of Veterinary Research
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    • v.43 no.2
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    • pp.219-230
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    • 2003
  • Porcine epidemic diarrhea virus(PED), a member of Coronaviridea, is the etiological agent of enteropathogenic diarrhea in swine. The purpose of this study was to investigate genetic characteristic of PEDV isolated in Korea. Nucleocapsid(N) gene and membrane (M) gene of recent Korean PEDV strains isolated in 2001 were amplified, cloned, sequenced and analyzed. N gene of seven Korean PEDV field isolates bad 94.5% to 99.4% nucleotide and 92.4% to 99.4% amino acid sequence homology each other. Nucleotide and amino acid sequences of Korean field PEDVs were different from published foreign PEDVs, showing 95.1% to 98.0% nucleotide and 93.5% to 97.6% amino acid sequence homology. By phylogenetic tree analysis on based nucleotide sequences, PEDVs were clustered into four groups. By phylogenetic tree analysis based on amino acid sequences. PEDVs were clustered into five groups. M gene of our Korean PEDV field isolates had 99.6% to 100% nucleotide and 98.7% to 100% amino acid sequence homology each other. Nuclotide and amino acid sequences of Korean field PEDVs were different from published foreign PEDVs, showing 98.5% to 98.8% nucleotide and 97.3% to 97.8% amino acid sequence homology. By phylogenetic tree analysis based on nucleotide and amino acid sequences, PEDVs were clustered into two groups which were Korean PEDV isolate group and foreign PEDV isolate group.

Complete Nucleotide Sequence of Tobacco Mosaic Virus Isolated from Wasabi(Eutrema wasabi Maxim.) (고추냉이에서 분리한 담배 모자이크 바이러스(TMV-W)의 전체 유전자 염기서열 분석)

  • 이귀재
    • Korean Journal of Plant Resources
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    • v.16 no.1
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    • pp.82-88
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    • 2003
  • Genomic RNA sequence of a tobamovirus infecting Eutrema wasabi plant(TMV-W) was determined. The RNA is composed 6,298 nucleotide and contains four OREs encoding the protein of 180KD(OREI), 130KD(ORE2),30KD(ORF3) and 18KD(coat protein, ORF4). ORE4, ORF 3, ORF 2 and ORF 1 are overlaped by 130, 20 and 40 nucleotides, and the overapping region can be folded into a stable hairpin styucture. This includes the 3'non-coding region of 238 nucleotides, coat protein gene(537 nucleotides,179 amino acid), 30KD movement protein gene(825 nucleotides, 275 amino acid), 13(IKD protein gene(1,896 nucleotides, 632 amino acid) and 180KD protein gene(2,958 nucleotides, 986 amino acid). The genomic RNA sequence was compared with homologous regions of eleven other tobamoviruses. TMV-WTE was similar to TMV-WSF(98.6%) in nucleotide sequence.

Nucleotide Sequence and Characterization of ptsG Gene Encoding Glucose-specific Enzyme II of Phosphotransferase System from Brevibacterium flavum

  • Yoon, Ki-Hong
    • Journal of Applied Biological Chemistry
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    • v.48 no.4
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    • pp.218-221
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    • 2005
  • Nucleotide sequence of Brevibacterium flavum ptsG gene capable of complementing Escherichia coli ZSC113 mutations defective to glucose permease activity of phosphotransferase system was completely determined, and the gene product was compared with other glucose-specific enzyme II ($EII^{Glc}$). A ptsG gene of B. flavum consisted of open reading frame of 2,025 nucleotides putatively encoding polypeptide of 675 amino acid residues and TAA stop codon. Deduced amino acid sequence of B. flavum ($EII^{Glc}$) had high homology with ($EIIs^{Glc}$) of Corynebacterium glutamicum, C. efficiens, and B. lactofermentum. Arrangement of structural domains, IIBCA, of B. flanum ($EII^{Glc}$) protein was identical to that of EIIs belonging to glucose-phosphotransferase system.

Isolation and Characterization of Two Amino Acid-activating Domains of Peptide Synthetase Gene from Bacillus subtilis 713

  • Lee, Youl-Soon;You, Sang-Bae;Lee, Ji-Wan;Kim, Tae-Young;Kim, Sung-Uk;Bok, Song-Hae
    • Journal of Microbiology and Biotechnology
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    • v.8 no.4
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    • pp.399-405
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    • 1998
  • From the sequence alignment of various non-ribosomal peptide synthetases, several motifs of highly conserved sequences have been identified within each domain of peptide synthetases. We designed PCR primers based on the highly conserved nucleotide sequences to amplify and isolate a ∼7.2-kb DNA fragment of the Bacillus subtilis 713 which was isolated and reported to produce an antifungal peptide compound. Nucleotide sequence analysis of 4.8 kb of the predicted amino acids revealed significant homology to various peptide synthetases over the whole sequence and also revealed two amino acid-activating domains with highly conserved Core 1 to Core 6 and spacer motif. This suggests that the isolated DNA fragment is part of a peptide synthetase gene for antifungal peptide.

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