• Title/Summary/Keyword: nifH,D

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Molecular Cloning of nifH, D from Frankia EuIK1 Strain, A Symbiont of Elaeagnus umbellata Root Nodules (보리수나무 뿌리혹 공생균주인 Frankia EuIK1의 nifH, D클로닝)

  • Kim, Ho-Bang;Kim, Chun-Ho;Song, Seun-Dal;An, Chung-Sun
    • Korean Journal of Microbiology
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    • v.32 no.4
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    • pp.258-263
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    • 1994
  • Genomic Southern hybridization of Frankia EuIKl strain, a nitrogen fixing symbiont of Elaeagnus umbellate root nodules, with nifH,D of K. pneumoniae as a probe, showed that 3.2 Kb and 5.5 Kb of BamHI fragments and 15 Kb PstI fragment were strongly hybridized with the probe, indicating nifH,D are located on these fragments. Using the same probe, one clone(pEuNIF) was isolated from the genomic library constructed into pWE15 cosmid vector by colony hybridization. The 3.2 Kb and 5.5 Kb BamHI fragments of this clone were hybridized with the same probe and this result corresponds to the genomic Southern hybridization data. However, using nifH of Frankia FaCl strain as a probe, only the 3.2 Kb BamHI fragment showed hybridization signal. Amino acid sequence deduced from nucleotide sequence of 3' terminus of the 3.2 Kb and 5' terminus of the 5.5 Kb fragments showed that the former was highly homologous with that of ArI3 nifD from 182nd to 240th amino acids, while the latter was from 241st to 282nd amino acids. These results show that nifH and partial nifD sequences are located on the 3.2 Kb fragment and residual sequences of nifH on the 5.5 Kb fragment which is contiguous to the 3.2 Kb fragment.

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Frankia sp. strain SNU 014201의 nif-H, D, K, 유전자 클로닝

  • 권석윤;강명수;안정선
    • Korean Journal of Microbiology
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    • v.30 no.1
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    • pp.30-36
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    • 1992
  • nif (nitrogen fixation)-H.D, K genes of Frankia sp. SNU 014201. a symbiotic strain isolated from root nodule of Alnus hirsura, were found to be located in the genome on 13.5 kb of EcoRI, 18.0 kb of BamHI, 10.5 kb of BglII and 4.5 kb of KpnI fragments. Using EMBL-3 BamHI arms of bacteriophage lambda. the genomic library was constructed. from which fourteen recombinant phage nif-clones were selected. Among them, Ahnif-I2 had insert DNA of 18 kb, in which 7.9 kb of BamHl fragment contained nif-H, D, K and 3.6 kb of HindlIl/KpnI had nif-H and partial -D. Therefore, the 7.9 kb and 3.6 kb fragments were subcloned and partial restriction maps were constructed. As the results, nif-F1, D.K genes were found to be located continuously on the 6.5 kb of HindII/BamHI and 5.2 kb of SalIIBamHI fragment in the genome of Frankia sp. SNU 014201.

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nif-Gene Organization and Nucleotide Sequence of nifV, nifH, D, K and nifE from Frankia Strain FaCl

  • An, Chung-Sun
    • Proceedings of the Zoological Society Korea Conference
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    • 1995.10b
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    • pp.120-120
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    • 1995
  • The total size of the pF AR1, a genomic clone of Frankia FaCI, was estimated to be about 44Kb by summation of the individual fragment length generated by single or double restriction enzymes. Southern hybridization analyses with Azotobacter vinelandii nif-genes as probes and partial sequencing analyses of the subclones revealed that organization of the nif-gene in the FaCI strain was nifV, H, D, K, E, N, X, W, B. The organization of the structural genes for nitrogenase is the same in this Frankia strain as it is in most other nitrogen-fixing prokaryotes but the positioning of the nifV-like gene relative to the nifHDK cluster differs. A consensus nif-promoter-like sequence, found at 5' of nifH, was not detected upstream of the niJV-like gene. nifV-like gene contained a ORF of 1206 NT encoding 401 amino acids. The nucleotide sequence and deduced amino acid sequence of the gene exhibit homology value of 65% and 41% with that from A vinelandii, respectively. The putative Shine-Dargamo sequences were present preceding nitK, nifH, D, K, and nifE, and in nitK gene putative start codon GTG was detected instead of A TG. The nucleotide and amino acid sequence of niIK of FaCI showed 82% and 76% homolgy with those of Frankia HFPCc 13, respectively. Amino acid sequence of niIK showed 69% and 61% homology with those of A vinelandii, Klebsiella pnewnoniae, respectively, while that of nifE 73% and 71%, respecti vely.i vely.

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Molecular Cloning of nifHD from Rhizobium sp. SNU003 (Rhizobium sp. SNU003의 nifHD 클로닝)

  • 강명수;안정선
    • Korean Journal of Microbiology
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    • v.31 no.2
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    • pp.123-128
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    • 1993
  • Genes for dinitrogenase reductase (nifH) and dinitogenase a subunit (nifD) were found to be located on 7.9 kb of EcoRI, 6.5 kb of Sail, 7.3 kb of HindlII and 4.4 kb of Pstl fragments of the genomic blot of Rhizobium sp. SNU003. a symbiotic strain from root nodule of Canavalia lineata. Nine recombinant phage nif-clones were selected from the genomic library constructed by using EMBL-3 BamHI arms of bacteriophage lambda. Among them. Rnif-6 had insert DNA of 15.3 kb. in which 7.6 kb of BamHI!SacI fragment contained nifHD region. Therefore, the 7.6 kb fragment was subcloned into pUC19 and partial restriction map was constructed. As the results, nifH and nifD were found to be located continuously on 4.5 kb of BamHI/BglIl in the genome of Rhizobium sp. SNU003 strain.

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Mechanism of Metronidazole Resistance Regulated by the fdxA Gene in Helicobacter pylori. (헬리코박터 파일로리에서 fdxA 유전자에 의한 메트로니다졸 내성 조절 기전 연구)

  • Nam, Won-Hee;Lee, Sun-Mi;Kim, Eun-Sil;Kim, Jin-Ho;Jeong, Jin-Yong
    • Journal of Life Science
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    • v.17 no.5 s.85
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    • pp.723-727
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    • 2007
  • Resistance to metronidazole in Helicobacter pylori results from inactivation of rdxA and frxA, the chromosomal genes for a nitroreductase that normally converts metronidazole from prodrug to bactericidal agent. Two types of metronidazole susceptible strains had been found distinguishable by their apparent levels of frxA expression. Most common in the populations we had studied were strains that required only rdxA inactivation to become resistant to moderate levels of metronidazole(type I strains). The second strain type required inactivation of both frxA and rdxA to become resistance to metronidazole(type II strains): this was linked to a relatively high level of frxA gene transcription in the type II strains. The fdxA gene regulated fdxA as well as rdxA gene. Thus, to study the function of fdxA as a regulatory gene we constructed a null mutant of fdxA in H. pylori genome and identified over-and under-expressed proteins by fdxA using two-dimensional(2-D) electrophoresis and MALDI-TOP-MS. There were four over-expressed proteins in fdxA mutant; nifU-like protein(HP0221), frxA(HP0642), nonheme ferritin(HP0653), and hypothetical protein(HP0902). Three under-expressed proteins were also identified in fdxA mutant, including 5'-methylthioadenosine/S-adenosylhomocysteine nucleosidase (HP0089), (3R)-hydroxymyristoyl ACP dehydratase(HP1376), and thioredoxin(HP1458).