• 제목/요약/키워드: rare actinomycetes

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계절에 따른 토양 방선균의 속 다양성 분포 (Distribution Pattern of Soil Actinomycetes on the Seasonal Change)

  • 박동진;이상화;박상호;김창진
    • 미생물학회지
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    • 제34권3호
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    • pp.149-153
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    • 1998
  • 산림, 밭, 초지, 논 토양의 두 깊이(0~2cm, $50{\pm}1cm$)에서 계절별로 채취한 토양 시료로부터 서로 다른 방선균주를 분리, 동정하여 계절별 토양 방선균의 속 다양성을 조사하였다. 토양 표층에 분포하는 Streptomyces속 방선균주의 계절별 변동율은 논(18%)과 산림(18%) 토양에 비해 초지(41%)와 밭(39%) 토양에서 더 높게 나타났으며 $50{\pm}1cm$깊이에서는 논(36%), 밭(28%), 초지(26%), 산림(16%) 토양 순으로 높게 나타났다. 한편 희소 방선균의 계절별 분포 변동율을 토양 표층의 경우 논 토양(26%)을 제외하고는 모두 45%이상이었으나 $50{\pm}1cm$깊이에서는 산림(79%), 논(36%), 밭(24%), 초지(10%) 토양 순으로 높게 나타났다. 따라서, 토양 중에 분포하는 방선균의 속 다양성은 계절 변화에 의지하며 또한 이는 방선균군의 종류, 토양의 유형, 그리고 토양 깊이에 의해서 영향을 받을 것으로 고려된다.

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희소 방선균 Sebekia benihana 유래 신규 사이토크롬 P450 하이드록실레이즈 유전자군 분리 및 염기서열 특성규명 (Isolation and Nucleotide Sequence Characterization of Novel Cytochrome P450 Hydroxylase Genes from Rare Actinomycetes, Sebekia benihana)

  • 박남실;박현주;한규범;김상년;김응수
    • KSBB Journal
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    • 제19권4호
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    • pp.308-314
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    • 2004
  • 모넨신, 니저리신, 사이클로스포린 등을 하이드록실레이션 시키는 균주인 S. benihana에 존재하는 여러 가지 CYP를 클로닝하기 위해, 방선균 CYP의 보존된 부분을 통해서 degenerate primer를 제작하였고, colony hybridization을 통해서 스크리닝 한 결과 총 5 종류의 CYP가 검색되었다. 아미노산 서열의 분석 결과 방선균의 CYP 들과 매우 높은 유사성을 가졌으며, 이들 CYP의 앞 뒤 서열의 검색 결과 이 중 4개의 CYP의 downstream에는 FD 유전자가 존재함을 알 수 있었다. CYP503의 경우 다른 나머지 4개의 CYP의 서열과 차이가 많았으며, 2차 대사산물의 변형과 관련되어 있을 것으로 예상되며, ChoP와 유사성을 보이는 나머지 4개의 CYP는 스테로이드 계열 물질의 하이드록실레이션과 밀접한 연관이 있을 것으로 추정된다.

유전체 스크리닝으로 선별된 Nocardiopsis 균주의 대장균 접합을 통한 유전자 도입전략 최적화 (Gene Transfer Optimization via E. coli-driven Conjugation in Nocardiopsis Strain Isolated via Genome Screening)

  • 전호근;이미진;김현범;한규범;김응수
    • 한국미생물·생명공학회지
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    • 제39권2호
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    • pp.104-110
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    • 2011
  • 방선균은 그램양성 토양 박테리아로서 항생제, 항암제, 항구충제, 면역억제제 등 유용한 2차 대사산물을 생산하는 유용 산업미생물이다. 비록 대부분의 방선균이 속해있는 스트렙토마이세스는 지난 수 십 년간 분자수준에서의 연구가 집중적으로 진행되어 왔으나, 최근에 분리된 잠재적 유용성을 갖는 스트렙토마이세스 이외의 희소방선균들은 유전자 조작시스템의 부재로 그 특성이 잘 규명되지 않고 있다. 본 연구에서는 독립적으로 분리된 180 여 방선균주들 중에서 희소방선균만을 선별하기 위하여 중합효소연쇄반응을 이용한 유전체 스크리닝 전략을 시도하였으며, 이 전략을 통하여 7종의 희소방선균을 성공적으로 분리하였다. 특히 여러 생리활성 테스트를 통하여, 항진균 및 항생제 활성을 띄는 잠재적 유용성이 높은 노카이디옵시스 균주 MMBL010을 선별하였다. 또한 전통적인 방선균 유전자 조작기법이 작동하지 않는 본 MMBL010 균주를 대장균 접합을 통한 유전자 전달 시스템도 최적화시킴으로써, 유전체 스크리닝을 통한 유용희소방선균의 선별 및 유전자 조작시스템 구축은 궁극적으로 희소방선균의 잠재적 유용성을 극대화시킬 수 있는 효율적인 전략으로 사료된다.

Heterologous Expression of Novel Cytochrome P450 Hydroxylase Genes from Sebekia benihana

  • Park Nam-Sil;Park Hyun-Joo;Han Kyu-Boem;Kim Eung-Soo
    • Journal of Microbiology and Biotechnology
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    • 제16권2호
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    • pp.295-298
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    • 2006
  • Actinomycetes are ubiquitous Gram-positive soil bacteria and a group of the most important industrial microorganisms for the biosynthesis of many valuable secondary metabolites as well as the source of various bioconversion enzymes. Cytochrome P450 hydroxylase (CYP), a hemebinding protein, is known to be involved in the modification of various natural compounds, including polyketides, fatty acids, steroids, and some aromatic compounds. Previously, six different novel CYP genes were isolated from a rare actinomycetes called Sebekia benihana, and they were completely sequenced, revealing significant amino acid similarities to previously known CYP genes involved in Streptomyces secondary metabolism. In the present study, these six CYP genes were functionally expressed in Streptomyces lividans, using an $ermE^{*}$ promoter-containing Streptomyces expression vector. Among six CYP genes, two S. benihana CYP genes (CYP503 and CYP504) showed strong hydroxylation activities toward 7-ethoxycoumarin. Furthermore, the recombinant S. lividans containing both the S. benihana CYP506-ferredoxin genes as well as the S. coelicolor feredoxin reductase gene also demonstrated cyclosporin A hydroxylation activity, suggesting potential application of actinomycetes CYPs for the biocatalysts of natural product bioconversion.

Sebekia benihana에서 Streptomyces coelicolor SCO4967 유전자 도입을 통한 하이드록실 사이클로스포린 A의 생전환 (Improvement of Cyclosporin A Hydroxylation in Sebekia benihana by Conjugational Transfer of Streptomyces coelicolor SCO4967, a Secondary Metabolite Regulatory Gene)

  • 김현범;이미진;한규범;김응수
    • 한국미생물·생명공학회지
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    • 제38권4호
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    • pp.475-480
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    • 2010
  • Actinomycetes are Gram-positive soil bacteria and one of the most important industrial microorganisms due to superior biosynthetic capabilities of many valuable secondary metabolites as well as production of various valuable bioconversion enzymes. Among them are cytochrome P450 hydroxylase (CYP), which are hemoproteins encoded by a super family of genes, are universally distributed in most of the organisms from all biological kingdoms. Actinomycetes are a rich source of soluble CYP enzymes, which play critical roles in the bioactivation and detoxification of a wide variety of metabolite biosynthesis and xenobiotic transformation. Cyclosporin A (CyA), one of the most commonly-prescribed immunosuppressive drugs, was previously reported to be hydroxylated at the position of 4th N-methyl leucine by a rare actinomycetes called Sebekia benihana, leading to display different biological activity spectrum such as loss of immunosuppressive activities yet retaining hair growth-stimulating side effect. In order to improve this regio-selective CyA hydroxylation in S. benihana, previously-identified several secondary metabolite up-regulatory genes from Streptomyces coelicolor and S. avermitilis were heterologously overexpressed in S. benihana using an $ermE^*$ promoter-containing Streptomyces integrative expression vector. Among tested, SCO4967 encoding a conserved hypothetical protein significantly stimulated region-specific CyA hydroxylation in S. benihana, implying that some common regulatory systems functioning in both biosynthesis and bioconversion of secondary metabolite might be present in different actinomycetes species.

미생물이 생산하는 항산화물질에 관한 연구 (Studies on Antioxidants of Microbial Origin)

  • Park, Boo-kil
    • 한국미생물·생명공학회지
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    • 제11권3호
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    • pp.201-204
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    • 1983
  • Antioxidant, tentatively named PA-29B substance was isolated from the fermentation broth of rare Actinomycetes. It was isolated by means of silica gel column chromatography and obtained as colorless plates, mp 155-157$^{\circ}C$. The structure of PA-29B substance was assigned to be $\alpha$-phenyl acetamide by $^1$HNMR spectrometer and mass spectrometer.

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Domain Characterization of Cyclosporin Regio-Specific Hydroxylases in Rare Actinomycetes

  • Woo, Min-Woo;Lee, Bo-Ram;Nah, Hee-Ju;Choi, Si-Sun;Li, Shengying;Kim, Eung-Soo
    • Journal of Microbiology and Biotechnology
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    • 제25권10호
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    • pp.1634-1639
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    • 2015
  • Cytochrome P450 hydroxylase (CYP) in actinomycetes plays an important role in the biosynthesis and bioconversion of various secondary metabolites. Two unique CYPs named CYP-sb21 and CYP-pa1, which were identified from Sebekia benihana and Pseudonocardia autotrophica, respectively, were proven to transfer a hydroxyl group at the 4th or 9th N-methyl leucine position of immunosuppressive agent cyclosporin A (CsA). Interestingly, these two homologous CYPs showed different CsA regio-selectivities. CYP-sb21 exhibited preferential hydroxylation activity at the 4th position over the 9th position, whereas CYP-pa1 showed the opposite preference. To narrow down the CYP domain critical for CsA regio-selectivity, each CYP was divided into four domains, and each domain was swapped with its counterpart from the other CYP. A total of 18 hybrid CYPs were then individually tested for CsA regio-selectivity. Although most of the hybrid CYPs failed to exhibit a significant change in regio-selectivity in the context of CsA hydroxylation, hybrid CYP-pa1 swapped with the second domain of CYP-sb21 showed a higher preference for the 9th position. Moreover, hybrid CYPsb21 containing seven amino acids from the 2nd domain of CYP-pa1 showed higher preference for the 4th position. These results imply that the 2nd domain of CsA-specific CYP plays a critical role in CsA regio-selectivity, thereby setting the stage for biotechnological application of CsA regio-selective hydroxylation.

식물병원진균에 길항효과가 있는 방선균 균주 NH50에서 항진균성 항생물질 NH-B1의 순수 분리 (Purification of Antifungal Antibiotic NH-B1 from Actinomycete NH 50 Antagonistic to Plant Pathogenic Fungi)

  • 김현겸;김범석;문석식;황병국
    • 한국식물병리학회지
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    • 제14권3호
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    • pp.191-202
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    • 1998
  • About 300 actinomycetes were isolated from two forest and one sea-shore soil and tested for inhibitory effects on mycelial growth of six plant pathogenic fungi Magnaporthe grisea, Alternaria mali, Colletotrichum gloeosporioides, Phytophthora capsici, Fusarium oxysporum f. sp. cucumerinum, and Rhizoctonia solani. Among 300 actinomycetes tested, only 16 actinomycetes showed the antifungal activity against the test fungi. Isolate NH 50 was selected for production and purification of antifungal antibiotic substances. Actinomycete isolate NH 50 displayed the broad antifungal spectra against 11 plant pathogenic fungi. To identify actinomycete isolate NH 50, cultural characteristics on various agar media, diaminopimelic acid type, and morphological characteristics by scanning electron microscopy were examined. As a result, actinomycete isolate NH 50 was classified as a rare actinomycete that had LL-DAP type and did not produce spores. After incubation of isolate NH 50 in yeast extract-malt extract-dextrose broth, antifungal compound NH-B1 that inhibited mycelial growth of some plant pathogenic fungi was purified from the methanol eluates of XAD-16 resins by a series of purification procedures, i.e., silica gel flash chromatography, C18 flash chromatography, Sephadex LH-20 column chromatography, silica gel medium pressure liquid chromatography (MPLC), C18 MPLC, and high pressure liquid chromatography (HPLC). UV spectrum and 1HNMR spectrum of antifungal compound NH-B1 dissolved in methanol were examined. The antibiotic NH-B1 showed the major peaks at 230 and 271.2nm. Based on the data of 1H-NMR spectrum, NH-B1 was confirmed to be an extremely complex polymer of sugars called polysaccharides. The antibiotic NH-B1 showed strong antifungal activity against Alternaria solani and Cercospora kikuchi, but weak activity against M. grisea.

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자연 동굴 토양 방선균의 속 다양성 분포

  • 임채영;권오성;김판경;박동진;이동희;김창진
    • 한국미생물·생명공학회지
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    • 제24권5호
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    • pp.534-539
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    • 1996
  • Total 276 soil actinomycete strains were isolated from 46 soil samples collected at domestic natural caves; the Kosu, Chundong, and Nodong caves at Chungbook province, the Kossi cave at Kangwon province, the Sungruye cave at Kyungbook province, the Hyupjae, Ssangyong, and Manjang caves at Cheju province. All of these isolates were identified to the genus level based on morphological and physiological characteristics. As the result, 52.5% of those isolates were Streptomyces, 16.3% were Micromonospora, 22.8% were Nocardioform group, 1.1% were Actinomadura, 0.3% were Nocardiopsis, 0.3% were Streptosporangium, 0.3% were Nocardioides, 1.4% were Kineosporia, 4.7% were the others. Streptomycete strains were the most abundant, but were relatively less comparing to general distribution pattern. Nocardioform and Micromonospora strains were quite abundant, and other rare actinomycete groups were somewhat abundant comparing to general distribution pattern previously reported. Especially Nocardioform strains were highly abundant at almost of the natural caves.

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