• 제목/요약/키워드: Thermotoga maritima

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Zoogloea Ramigera 115SLR로부터 다당류 생합성에 관여하는 유전자의 분리 및 염기서열 결정 (Cloning and Sequencing of a Gene Involved in the Biosynthesis of Exopolysaccharide in Zoogloea Ramigera 115SLR)

  • Sam-Pin Lee;Min Yoo
    • 대한의생명과학회지
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    • 제6권1호
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    • pp.1-9
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    • 2000
  • Zoogloea ramigera 115SLR로부터 다당류 생합성에 관여하는 유전자를 분리하기 위해서 균주의 genomic DNA로부터 제조된 gene bank로부터 plasmid pLEX3이 얻어졌다. 이로부터 재조합된 5.0 kb DNA fragment를 포함하는 plasmid pLEX10은 다당류의 형태를 변환시키는 유전자를 포함하고 있으며, 이중에서 upstream 영역에 해당하는 1.7 kb DNA fragment가 분리되었다. 1.7 kb DNA 염기서열의 결과로부터 단백질을 인지 할 수 있는 2개의 ORF가 존재하였으며, 50 kDa 단백질을 인지 할 수 있는 ORF3은 X. campestris의 다당류 생합성 유전자들인 gumC와 R. meliloti의 exoP와 아미노산의 동질성을 나타내었다. ORF4는 N-terminal 영역이 결여된 단백질을 인지하며, Thermotoga maritime의 다당류 export에 관여하는 단백질과 동질성을 보였다. Z. ramigera 115SLR and Z. ramigera 115SLR/pLEX10은 각각 slime또는 capsule 형태의 다당류를 생합성하며 이들로부터 생합성된 다당류양은 각각 0.26% (w/v) and 0.16% (w/v)였다.

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Crystal structure of the pretense domain of an ATP-independent heat shock protease HtrA

  • Kim, Dong-Young;Kim, Dong-Ryoung;Ha, Sung-Chul;Neratur K.Lokanath;Hwang, Hye-Yeon;Kim, Kyeong-Kyu
    • 한국결정학회:학술대회논문집
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    • 한국결정학회 2002년도 정기총회 및 추계학술연구발표회
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    • pp.24-24
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    • 2002
  • HtrA (high temperature requirement A), a periplasmic heat shock protein, is known to have molecular chaperone function at low temperatures and proteolytic activity at elevated temperatures. To investigate the mechanism of functional switch to pretense, we have determined the crystal structure of the N-terminal protease domain (PD) of HtrA from Thermotoga maritima. HtrA PD shares the same fold with chymotrypsin-like serine professes. However, crystal structure suggests that HtrA PD is not an active pretense at current state since its active site is not formed properly and blocked by an additional helical lid. On the surface of the lid, HtrA PD has hydrophobic patches that could be potential substrate binding sites for molecular chaperone activity. Present structure suggests that the activation of the proteolytic function of HtrA PD at elevated temperatures might occur by the conformational change.

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Optimized Medium Improves Expression and Secretion of Extremely Thermostable Bacterial Xylanase, XynB, in Kluyveromyces lactis

  • Yin, Tie;Miao, Li-Li;Guan, Fei-Fei;Wang, Gui-Li;Peng, Qing;Li, Bing-Xue;Guan, Guo-Hua;Li, Ying
    • Journal of Microbiology and Biotechnology
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    • 제20권11호
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    • pp.1471-1480
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    • 2010
  • An extremely thermostable xylanase gene, xynB, from the hyperthermophilic bacterium Thermotoga maritima MSB8 was successful expressed in Kluyveromyces lactis. The response surface methodology (RSM) was also applied to optimize the medium components for the production of XynB secreted by the recombinant K. lactis. The secretion level (102 mg/l) and enzyme activity (49 U/ml) of XynB in the optimized medium (yeast extract, lactose, and urea; YLU) were much higher than those (56 mg/l, 16 U/ml) in the original medium (yeast extract, lactose, and peptone; YLP). The secretory efficiency of mature XynB was also improved when using the YLU medium. When the mRNA levels of 13 characterized secretion-related genes in the K. lactis cultured in YLP and YLU were detected using a semiquantitative RT-PCR method, the unfolded protein response (UPR)-related genes, including ero1, hac1, and kar2, were found to be up-regulated in the K. lactis cultured in YLU. Therefore, the nutrient ingredients, especially the nitrogen source, were shown to have a significant influence on the XynB secretory efficiency of the host K. lactis.