• 제목/요약/키워드: GH Characterization

검색결과 51건 처리시간 0.023초

Isolation and Characterization of an Eosinophilic GH 16 β-Agarase (AgaDL6) from an Agar-Degrading Marine Bacterium Flammeovirga sp. HQM9

  • Liu, Yan;Tian, Xiaoxu;Peng, Chao;Du, Zongjun
    • Journal of Microbiology and Biotechnology
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    • 제29권2호
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    • pp.235-243
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    • 2019
  • A special eosinophilic agarase exo-type ${\beta}$-agarase gene, AgaDL6, was cloned from a marine agar-degrading bacterium, Flammeovirga sp. HQM9. The gene comprised 1,383-bp nucleotides encoding a putative agarase AgaDL6 of 461 amino acids with a calculated molecular mass of 52.8 kDa. Sequence analysis revealed a ${\beta}$-agarase domain that belongs to the glycoside hydrolase family (GH) 16 and a carbohydrate-binding module (CBM_4_9) unique to agarases. AgaDL6 was heterologously expressed in Escherichia coli BL21 (DE3). Enzyme activity analysis of the purified protein showed that the optimal temperature and pH of AgaDL6 were $50^{\circ}C$ and 3.0, respectively. AgaDL6 showed thermal stability by retaining more than 98% of activity after incubation for 2 h at $50^{\circ}C$, a feature quite different from other agarases. AgaDL6 also exhibited outstanding acid stability, retaining 100% of activity after incubation for 24 h at pH 2.0 to 5.0, a property distinct from other agarases. This is the first agarase characterized to have such high acid stability. In addition, we observed no obvious stimulation or inhibition of AgaDL6 in the presence of various metal ions and denaturants. AgaDL6 is an exo-type ${\beta}$-1,4 agarase that cleaved agarose into neoagarotetraose and neoagarohexaose as the final products. These characteristics make AgaDL6 a potentially valuable enzyme in the cosmetic, food, and pharmaceutical industries.

지렁이의 Gycosyl hydrolasse family 유전자들의 동정과 특성에 관한 연구 (Identification and Characterization of Glycosyl hydrolase family genes from the Earthworm)

  • 이명식;탁은식;안치현;박순철
    • 유기물자원화
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    • 제17권4호
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    • pp.48-58
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    • 2009
  • Glycosyl hydrolase(GH, EC 3.2.1.-)는 둘 또는 그 이상의 탄수화물 및 탄수화물과 비탄수화물 부분사이의 글리코시딕 결합(glycosidic bond)을 가수분해하는 효소이다. GH에 대한 새로운 분류법은 효소들의 아미노산 서열의 유사성과 구조적인 특징에 기초를 두고 있다. 본 논문에서는 CAZy 데이터베이스를 통하여 총 115종에 이르는 GHF 유전자 중에서 지렁이로부터 12종의 GHF 유전자를 동정하였다. 이 중 산업적 응용가능성이 높은 5종의 유전자(GHF2, 5, 17, 18, 20)를 선택하여 다른 동물종에서 보고된 유전자와 비교분석하였다. 그 결과 지렁이 GHF 유전자들은 동종의 다른 유전자들과 높은 아미노산서열 상동성을 나타냈으며 활성부위 등의 주요 아미노산 잔기가 잘 보존되어 있었다. 이들 유전자들은 해충방제제, 식품가공업, 의학적 치료제 및 유기성폐기물 처리 등에 활용할 수 있을 것으로 사료된다.

Characterization of the Four GH12 Endoxylanases from the Plant Pathogen Fusarium graminearum

  • Habrylo, Olivier;Song, Xinghan;Forster, Anne;Jeltsch, Jean-Marc;Phalip, Vincent
    • Journal of Microbiology and Biotechnology
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    • 제22권8호
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    • pp.1118-1126
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    • 2012
  • Four putative GH12 genes were found in the Fusarium graminearum genome. The corresponding proteins were expressed in Escherichia coli, purified, and evaluated. FGSG_05851 and FGSG_11037 displayed high activities towards xyloglucan ($V_{max}$ of 4 and $11{\mu}mol/min$, respectively), whereas FGSG_07892 and FGSG_16349 were much less active with this substrate (0.081 and $0.004{\mu}mol/min$, respectively). However, all four of these enzymes had a similar binding affinity for xyloglucan. Xyloglucan was the substrate preferred by FGSG_05851, in contrast to the three other enzymes, which preferred ${\beta}$-glucan or lichenan. Therefore, FGSG_05851 is a xyloglucan-specific glucanase (E.C. 3.2.1.151) rather than an endoglucanase (E.C. 3.2.1.4) with broad substrate specificity. FGSG_11037 displayed a peculiar behavior in that the xyloglucan binding was highly cooperative, with a Hill coefficient of 2.5. Finally, FGSG_05851 essentially degraded xyloglucan into hepta-, octa-, and nonasaccharides, whereas the three other enzymes yielded hepta- and octa-saccharides as well as larger molecules.

Molecular Characterization of Tomato Yellow Leaf Curl Virus in Korea and the Construction of an Infectious Clone

  • Lee, Bong Choon;Ueda, Shigenori;Yoon, Young-Nam;Shin, Dong Bum;Kang, Hang-Won
    • 식물병연구
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    • 제20권3호
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    • pp.219-222
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    • 2014
  • Several tomato production regions in Korea were surveyed for tomato yellow leaf curl disease (TYLCD). Tomato leaf samples showing TYLCD-like symptoms were collected from Tongyeong (To), Geoje (Gi), and Gimhae (Gh) cities of the southern part of Korea. Tomato yellow leaf curl virus (TYLCV) was detected and the full-length genomes of the isolates were sequenced. The TYLCV isolates found in Korea shared high sequence identity (> 99%) with TYLCV-IL [JR:Omu:Ng] (AB110217). Phylogenetic relationship analysis revealed that they formed two groups (with little genetic variability), and the To, Gj, and Gh isolates belonged to the TYLCV-IL group. An infectious clone of TYLCV-To (JQ013089) was constructed and agroinoculated into Nicotiana benthamiana, Nicotiana tabacum var. Xanthi, Petunia hybrida, Capsicum annuum, and Lycopersicon esculentum cv. Hausumomotaro. Agroinfection with a dimeric infectious clone of TYLCV-To induced severe leaf curling and stunting symptoms in these plants, excluding C. annuum. Tomato plants then developed typical yellow leaf curl symptoms.

Purification and Characterization of a Thermostable Xylanase from Fomitopsis pinicola

  • Shin, Keum;Jeya, Marimuthu;Lee, Jung-Kul;Kim, Yeong-Suk
    • Journal of Microbiology and Biotechnology
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    • 제20권10호
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    • pp.1415-1423
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    • 2010
  • An extracellular xylanase was purified to homogeneity by sequential chromatography of Fomitopsis pinicola culture supernatants on a DEAE-Sepharose column, a gel filtration column, and then on a MonoQ column with fast protein liquid chromatography. The relative molecular mass of the F. pinicola xylanase was determined to be 58 kDa by sodium dodecyl sulfate polyacrylamide gel electrophoresis and by size-exclusion chromatography, indicating that the enzyme is a monomer. The hydrolytic activity of the xylanase had a pH optimum of 4.5 and a temperature optimum of $70^{\circ}C$. The enzyme showed a $t_{1/2}$ value of 33 h at $70^{\circ}C$ and catalytic efficiency ($k_{cat}=77.4\;s^{-1}$, $k_{cat}/K_m$=22.7 mg/ml/s) for oatspelt xylan. Its internal amino acid sequences showed a significant homology with hydrolases from glycoside hydrolase (GH) family 10, indicating that the F. pinicola xylanase is a member of GH family 10.

Bacillus subtilis NC1 유래 cellulase와 xylanase의 특성 규명 및 효소 유전자의 규명 (Characterization of Cellulase and Xylanase from Bacillus subtilis NC1 Isolated from Environmental Soil and Determination of Its Genes)

  • 박창수;강대욱;최낙식
    • 생명과학회지
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    • 제22권7호
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    • pp.912-919
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    • 2012
  • Carboxymethylcellulose (CM-cellulose)와 Beechwood xylan을 각각 기질로 사용하여 trypan blue를 첨가하여 제작한 Agar-LB 배지 상에서 명확한 활성환을 형성하는 균주를 cellulase와 xylanase 생산 균주로 단리하였다. 단리한 균주 유래의 16S rRNA 유전자 및 API 50 kit를 분석한 결과 Bacillus subtilis와 약 99.5%의 높은 상동성을 보였기에 본 균주를 Bacillus subtilis로 동정하여 B. subtilis NC1로 명명하였다. B. subtilis NC1 유래 cellulase와 xylanase는 CM-cellulose와 Beechwood xylan에 대하여 각각 높은 효소 활성을 보였으며, 두 효소 모두 pH 5.0과 $50^{\circ}C$의 조건하에서 가장 높은 효소 활성을 보였다. B. subtilis NC1 균주 유래 cellulase와 xylanase 유전자를 cloning하기 위하여 shot-gun cloning 방법을 이용하여 B. subtilis NC1 염색체 DNA로부터 효소 유전자를 cloning하여 유전자 배열을 규명한 결과 cellulase 유전자는 아미노산 499개를 암호화하는 1,500 bp의 open reading frame (ORF)으로 이루어져 있었으며, 아미노산 배열로부터 추정되는 분자량은 55,251 Da 이었다. 그리고, xylanase에 대한 유전자는 아미노산 422개를 암호화하는 1,269 bp의 ORF로 이루어져 있었으며 유전자 유래 아미노산 배열로부터 추정되는 단백질 분자량은 47,423 Da 이었다. 두 효소의 아미노산 배열을 이용하여 상동성을 검토한 결과 cellulase는 glycoside hydrolase family (GH) 5에 속하는 cellulase와 xylanase는 GH30에 속하는 xylanase와 높은 상동성을 나타내었다.

Expression, purification and characterization of ubiquitin-specific pretense 1 for hydrolysis of ubiquitin-fused human growth hormone expressed in recombinant Escherichia coli

  • 나강인;서진호
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2003년도 생물공학의 동향(XII)
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    • pp.554-556
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    • 2003
  • 본 연구에서는 고부가가치 의약단백질인 human growth hormone을 고순도로 얻기 위하여 재조합 대장균을 이용하여 ubiquitin이 융합된 형태로 단백질을 발현시키고, 이를 분해하는 ubiquitin-specific pretense를 발현시켜 이를 분리 ${\cdot}$ 정제하고 효소특성을 살펴보았다. UBP1 enzyme을 재조합 대장균을 이용하여 발현하고 분리 ${\cdot}$ 정제한 결과, 분자량은 약 83.5kDa이었으며, $40^{\circ}C$, pH 8.0에서 최대 효소활성을 보였다.

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Cloning and Characterization of a Multidomain GH10 Xylanase from Paenibacillus sp. DG-22

  • Lee, Sun Hwa;Lee, Yong-Eok
    • Journal of Microbiology and Biotechnology
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    • 제24권11호
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    • pp.1525-1535
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    • 2014
  • The xynC gene, which encodes high molecular weight xylanase from Paenibacillus sp. DG-22, was cloned and expressed in Escherichia coli, and its nucleotide sequence was determined. The xynC gene comprised a 4,419bp open reading frame encoding 1,472 amino acid residues, including a 27 amino acid signal sequence. Sequence analysis indicated that XynC is a multidomain enzyme composed of two family 4_9 carbohydrate-binding modules (CBMs), a catalytic domain of family 10 glycosyl hydrolases, a family 9 CBM, and three S-layer homologous domains. Recombinant XynC was purified to homogeneity by heat treatment, followed by Avicel affinity chromatography. SDS-PAGE and zymogram analysis of the purified enzyme identified three active truncated xylanase species. Protein sequencing of these truncated proteins showed that all had identical N-terminal sequences. In the protein characterization, recombinant XynC exhibited optimal activity at pH 6.5 and $65^{\circ}C$ and remained stable at neutral to alkaline pH (pH 6.0-10.0). The xylanase activity of recombinant XynC was strongly inhibited by 1 mM $Cu^{2+}$ and $Hg^{2+}$, whereas it was noticeably enhanced by 10 mM dithiothreitol. The enzyme exhibited strong activity towards xylans, including beechwood xylan and arabinoxylan, whereas it showed no cellulase activity. The hydrolyzed product patterns of birchwood xylan and xylooligosaccharides by thin-layer chromatography confirmed XynC as an endoxylanase.

재조합 대장균으로부터 생산된 Bacillus licheniformis WL-12의 Mannanase 특성 (Characterization of the Bacillus licheniformis WL-12 Mannanase from a Recombinant Escherichia coli)

  • 윤기홍
    • Journal of Applied Biological Chemistry
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    • 제53권2호
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    • pp.71-76
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    • 2010
  • 가정에서 제조된 된장으로부터 분리된 Bacillus licheniformis WL-12의 mannanase 유전자를 크로닝하여 그 염기서열을 결정한 결과 mannanase 유전자는 360 아미노산으로 구성된 단백질을 코드하며 1,080 뉴클레오티드로 이루어졌다. 아미노산 잔기배열을 분석한 결과 WL-12의 mannanase는 GH family 26에 속하는 B. licheniformis DSM13의 mannanase와 동일하였다. B. lichenifromis WL-12의 mannanase 유전자를 함유한 재조합대장균의 균체파쇄상등액으로부터 부분정제된 효소를 사용하여 반응특성을 조사하였다. pH 6.0과 $65^{\circ}C$에서 최대 반응활성을 보였으며, locust bean gum (LBG)과 konjac의 분해능은 높으나 guar gum의 분해능은 낮았다. Mannanase로 LBG와 mannooligosaccharides를 분해하였을 때 mannose, mannobiose와 mannotriose가 주된 최종 반응산물로 관찰되었으며 mannobiose는 분해하지 못하였으나 이보다 중합도가 큰 mannooligosaccharides은 분해하였다.

Gene Cloning, Expression, and Characterization of a $\beta$-Agarase, AgaB34, from Agarivorans albus YKW-34

  • Fu, Xiao Ting;Pan, Cheol-Ho;Lin, Hong;Kim, Sang-Moo
    • Journal of Microbiology and Biotechnology
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    • 제19권3호
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    • pp.257-264
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    • 2009
  • A $\beta$-agarase gene, agaB34, was functionally cloned from the genomic DNA of a marine bacterium, Agarivorans albus YKW-34. The open reading frame of agaB34 consisted of 1,362 bp encoding 453 amino acids. The deduced amino acid sequence, consisting of a typical N-terminal signal peptide followed by a catalytic domain of glycoside hydrolase family 16 (GH-16) and a carbohydrate-binding module (CBM), showed 37-86% identity to those of agarases belonging to family GH-16. The recombinant enzyme (rAgaB34) with a molecular mass of 49 kDa was produced extracellularly using Escherichia coli $DH5{\alpha}$ as a host. The purified rAgaB34 was a $\beta$-agarase yielding neoagarotetraose (NA4) as the main product. It acted on neoagarohexaose to produce NA4 and neoagarobiose, but it could not further degrade NA4. The maximal activity of rAgaB34 was observed at $30^{\circ}C$ and pH 7.0. It was stable over pH 5.0-9.0 and at temperatures up to $50^{\circ}C$. Its specific activity and $k_{cat}/K_m$ value for agarose were 242 U/mg and $1.7{\times}10^6/sM$, respectively. The activity of rAgaB34 was not affected by metal ions commonly existing in seawater. It was resistant to chelating reagents (EDTA, EGTA), reducing reagents (DTT, $\beta$-mercaptoethanol), and denaturing reagents (SDS and urea). The E. coli cell harboring the pUC18-derived agarase expression vector was able to efficiently excrete agarase into the culture medium. Hence, this expression system might be used to express secretory proteins.