• 제목/요약/키워드: Glycosyl hydrolases

검색결과 20건 처리시간 0.023초

Characterization of cell wall hydrolases induced by sugar starvation

  • Lee, Eun-Jeong;Koizumi, Nozomu
    • 한국식물생명공학회:학술대회논문집
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    • 한국식물생명공학회 2005년도 추계학술대회 및 한일 식물생명공학 심포지엄
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    • pp.371-374
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    • 2005
  • In our previous work in transcriptional regulation of sugar, expression of genes encoding putative glycosyl hydrolases in Arabidopsis was induced by sugar starvation. They were annotated as b-galactosidase (At5g56870), ${\beta}-xylosidase$ (At5g49360) and ${\beta}-glucosidase$ (At3g60140), which belong to glycosyl hydrolase family that has a catalytic domain of polysaccharides. From the primary structure of deduced amino acid sequence, they were predicted to localize to cell wall. Further investigation of these cell wall hydrolases implicated that cell wall polysaccharides provide metabolizable sugars to nutrient allocation under sugar starvation.

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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.

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붉은줄지렁이 (Eisenia andrei) 중장에서 발현되는 chitinase 유전자, EaChi의 동정 및 분자생물학적 특성에 관한 연구 (Identification and molecular characterization of the chitinase gene, EaChi, from the midgut of the earthworm, Eisenia andrei)

  • 탁은식;김대환;이명식;안치현;박순철
    • 유기물자원화
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    • 제18권3호
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    • pp.31-37
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    • 2010
  • Chitinase (EC 3.2.1.14)는 곰팡이와 곤충 등에서 세포벽이나 외골격을 형성하는 생물학적 방어기질의 구성 요소인 chitin의 ${\beta}$-1,4-linkages를 가수분해하는 효소이다. 이러한 chitinase를 포함하는 Glycosyl hydrolases 18 family는 Archea, Prokaryotes 그리고 Eukaryotes에 널리 퍼져 있는 Ancient gene으로 알려져 있다. 그 중, 지렁이는 곰팡이와 세균이 많은 환경에서 자라기 때문에 이러한 미생물들의 공격으로부터 스스로를 보호할 수 있는 면역체계를 가지고 있는 것으로 알려져 왔다. 본 연구에서는, 붉은줄지렁이 (Eisenia andrei)의 중장에서 발현되는 Chitinases의 cDNA 서열을 얻기 위해 기존에 알려져 있던 EST 서열을 가지고 RT-PCR 및 RACE-PCR을 수행하였고 이를 통해 E. andrei의 중장에서 발현되는 Chitinase의 특성을 동정 및 규명하였다. 그 결과 309개의 아미노산을 암호화하는 927개의 염기 서열을 얻을 수 있었으며 다른 종들의 Chitinases와 아미노산 서열을 비교 분석한 결과 지렁이의 Chitinase는 Glycosyl hydrolases 18 family에 속하고, 기질 결합과 촉매 작용에 관여하는 2개의 영역이 잘 보존되어 있는 것으로 나타났다.

키틴/키토산 가수분해효소의 분류 및 특성 (Classification and Characteristics of Chitin/Chitosan Hydrolases)

  • 이한승
    • 생명과학회지
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    • 제18권11호
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    • pp.1617-1624
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    • 2008
  • 키틴과 그 탈아세틸화된 형태인 키토산은 지구 상에 가장 풍부하게 존재하는 바이오매스의 하나이다. 키틴과 키토산은 항균활성, 면역증강, 중금속 흡착 등 다양한 생리활성을 보이고 있으며 식품, 의약품, 환경산업 등에서 다양하게 응용되고 있다. 이러한 키틴/키토산을 가수분해하는 효소들과 그 3차구조, 유전자들이 세균, 고세균, 진핵생물등 모든 생물종에서 보고되어 왔다. 탄수화물을 가수분해하는 효소들은 그 아미노산 서열에 따라 CAZy (Carbohydrate Active Enzymes) 데이터베이스에 분류되었는데 흥미롭게도 최근까지 키틴가수분해효소와 키토산가수분해효소들은 14개의 glycosyl hydrolase (GH) family들로 분류되어 있다(GH2, GH5, GH7, GH8, GH18, GH19, GH20, GH46, GH48, GH73, GH75, GH80, GH84, GH85). 본 총설에서는 새로운 유전자원를 찾기위한 한 방편으로서 최근에 새롭게 분류된 glycosyl hydrolase family의 분류법에 따라 각각의 GH family에 속하는 키틴/키토산가수분해효소의 종류 및 구조, 그리고 그 효소적 특징에 대하여 논하고자 한다.

키토산분해효소의 분류와 효소적 특성 (Enzymatic Characterization and Classifications of Chitosanases)

  • 정우진;국주희;김길용;박지용;박노동
    • Applied Biological Chemistry
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    • 제48권1호
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    • pp.16-22
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    • 2005
  • 키토산분해효소(Chitosanases, EC 3.2.1.132)는 당질가수분해효소군의 하나로, 아미노당인 D-glucosamine polymer인 chitosan의 ${\beta}-1,4-glycoside$ 결합을 가수분해하는 효소이며, 세균, 곰팡이, 식물 등에 널리 분포한다. 본 논문에서는 chitosanase의 N-말단 아미노산의 서열과 입체구조에 근거한 family 및 clan 분류, 작용모형, 절단 유형, subclass 분류, 및 family-subclass 상관성을 검토하였다. 아미노산 서열과 입체구조와 기질의 분해패턴 사이에는 깊은 상관이 있음을 확인 제시하였다. 다양한 종 유래 chitosanase의 1차구조의 해명과 진화적 상관 규명, 나아가 보다 정교한 chitosanase의 정의와 다양한 산업적 응용에의 가능성도 검토하였다.

Cloning and molecular characterization of a new fungal xylanase gene from Sclerotinia sclerotiorum S2

  • Ellouze, Olfa Elleuch;Loukil, Sana;Marzouki, Mohamed Nejib
    • BMB Reports
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    • 제44권10호
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    • pp.653-658
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    • 2011
  • Sclerotinia sclerotiorum fungus has three endoxylanases induced by wheat bran. In the first part, a partial xylanase sequence gene (90 bp) was isolated by PCR corresponding to catalytic domains (${\beta}5$ and ${\beta}6$ strands of this protein). The high homology of this sequence with xylanase of Botryotinia fuckeliana has permitted in the second part to amplify the XYN1 gene. Sequence analysis of DNA and cDNA revealed an ORF of 746 bp interrupted by a 65 bp intron, thus encoding a predicted protein of 226 amino acids. The mature enzyme (20.06 kDa), is coded by 188 amino acid (pI 9.26). XYN1 belongs to G/11 glycosyl hydrolases family with a conserved catalytic domain containing $E_{86}$ and $E_{178}$ residues. Bioinformatics analysis revealed that there was no Asn-X-Ser/Thr motif required for N-linked glycosylation in the deduced sequence however, five O-glycosylation sites could intervene in the different folding of xylanses isoforms and in their secretary pathway.

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.

Cloning, Expression, and Characterization of a Thermostable GH51 ${\alpha}-\small{L}$-Arabinofuranosidase from Paenibacillus sp. DG-22

  • Lee, Sun Hwa;Lee, Yong-Eok
    • Journal of Microbiology and Biotechnology
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    • 제24권2호
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    • pp.236-244
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    • 2014
  • The gene encoding ${\alpha}-\small{L}$-arabinofuranosidase (AFase) from Paenibacillus sp. DG-22 was cloned, sequenced, and expressed in Escherichia coli. The AFase gene (abfA) comprises a 1,509 bp open reading frame encoding 502 amino acids with a molecular mass of 56,520 daltons. The deduced amino acid sequence of the gene shows that AbfA is an enzyme consisting of only a catalytic domain, and that the enzyme has significant similarity to AFases classified into the family 51 of the glycosyl hydrolases. abfA was subcloned into the pQE60 expression vector to fuse it with a six-histidine tag and the recombinant AFase (rAbfA) was purified to homogeneity. The specific activity of the recombinant enzyme was 96.7 U/mg protein. Determination of the apparent molecular mass by gel-filtration chromatography indicated that AbfA has a tetrameric structure. The optimal pH and temperature of the enzyme were 6.0 and $60^{\circ}C$, respectively. The enzyme activity was completely inhibited by 1 mM $HgCl_2$. rAbfA was active only towards p-nitrophephenyl ${\alpha}-\small{L}$-arabinofuranoside and exhibited $K_m$ and $V_{max}$ values of 3.5 mM and 306.1 U/mg, respectively. rAbfA showed a synergistic effect in combination with endoxylanase on the degradation of oat spelt xylan and wheat arabinoxylan.

An Approach for Lactulose Production Using the CotX-Mediated Spore-Displayed β-Galactosidase as a Biocatalyst

  • Wang, He;Yang, Ruijin;Hua, Xiao;Zhang, Wenbin;Zhao, Wei
    • Journal of Microbiology and Biotechnology
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    • 제26권7호
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    • pp.1267-1277
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    • 2016
  • Currently, enzymatic synthesis of lactulose, a synthetic prebiotic disaccharide, is commonly performed with glycosyl hydrolases. In this work, a new type of lactulose-producing biocatalyst was developed by displaying β-galactosidase from Bacillus stearothermophilus IAM11001 (Bs-β-Gal) on the surface of Bacillus subtilis 168 spores. Localization of β-Gal on the spore surface as a fusion to CotX was verified by western blot analysis, immunofluorescence microscopy, and flow cytometry. The optimum pH and temperature for the resulting spore-displayed β-Gal was 6.0 and 75℃, respectively. Under optimal conditions, it showed maximum activity of 0.42 U/mg spores (dry weight). Moreover, the spore-displayed CotX-β-Gal was employed as a whole cell biocatalyst to produce lactulose, yielding 8.8 g/l from 200 g/l lactose and 100 g/l fructose. Reusability tests showed that the spore-displayed CotX-β-Gal retained around 30.3% of its initial activity after eight successive conversion cycles. These results suggest that the CotX-mediated spore-displayed β-Gal may provide a promising strategy for lactulose production.

Chitinase-producing Salinivibrio bacteria isolated from salt-fermented shrimp with antimicrobial and safety assessments

  • Le, Bao;Chung, Gyuhwa;Yang, Seung Hwan
    • Journal of Applied Biological Chemistry
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    • 제61권3호
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    • pp.233-238
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    • 2018
  • Chitinases are glycosyl hydrolases which cleave the ${\beta}$-1,4 linkage of chitin into oligo or monomers of N-acetylglucosamine. These bacterial enzymes have been used for a wide range of applications in the food and pharmaceutical industries. In this study, we isolated two potential chitinolytic strains, BAO-01 and BAO-02, from salt-fermented shrimp, which were shown to belong to the genus Salinivibrio through genetic characterization using 16S rRNA. These isolates were gram-positive, rod-shaped, and non-spore forming. BAO-01 showed greater growth and chitinase activity than BAO-02 after the incubation at $37^{\circ}C$ for 4 days. Both strains grew on a wide range of carbon and nitrogen sources, pH values, temperatures, and salt levels. However, they showed minor biochemical differences. In addition, their antimicrobial activities against foodborne pathogens and antibiotic susceptibilities were evaluated. These Salinivibrio spp. did not show bioamine production, hemolytic activity, and mucin degradation. Therefore, the in vitro screening results suggested that these bacteria could be widely used as new candidates for chitin hydrolyzation and seafood fermentation.