• 제목/요약/키워드: GH family

검색결과 63건 처리시간 0.016초

Bacillus subtilis 분리균 2주 유래 mannanases의 특성 비교 (Isolation of Mannanase-producing Bacteria, Bacillus subtilis WL-6 and WL-11, and Cloning and Characterization of Mannanase)

  • 윤기홍
    • 생명과학회지
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    • 제26권10호
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    • pp.1113-1120
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    • 2016
  • 우리나라의 전통 발효 된장으로부터 균체외 효소로 mannanase를 생산하는 세균 2주가 분리되었다. 분리균 WL-6과 WL-11은 형태적 특성, 생화학적 성질 및 16S rDNA의 염기서열에 따라 Bacillus subtilis로 확인되었다. 이들 두 균주로부터 각각 mannanase 유전자를 대장균에 클로닝하여 염기서열을 결정한 결과 mannanase 유전자는 362 아미노산으로 구성된 단백질을 코드하며 1,086 뉴클레오티드로 동일하게 이루어졌다. WL-6과 WL-11 mannanase (Man6, Man11)의 아미노산 잔기 배열은 서로 8개 잔기가 다르며 GH family 26에 속하는 B. subtilis의 mannanases와 매우 상동성이 높았다. Man6과 Man11의 아미노 말단의 26개 아미노 잔기가 signal peptide로 예측되었다. 재조합 대장균로부터 각각 생산된 Man6과 Man11은 94~95% 정도가 균체내에 존재하였고, mannotriose, mannotetraose, mannopentaose, mannohexaose와 같은 만노올리고당과 locust bean gum을 유사하게 분해하여 주된 반응산물로 mannobiose와 mannotriose를 생성하였다. Man6는 55℃와 pH 6.0, Man11은 60℃와 pH 5.5에서 각각 최대 반응활성을 보였으며, Man11이 Man6에 비해 열안정성이 높았다.

Molecular Cloning and Characterization of a Novel Exo-β-1,3-Galactanase from Penicillium oxalicum sp. 68

  • Zhou, Tong;Hu, Yanbo;Yan, Xuecui;Cui, Jing;Wang, Yibing;Luo, Feng;Yuan, Ye;Yu, Zhenxiang;Zhou, Yifa
    • Journal of Microbiology and Biotechnology
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    • 제32권8호
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    • pp.1064-1071
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    • 2022
  • Arabinogalactans have diverse biological properties and can be used as pharmaceutical agents. Most arabinogalactans are composed of β-(1→3)-galactan, so it is particularly important to identify β-1,3-galactanases that can selectively degrade them. In this study, a novel exo-β-1,3-galactanase, named PoGal3, was screened from Penicillium oxalicum sp. 68, and hetero-expressed in P. pastoris GS115 as a soluble protein. PoGal3 belongs to glycoside hydrolase family 43 (GH43) and has a 1,356-bp gene length that encodes 451 amino acids residues. To study the enzymatic properties and substrate selectivity of PoGal3, β-1,3-galactan (AG-P-I) from larch wood arabinogalactan (LWAG) was prepared and characterized by HPLC and NMR. Using AG-P-I as substrate, purified PoGal3 exhibited an optimal pH of 5.0 and temperature of 40℃. We also discovered that Zn2+ had the strongest promoting effect on enzyme activity, increasing it by 28.6%. Substrate specificity suggests that PoGal3 functions as an exo-β-1,3-galactanase, with its greatest catalytic activity observed on AG-P-I. Hydrolytic products of AG-P-I are mainly composed of galactose and β-1,6-galactobiose. In addition, PoGal3 can catalyze hydrolysis of LWAG to produce galacto-oligomers. PoGal3 is the first enzyme identified as an exo-β-1,3-galactanase that can be used in building glycan blocks of crucial glycoconjugates to assess their biological functions.

Molecular Cloning and Expression of a Novel Protease-resistant GH-36 $\alpha$-Galactosidase from Rhizopus sp. F78 ACCC 30795

  • Yanan, Cao;Wang, Yaru;Luo, Huiying;Shi, Pengjun;Meng, Kun;Zhou, Zhigang;Zhang, Zhifang;Yao, Bin
    • Journal of Microbiology and Biotechnology
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    • 제19권11호
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    • pp.1295-1300
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    • 2009
  • A 2,172-bp full-length gene (aga-F78), encoding a protease-resistant $\alpha$-galactosidase, was cloned from Rhizopus sp. F78 and expressed in Escherichia coli. The deduced amino acid sequence shared highest identity (45.0%) with an $\alpha$-galactosidase of glycoside hydrolase family 36 from Absidia corymbifera. After one-step purification with a Ni-NTA chelating column, the recombinant Aga-F78 migrated as a single band of ~82 and ~210 kDa on SDS-PAGE and nondenaturing gradient PAGE, respectively, indicating that the native structure of the recombinant Aga-F78 was a trimer. Exhibiting the similar properties as the authentic protein, purified recombinant Aga-F78 was optimally active at $50^{\circ}C$ and pH 4.8, highly pH stable over the pH range 5.0-10.0, more resistant to some cations and proteases, and had wide substrate specificity (pNPG, melidiose, raffinose, and stachyose). The recombinant enzyme also showed good hydrolytic ability to soybean meal, releasing galactose of $415.58\;{\mu}g/g$ soybean meal. When combined with trypsin, the enzyme retained over 90% degradability to soybean meal. These favorable properties make Aga-F78 a potential candidate for applications in the food and feed industries.