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嗜热毁丝霉中热稳定多功能GH74木葡聚糖酶:在毕赤酵母中的高水平表达及重组蛋白的特性分析

Thermostable multifunctional GH74 xyloglucanase from Myceliophthora thermophila: high-level expression in Pichia pastoris and characterization of the recombinant protein.

作者信息

Berezina Oksana V, Herlet Jonathan, Rykov Sergey V, Kornberger Petra, Zavyalov Artem, Kozlov Dmitriy, Sakhibgaraeva Liliya, Krestyanova Irina, Schwarz Wolfgang H, Zverlov Vladimir V, Liebl Wolfgang, Yarotsky Sergey V

机构信息

State Research Institute of Genetics and Selection of Industrial Microorganisms, 1-st Dorojniy pr. 1, Moscow, Russian Federation, 117545.

Department of Microbiology, Technical University Munich, Emil-Ramann-Str. 4, 85354, Freising, Germany.

出版信息

Appl Microbiol Biotechnol. 2017 Jul;101(14):5653-5666. doi: 10.1007/s00253-017-8297-2. Epub 2017 May 5.

Abstract

A xyloglucanase of the GH74 family was identified in the thermophilic fungus strain Myceliophthora thermophila VKPM F-244, and its gene sequence was optimized for cloning and expression in Pichia pastoris. The recombinant xyloglucanase MtXgh74 exhibited the highest activity toward tamarind seed xyloglucan with a K value of 0.51 ± 0.06 mg/mL. The activities on barley β-glucan and carboxymethylcellulose were about 4 and 2%, respectively, compared to xyloglucan. Maximum xyloglucanase activity was observed at 70-75 °C and pH 6.5. After pre-incubation at 50 °C, pH 6.0 for 3 h, the enzyme retained 100% of its activity. The half-life of MtXgh74 at 60 °C, pH 6.0 was 40 min. In P. pastoris, MtXgh74 was produced in glycosylated form. The enzyme production in a 1 L bioreactor resulted in a yield of 118 U/mL or 5.3 g/L after 51 h fermentation. Kinetic studies of the hydrolysis product formation suggest that MtXgh74 has an endo-processive mode of action. The final products were the standard xyloglucan building blocks XXXG, XXLG, XLXG, and XLLG. Additionally, MtXgh74 hydrolyzed various linkages within the xyloglucan building blocks XXXG, XXLG, and XLXG (except XLLG) producing diverse low molecular weight oligosaccharides which may be identified by MALDI-TOF as XG, XX, XXG/GXX/XGX, XXX, LG, LX/XL, XLX/XXL, LLG, GXXXG, GXLLG, XLLGX. The unique combination of different activities within one enzyme along with its high thermostability and specificity toward xyloglucan makes MtXgh74 a promising candidate enzyme for industrial applications.

摘要

在嗜热真菌嗜热毁丝霉(Myceliophthora thermophila)VKPM F-244菌株中鉴定出一种GH74家族的木葡聚糖酶,并对其基因序列进行了优化,以便在毕赤酵母(Pichia pastoris)中克隆和表达。重组木葡聚糖酶MtXgh74对罗望子种子木葡聚糖表现出最高活性,其K 值为0.51±0.06 mg/mL。与木葡聚糖相比,其对大麦β-葡聚糖和羧甲基纤维素的活性分别约为4%和2%。在70-75°C和pH 6.5条件下观察到最大木葡聚糖酶活性。在50°C、pH 6.0条件下预孵育3小时后,该酶保留了100%的活性。MtXgh74在60°C、pH 6.0条件下的半衰期为40分钟。在毕赤酵母中,MtXgh74以糖基化形式产生。在1 L生物反应器中进行发酵,51小时后酶产量达到118 U/mL或5. g/L。对水解产物形成的动力学研究表明,MtXgh74具有内切渐进作用模式。最终产物是标准的木葡聚糖结构单元XXXG、XXLG、XLXG和XLLG。此外,MtXgh74水解木葡聚糖结构单元XXXG、XXLG和XLXG(XLLG除外)内的各种连接,产生多种低分子量寡糖,这些寡糖可通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)鉴定为XG、XX、XXG/GXX/XGX、XXX、LG、LX/XL、XLX/XXL、LLG、GXXXG、GXLLG、XLLGX。一种酶中不同活性的独特组合,以及其对木葡聚糖的高热稳定性和特异性,使得MtXgh74成为工业应用中一个有前景的候选酶。

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