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富含脯氨酸的C末端序列拓宽了嗜热脱氮地芽孢杆菌C5重组木聚糖酶的最佳温度和pH范围。

C-Terminal proline-rich sequence broadens the optimal temperature and pH ranges of recombinant xylanase from Geobacillus thermodenitrificans C5.

作者信息

Irfan Muhammad, Guler Halil Ibrahim, Ozer Aysegul, Sapmaz Merve Tuncel, Belduz Ali Osman, Hasan Fariha, Shah Aamer Ali

机构信息

Department of Microbiology, Faculty of Biological Sciences, Quaid-I-Azam University, Islamabad, Pakistan.

Department of Molecular Biology and Genetic, Faculty of Sciences, Karadeniz Technical University, 61080 Trabzon, Turkey.

出版信息

Enzyme Microb Technol. 2016 Sep;91:34-41. doi: 10.1016/j.enzmictec.2016.05.012. Epub 2016 Jun 2.

Abstract

Efficient utilization of hemicellulose entails high catalytic capacity containing xylanases. In this study, proline rich sequence was fused together with a C-terminal of xylanase gene from Geobacillus thermodenitrificans C5 and designated as GthC5ProXyl. Both GthC5Xyl and GthC5ProXyl were expressed in Escherichia coli BL21 host in order to determine effect of this modification. The C-terminal oligopeptide had noteworthy effects and instantaneously extended the optimal temperature and pH ranges and progressed the specific activity of GthC5Xyl. Compared with GthC5Xyl, GthC5ProXyl revealed improved specific activity, a higher temperature (70°C versus 60°C) and pH (8 versus 6) optimum, with broad ranges of temperature and pH (60-80°C and 6.0-9.0 versus 40-60°C and 5.0-8.0, respectively). The modified enzyme retained more than 80% activity after incubating in xylan for 3h at 80°C as compared to wild -type with only 45% residual activity. Our study demonstrated that proper introduction of proline residues on C-terminal surface of xylanase family might be very effective in improvement of enzyme thermostability. Moreover, this study reveals an engineering strategy to improve the catalytic performance of enzymes.

摘要

半纤维素的高效利用需要含有木聚糖酶的高催化能力。在本研究中,富含脯氨酸的序列与嗜热栖热放线菌C5木聚糖酶基因的C末端融合,并命名为GthC5ProXyl。为了确定这种修饰的效果,GthC5Xyl和GthC5ProXyl均在大肠杆菌BL21宿主中表达。C末端寡肽具有显著作用,瞬间扩展了最佳温度和pH范围,并提高了GthC5Xyl的比活性。与GthC5Xyl相比,GthC5ProXyl显示出更高的比活性、更高的最佳温度(70°C对60°C)和pH(8对6),且温度和pH范围更广(分别为60-80°C和6.0-9.0,而野生型为40-60°C和5.0-8.0)。与野生型相比,修饰后的酶在80°C下于木聚糖中孵育3小时后保留了超过80%的活性,而野生型仅保留45%的残余活性。我们的研究表明,在木聚糖酶家族的C末端表面适当引入脯氨酸残基可能对提高酶的热稳定性非常有效。此外,本研究揭示了一种改善酶催化性能的工程策略。

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