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超嗜热海栖热袍菌木聚糖酶XYN10B在生物质溶解亲水性离子液体存在的情况下,于高温下表现出高活性。

Hyperthermostable Thermotoga maritima xylanase XYN10B shows high activity at high temperatures in the presence of biomass-dissolving hydrophilic ionic liquids.

作者信息

Yu Tianyi, Anbarasan Sasikala, Wang Yawei, Telli Kübra, Aslan Aşkın Sevinç, Su Zhengding, Zhou Yin, Zhang Li, Iivonen Piia, Havukainen Sami, Mentunen Tero, Hummel Michael, Sixta Herbert, Binay Baris, Turunen Ossi, Xiong Hairong

机构信息

South-Central University for Nationalities, College of Life Science, Wuhan, 430074, China.

Department of Biotechnology and Chemical Technology, School of Chemical Technology, Aalto University, 00076, Aalto, Finland.

出版信息

Extremophiles. 2016 Jul;20(4):515-24. doi: 10.1007/s00792-016-0841-y. Epub 2016 May 30.

Abstract

The gene of Thermotoga maritima GH10 xylanase (TmXYN10B) was synthesised to study the extreme limits of this hyperthermostable enzyme at high temperatures in the presence of biomass-dissolving hydrophilic ionic liquids (ILs). TmXYN10B expressed from Pichia pastoris showed maximal activity at 100 °C and retained 92 % of maximal activity at 105 °C in a 30-min assay. Although the temperature optimum of activity was lowered by 1-ethyl-3-methylimidazolium acetate ([EMIM]OAc), TmXYN10B retained partial activity in 15-35 % hydrophilic ILs, even at 75-90 °C. TmXYN10B retained over 80 % of its activity at 90 °C in 15 % [EMIM]OAc and 15-25 % 1-ethyl-3-methylimidazolium dimethylphosphate ([EMIM]DMP) during 22-h reactions. [EMIM]OAc may rigidify the enzyme and lower V max. However, only minor changes in kinetic parameter K m showed that competitive inhibition by [EMIM]OAc of TmXYN10B is minimal. In conclusion, when extended enzymatic reactions under extreme conditions are required, TmXYN10B shows extraordinary potential.

摘要

合成了嗜热栖热菌GH10木聚糖酶(TmXYN10B)的基因,以研究这种超嗜热酶在存在生物质溶解亲水性离子液体(ILs)的高温下的极限情况。在30分钟的测定中,毕赤酵母表达的TmXYN10B在100°C时显示出最大活性,在105°C时保留了92%的最大活性。尽管乙酸1-乙基-3-甲基咪唑鎓([EMIM]OAc)降低了活性的最适温度,但即使在75-90°C,TmXYN10B在15-35%的亲水性离子液体中仍保留部分活性。在22小时的反应中,TmXYN10B在90°C下于15%的[EMIM]OAc和15-25%的1-乙基-3-甲基咪唑鎓二甲基磷酸酯([EMIM]DMP)中保留了超过80%的活性。[EMIM]OAc可能会使酶僵化并降低Vmax。然而,动力学参数Km的微小变化表明[EMIM]OAc对TmXYN10B的竞争性抑制作用最小。总之,当需要在极端条件下进行延长的酶促反应时,TmXYN10B显示出非凡的潜力。

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