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Effect of CBM1 and linker region on enzymatic properties of a novel thermostable dimeric GH10 xylanase (Xyn10A) from filamentous fungus Aspergillus fumigatus Z5

机译:CBM1和接头区域对新型热稳定丝状真菌烟曲霉Z5的二聚体GH10木聚糖酶(Xyn10A)的酶学性能的影响

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摘要

Xylanase with a high thermostability will satisfy the needs of raising the temperature of hydrolysis to improve the rheology of the broth in industry of biomass conversion. In this study, a xylanase gene (xyn10A), predicted to encode a hydrolase domain of GH10, a linker region and a CBM1 domain, was cloned from a superior lignocellulose degrading strain Aspergillus fumigatus Z5 and successfully expressed in Pichia pastoris X33. Xyn10A has a specific xylanase activity of 34.4 U mg−1, and is optimally active at 90 °C and pH 6.0. Xyn10A shows quite stable at pHs ranging from 3.0 to 11.0, and keeps over 40% of xylanase activity after incubation at 70 °C for 1 h. Removal of CBM1 domain has a slight negative effect on its thermostability, but the further cleavage of linker region significantly decreased its stability at high temperature. The transfer of CBM1 and linker region to another GH10 xylanase can help to increase the thermostability. In addition, hydrolase domains between the two Xyn10A proteins naturally formed a dimer structure, which became more thermostable after removing the CBM1 or/and linker region. This thermostable Xyn10A is a suitable candidate for the highly efficient fungal enzyme cocktails for biomass conversion.Electronic supplementary materialThe online version of this article (10.1186/s13568-018-0576-5) contains supplementary material, which is available to authorized users.
机译:具有高热稳定性的木聚糖酶将满足提高水解温度以改善生物质转化工业中肉汤流变性的需求。在这项研究中,木聚糖酶基因(xyn10A)被预测为编码GH10的水解酶结构域,一个连接子区域和一个CBM1结构域,是从一种优良的木质纤维素降解菌株烟曲霉Z5克隆的,并成功地在巴斯德毕赤酵母X33中表达。 Xyn10A的木聚糖酶比活性为34.4 U·mg -1 ,在90°C和pH 6.0时具有最佳活性。 Xyn10A在3.0至11.0的pH值下表现出相当稳定的性能,并在70°C孵育1小时后保持超过40%的木聚糖酶活性。去除CBM1结构域对其热稳定性有轻微的负面影响,但连接区的进一步切割显着降低了其在高温下的稳定性。 CBM1和接头区域转移到另一个GH10木聚糖酶可以帮助提高热稳定性。此外,两个Xyn10A蛋白之间的水解酶结构域自然形成了二聚体结构,在去除CBM1或/和接头区域后,该结构变得更加热稳定。这种热稳定的Xyn10A是高效的真菌酶混合物用于生物质转化的合适候选者。电子补充材料本文的在线版本(10.1186 / s13568-018-0576-5)包含补充材料,可供授权用户使用。

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