首页> 外文期刊>Journal of Biotechnology >Engineering a de novo internal disulfide bridge to improve the thermal stability of xylanase from Bacillus stearothermophilus No. 236
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Engineering a de novo internal disulfide bridge to improve the thermal stability of xylanase from Bacillus stearothermophilus No. 236

机译:从头设计内部二硫键以改善嗜热脂肪芽孢杆菌236号木聚糖酶的热稳定性

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摘要

Improvement of thermal stability of the Bacillus stearthermophilus No. 236 endo- beta -1,4-xylanase (XynA) was tried by engineering a de novo designed disulfide bridge. Disulfide design was performed firstly using the disulfide bond design program (Disulfide by Design[TM]) to identify residue pairs having the favorable geometric characteristics for disulfide formation. Subsequently, the selected 25 amino acid pairs were filtered with the evolutionarily conserved Cys residues identified by alignment of 34 family 11 mesophilic and thermophilic xylanases, and also by doing inspection of the molecular model of the xylanases. Only one pair (Ser100 and Asn150) was finally chosen, and the respective amino acids were substituted with cysteine residues. The newly designed disulfide bridge increased thermostability of the XynA about 5 not equal to . This improved thermal stability was supported by the increase in the energy barrier for inactivation. As expected, the mutant XynA SNC demonstrated its better use in the hydrolysis of xylan at substantially higher temperatures than permitted by its native counterpart. The mutation had little influence on the catalytic efficiency and other functional properties of the XynA. In conclusion, it is evident that the strategically placed disulfide bridge has made the XynA be more effective in resisting thermal inactivation.
机译:通过工程设计从头设计的二硫键,尝试提高嗜热脂肪芽孢杆菌236号内切β--1,4-木聚糖酶(XynA)的热稳定性。首先使用二硫键设计程序(Disulfide by Design TM)进行二硫键设计,以鉴定具有有利于二硫键形成的几何特征的残基对。随后,用进化上保守的Cys残基过滤选定的25个氨基酸对,该残基通过比对34个家族11的嗜温和嗜热木聚糖酶,并通过检查木聚糖酶的分子模型来鉴定。最终仅选择一对(Ser100和Asn150),并且各自的氨基酸被半胱氨酸残基取代。新设计的二硫键增加了XynA的热稳定性,大约不等于5。灭活能垒的增加支持了这种改进的热稳定性。如所期望的,突变体XynA SNC证明了其在比其天然对应物所允许的温度高得多的温度下更好地用于木聚糖水解中。该突变对XynA的催化效率和其他功能特性影响很小。总之,很明显,战略性放置的二硫键使XynA在抵抗热失活方面更有效。

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