嗜酸性内聚糖酶 PphXyn11 的酶学表征和热稳定性改进

IF 1.4 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS Protein expression and purification Pub Date : 2024-04-05 DOI:10.1016/j.pep.2024.106482
Le Wang, Yan Yan Wang, Zhi Ling Chen, Yan Hong Li
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引用次数: 0

摘要

已知 GH11 酶对水解木聚糖具有特异性和高效性。它已从许多微生物中分离出来,其酶特性和热稳定性因物种而异。本研究对来自一种新型木聚糖降解菌株 Paenibacillus physcomitrellae XB 的 GH11 酶 PphXyn11 进行了表征,并构建了五个突变体,试图提高该酶的耐热性。结果表明,PphXyn11是一种嗜酸性的内β-1,4-木聚糖酶,其最佳反应pH值为3.0-4.0,在最佳反应温度为40 ℃时,它能有效地分解不同种类的木聚糖底物,如榉木木聚糖、小麦阿拉伯木聚糖和木寡糖,生成的主要产物为木糖和木三糖。利用定点突变技术提高 PphXyn11 的热稳定性发现,通过在 PphXyn11 的 N 端、C 端添加二硫键和增加表面带电残基而设计的三个突变体 W33C/N47C、S127C/N174C 和 S49E 能显著提高酶活性和热稳定性,使最佳反应温度达到 50 ℃。分子动力学模拟以及盐桥和氢键数量的计算表明,这三个突变体的蛋白质结构比野生型更稳定,这为其热稳定性的提高提供了理论支持。当然,要实现半纤维素生物质的规模化生物转化,还需要进一步研究改进 PphXyn11 的酶学特性。
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Enzymatic characterization and thermostability improvement of an acidophilic endoxylanase PphXyn11 from Paenibacillus physcomitrellae XB

GH11 enzyme is known to be specific and efficient for the hydrolysis of xylan. It has been isolated from many microorganisms, and its enzymatic characteristics and thermostability vary between species. In this study, a GH11 enzyme PphXyn11 from a novel xylan-degrading strain of Paenibacillus physcomitrellae XB was characterized, and five mutants were constructed to try to improve the enzyme's thermostability. The results showed that PphXyn11 was an acidophilic endo-β-1,4-xylanase with the optimal reaction pH of 3.0–4.0, and it could deconstruct different kinds of xylan substrates efficiently, such as beechwood xylan, wheat arabinoxylan and xylo-oligosaccharides, to produce xylobiose and xylotriose as the main products at the optimal reaction temperature of 40 °C. Improvement of the thermal stability of PphXyn11 using site-directed mutagenesis revealed that three mutants, W33C/N47C, S127C/N174C and S49E, designed by adding the disulfide bonds at the N-terminal, C-terminal and increasing the charged residues on the surface of PphXyn11 respectively, could increase the enzymatic activity and thermal stablility significantly and make the optimal reaction temperature reach 50 °C. Molecular dynamics simulations as well as computed the numbers of salt bridges and hydrogen bonds indicated that the protein structures of these three mutants were more stable than the wild type, which provided theoretical support for their improved thermal stability. Certainly, further research is necessary to improve the enzymatic characteristics of PphXyn11 to achieve the bioconversion of hemicellulosic biomass on an applicable scale.

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来源期刊
Protein expression and purification
Protein expression and purification 生物-生化研究方法
CiteScore
3.70
自引率
6.20%
发文量
120
审稿时长
32 days
期刊介绍: Protein Expression and Purification is an international journal providing a forum for the dissemination of new information on protein expression, extraction, purification, characterization, and/or applications using conventional biochemical and/or modern molecular biological approaches and methods, which are of broad interest to the field. The journal does not typically publish repetitive examples of protein expression and purification involving standard, well-established, methods. However, exceptions might include studies on important and/or difficult to express and/or purify proteins and/or studies that include extensive protein characterization, which provide new, previously unpublished information.
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