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嗜热脂肪地芽孢杆菌麦芽糖结合蛋白插入木聚糖酶的实验室进化提高了木聚糖酶活性和在碱性 pH 下的热稳定性。

Laboratory Evolution of Bacillus circulans Xylanase Inserted into Pyrococcus furiosus Maltodextrin-Binding Protein for Increased Xylanase Activity and Thermal Stability Toward Alkaline pH.

机构信息

Othmer-Jacobs Department of Chemical and Biomolecular Engineering, New York University, 6 MetroTech Center, Brooklyn, NY, 11201, USA.

出版信息

Appl Biochem Biotechnol. 2018 Apr;184(4):1232-1246. doi: 10.1007/s12010-017-2619-9. Epub 2017 Oct 6.

Abstract

High xylanase activity and stability toward alkaline pH is strongly desired for pulping and bleaching processes. We previously enhanced thermal stability of Bacillus circulans xylanase (BCX) by inserting into a thermophilic maltodextrin-binding protein from Pyrococcus furiosus (PfMBP) (the resulting complex named as PfMBP-BCX165). In the present study, we aimed to evolve the inserted BCX domain within PfMBP-BCX165 for greater xylanase activity toward alkaline pH while maintaining enhanced thermal stability. No BCX sequence variation was required for the thermal stabilization, thus allowing us to explore the entire BCX sequence space for the evolution. Specifically, we randomized the BCX sequence within PfMBP-BCX165 and then screened the resulting libraries to identify a PfMBP-BCX165 variant, PfMBP-BCX165. The T50R mutation enhanced xylanase activity of PfMBP-BCX165 toward alkaline pH without compromising thermal stability. When compared to PfMBP-BCX165, the corresponding unfused BCX mutant, BCX, exhibited similar pH dependence of xylanase activity, yet suffered from limited thermal stability. In summary, we showed that one can improve thermal stability and xylanase activity of BCX toward alkaline pH by inserting into PfMBP followed by sequence variation of the BCX domain. Our study also suggested that insertional fusion to PfMBP would be a useful stabilizing platform for evolving many proteins.

摘要

高木聚糖酶活性和对碱性 pH 的稳定性强烈需要用于制浆和漂白过程。我们之前通过插入来自 Pyrococcus furiosus(PfMBP)的嗜热麦芽糊精结合蛋白增强了 Bacillus circulans 木聚糖酶(BCX)的热稳定性(所得复合物命名为 PfMBP-BCX165)。在本研究中,我们旨在通过在 PfMBP-BCX165 中进化插入的 BCX 结构域,以获得更大的碱性 pH 下的木聚糖酶活性,同时保持增强的热稳定性。热稳定不需要 BCX 序列的变化,因此允许我们探索 PfMBP-BCX165 中 BCX 序列的整个空间进行进化。具体而言,我们在 PfMBP-BCX165 中随机化 BCX 序列,然后筛选所得文库以鉴定 PfMBP-BCX165 变体 PfMBP-BCX165。T50R 突变增强了 PfMBP-BCX165 在碱性 pH 下的木聚糖酶活性,而不损害热稳定性。与 PfMBP-BCX165 相比,相应的未融合的 BCX 突变体 BCX 表现出相似的木聚糖酶活性对 pH 的依赖性,但热稳定性有限。总之,我们表明,通过插入 PfMBP 并对 BCX 结构域进行序列变异,可以提高 BCX 的热稳定性和碱性 pH 下的木聚糖酶活性。我们的研究还表明,插入融合到 PfMBP 将是一个有用的稳定平台,用于进化许多蛋白质。

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