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通过全原子分子动力学模拟组装木聚糖酶-地衣聚糖酶嵌合体。

Assembling a xylanase-lichenase chimera through all-atom molecular dynamics simulations.

作者信息

Cota Junio, Oliveira Leandro C, Damásio André R L, Citadini Ana P, Hoffmam Zaira B, Alvarez Thabata M, Codima Carla A, Leite Vitor B P, Pastore Glaucia, de Oliveira-Neto Mario, Murakami Mario T, Ruller Roberto, Squina Fabio M

机构信息

Laboratório Nacional de Ciência e Tecnologia do Bioetanol, Campinas, SP, Brazil.

出版信息

Biochim Biophys Acta. 2013 Aug;1834(8):1492-500. doi: 10.1016/j.bbapap.2013.02.030. Epub 2013 Feb 28.

Abstract

Multifunctional enzyme engineering can improve enzyme cocktails for emerging biofuel technology. Molecular dynamics through structure-based models (SB) is an effective tool for assessing the tridimensional arrangement of chimeric enzymes as well as for inferring the functional practicability before experimental validation. This study describes the computational design of a bifunctional xylanase-lichenase chimera (XylLich) using the xynA and bglS genes from Bacillus subtilis. In silico analysis of the average solvent accessible surface area (SAS) and the root mean square fluctuation (RMSF) predicted a fully functional chimera, with minor fluctuations and variations along the polypeptide chains. Afterwards, the chimeric enzyme was built by fusing the xynA and bglS genes. XylLich was evaluated through small-angle X-ray scattering (SAXS) experiments, resulting in scattering curves with a very accurate fit to the theoretical protein model. The chimera preserved the biochemical characteristics of the parental enzymes, with the exception of a slight variation in the temperature of operation and the catalytic efficiency (kcat/Km). The absence of substantial shifts in the catalytic mode of operation was also verified. Furthermore, the production of chimeric enzymes could be more profitable than producing a single enzyme separately, based on comparing the recombinant protein production yield and the hydrolytic activity achieved for XylLich with that of the parental enzymes.

摘要

多功能酶工程可改进用于新兴生物燃料技术的酶混合物。通过基于结构的模型(SB)进行分子动力学研究是评估嵌合酶三维排列以及在实验验证前推断功能实用性的有效工具。本研究描述了利用枯草芽孢杆菌的xynA和bglS基因对双功能木聚糖酶-地衣聚糖酶嵌合体(XylLich)进行的计算设计。对平均溶剂可及表面积(SAS)和均方根波动(RMSF)的计算机模拟分析预测了一种功能完整的嵌合体,其沿多肽链的波动和变化较小。之后,通过融合xynA和bglS基因构建了嵌合酶。通过小角X射线散射(SAXS)实验对XylLich进行评估,得到的散射曲线与理论蛋白质模型拟合度非常高。该嵌合体保留了亲本酶的生化特性,但操作温度和催化效率(kcat/Km)略有变化。还验证了催化操作模式没有实质性转变。此外,基于比较XylLich与亲本酶的重组蛋白产量和水解活性,生产嵌合酶可能比单独生产单一酶更具成本效益。

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