Mining and rational design of psychrophilic catalases using metagenomics and deep learning models.

IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Applied Microbiology and Biotechnology Pub Date : 2024-12-01 Epub Date: 2024-01-04 DOI:10.1007/s00253-023-12926-1
Shuning Wu, Guoshun Xu, Yongping Su, Huoqing Huang, Xinxin Xu, Yuhong Zhang, Jian Tian, Wei Zhang, Zhiwei Zhang, Bo Liu
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Abstract

A complete catalase-encoding gene, designated soiCat1, was obtained from soil samples via metagenomic sequencing, assembly, and gene prediction. soiCat1 showed 73% identity to a catalase-encoding gene of Mucilaginibacter rubeus strain P1, and the amino acid sequence of soiCAT1 showed 99% similarity to the catalase of a psychrophilic bacterium, Pedobacter cryoconitis. soiCAT1 was identified as a psychrophilic enzyme due to the low optimum temperature predicted by the deep learning model Preoptem, which was subsequently validated through analysis of enzymatic properties. Experimental results showed that soiCAT1 has a very narrow range of optimum temperature, with maximal specific activity occurring at the lowest test temperature (4 °C) and decreasing with increasing reaction temperature from 4 to 50 °C. To rationally design soiCAT1 with an improved temperature range, soiCAT1 was engineered through site-directed mutagenesis based on molecular evolution data analyzed through position-specific amino acid possibility calculation. Compared with the wild type, one mutant, soiCAT1S205K, exhibited an extended range of optimum temperature ranging from 4 to 20 °C. The strategies used in this study may shed light on the mining of genes of interest and rational design of desirable proteins. KEY POINTS: • Numerous putative catalases were mined from soil samples via metagenomics. • A complete sequence encoding a psychrophilic catalase was obtained. • A mutant psychrophilic catalase with an extended range of optimum temperature was engineered through site-directed mutagenesis.

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利用元基因组学和深度学习模型挖掘并合理设计亲心理过氧化氢酶。
通过元基因组测序、组装和基因预测,从土壤样本中获得了一个完整的过氧化氢酶编码基因,命名为soiCat1。soiCat1与Mucilaginibacter rubeus菌株P1的过氧化氢酶编码基因有73%的相似性,而soiCAT1的氨基酸序列与一种精神嗜性细菌--冻干杆菌的过氧化氢酶有99%的相似性。由于深度学习模型 Preoptem 预测的最适温度较低,soiCAT1 被确定为一种精神嗜性酶,随后又通过酶特性分析进行了验证。实验结果表明,soiCAT1 的最适温度范围很窄,在最低试验温度(4 °C)时比活性最大,从 4 °C到 50 °C,比活性随着反应温度的升高而降低。为了合理地设计出温度范围更广的 soiCAT1,我们根据特定位置氨基酸可能性计算分析的分子进化数据,通过定点突变的方法设计了 soiCAT1。与野生型相比,一个突变体 soiCAT1S205K 的最适温度范围扩大到 4 至 20 °C。本研究采用的策略可为挖掘感兴趣的基因和合理设计理想的蛋白质提供启示。要点- 通过元基因组学从土壤样本中挖掘出了大量推定过氧化氢酶。- 获得了一个编码嗜心理过氧化氢酶的完整序列。- 通过定点突变技术,设计出了一种具有更宽最适温度范围的嗜心理过氧化氢酶突变体。
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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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