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用于控制玉米乙醇发酵中细菌污染的内溶素LysKB317的表面展示

surface display of endolysin LysKB317 for control of bacterial contamination in corn ethanol fermentations.

作者信息

Lu Shao-Yeh, Liu Siqing, Patel Maulik H, Glenzinski Kristina M, Skory Christopher D

机构信息

Renewable Product Technology Research Unit, National Center for Agricultural Utilization Research, USDA, Agricultural Research Service, Peoria, IL, United States.

Oak Ridge Institute for Science and Education (ORISE), Oak Ridge, TN, United States.

出版信息

Front Bioeng Biotechnol. 2023 Apr 6;11:1162720. doi: 10.3389/fbioe.2023.1162720. eCollection 2023.

Abstract

Control of bacterial contamination in bioethanol fermentation facilities has traditionally relied on chemical-based products such as hop acids and use of antibiotics. Recent emphasis on antibiotic stewardship has prompted new research into the development of alternative approaches to microbial remediation strategies. We recently described a recombinant peptidoglycan hydrolase, endolysin LysKB317, which inhibited strains in corn mash fermentation. Here, EBY100 was used to anchor recombinant LysKB317 using cell surface display with the a-agglutinin proteins Aga1p-Aga2p. Immunostaining and confocal fluorescence were used for localization of the extracellular interface of the cells. Yeast surface-expressed endolysin demonstrated an 83.8% decrease in bacterial cell counts compared to a 9.5% decrease in control yeast. Recombinant expressing LysKB317 used for small-scale corn mash fermentation, when infected with , could proactively control bacterial infection for 72 h with at least 1-log fold reduction. Analysis of fermentation products showed improved ethanol concentrations from 3.4% to at least 5.9% compared to the infection-only control and reduced levels of lactic and acetic acid from 34.7 mM to 13.8 mM and 25.5 mM to 18.1 mM, respectively. In an optimized yeast surface display system, proactive treatment of bacterial contaminants by endolysin LysKB317 can improve fermentation efficiency in the presence of contamination.

摘要

生物乙醇发酵设施中细菌污染的控制传统上依赖于基于化学的产品,如蛇麻酸和抗生素的使用。最近对抗生素管理的重视促使人们对开发微生物修复策略的替代方法进行新的研究。我们最近描述了一种重组肽聚糖水解酶,内溶素LysKB317,它在玉米醪发酵中抑制菌株。在这里,使用EBY100通过与α-凝集素蛋白Aga1p-Aga2p的细胞表面展示来锚定重组LysKB317。免疫染色和共聚焦荧光用于细胞外界面的定位。与对照酵母中9.5%的减少相比,酵母表面表达的内溶素使细菌细胞计数减少了83.8%。用于小规模玉米醪发酵的表达LysKB317的重组体在感染时,可以主动控制细菌感染72小时,细菌数量至少减少1个对数级。发酵产物分析表明,与仅感染对照相比,乙醇浓度从3.4%提高到至少5.9%,乳酸和乙酸水平分别从34.7 mM降至13.8 mM和从25.5 mM降至18.1 mM。在优化的酵母表面展示系统中,内溶素LysKB317对细菌污染物的主动处理可以在存在污染的情况下提高发酵效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a131/10117863/1615b9134e96/fbioe-11-1162720-g001.jpg

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