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稳定枯草芽孢杆菌细胞表面展示的蛋白质。

Stabilizing displayed proteins on vegetative Bacillus subtilis cells.

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, 611 Charles Young Drive East, Los Angeles, CA, 90095, USA.

UCLA-DOE Institute of Genomics and Proteomics, University of California, Los Angeles, 611 Charles Young Drive East, Los Angeles, CA, 90095, USA.

出版信息

Appl Microbiol Biotechnol. 2018 Aug;102(15):6547-6565. doi: 10.1007/s00253-018-9062-x. Epub 2018 May 23.

DOI:10.1007/s00253-018-9062-x
PMID:29796970
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6289300/
Abstract

Microbes engineered to display heterologous proteins could be useful biotechnological tools for protein engineering, lignocellulose degradation, biocatalysis, bioremediation, and biosensing. Bacillus subtilis is a promising host to display proteins, as this model Gram-positive bacterium is genetically tractable and already used industrially to produce enzymes. To gain insight into the factors that affect displayed protein stability and copy number, we systematically compared the ability of different protease-deficient B. subtilis strains (WB800, BRB07, BRB08, and BRB14) to display a Cel8A-LysM reporter protein in which the Clostridium thermocellum Cel8A endoglucanase is fused to LysM cell wall binding modules. Whole-cell cellulase measurements and fractionation experiments demonstrate that genetically eliminating extracytoplasmic bacterial proteases improves Cel8A-LysM display levels. However, upon entering stationary phase, for all protease-deficient strains, the amount of displayed reporter dramatically decreases, presumably as a result of cellular autolysis. This problem can be partially overcome by adding chemical protease inhibitors, which significantly increase protein display levels. We conclude that strain BRB08 is well suited for stably displaying our reporter protein, as genetic removal of its extracellular and cell wall-associated proteases leads to the highest levels of surface-accumulated Cel8A-LysM without causing secretion stress or impairing growth. A two-step procedure is presented that enables the construction of enzyme-coated vegetative B. subtilis cells that retain stable cell-associated enzyme activity for nearly 3 days. The results of this work could aid the development of whole-cell display systems that have useful biotechnological applications.

摘要

经工程改造后可展示异源蛋白的微生物可作为蛋白质工程、木质纤维素降解、生物催化、生物修复和生物传感等领域的生物技术工具。枯草芽孢杆菌是展示蛋白质的一种很有前途的宿主,因为这种模式革兰氏阳性菌具有遗传可操作性,并且已经在工业上用于生产酶。为了深入了解影响展示蛋白稳定性和拷贝数的因素,我们系统地比较了不同的蛋白酶缺陷型枯草芽孢杆菌(WB800、BRB07、BRB08 和 BRB14)展示 Cel8A-LysM 报告蛋白的能力,其中,热纤梭菌 Cel8A 内切葡聚糖酶与 LysM 细胞壁结合模块融合。全细胞纤维素酶测量和分级实验表明,遗传去除细胞外细菌蛋白酶可提高 Cel8A-LysM 的展示水平。然而,进入静止期后,对于所有的蛋白酶缺陷型菌株,展示的报告蛋白数量都会急剧减少,这可能是由于细胞自溶所致。通过添加化学蛋白酶抑制剂可以部分克服这个问题,这显著增加了蛋白的展示水平。我们得出结论,BRB08 菌株非常适合稳定展示我们的报告蛋白,因为其细胞外和细胞壁相关蛋白酶的遗传缺失导致表面积累的 Cel8A-LysM 水平最高,而不会导致分泌压力或损害生长。我们提出了一种两步法,可构建酶包被的营养型枯草芽孢杆菌细胞,使其在近 3 天内保持稳定的细胞相关酶活性。这项工作的结果可以为具有有用生物技术应用的全细胞展示系统的开发提供帮助。

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Disruption of Autolysis in Bacillus subtilis using TiO Nanoparticles.利用 TiO 纳米颗粒破坏枯草芽孢杆菌的自溶作用。
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