首页> 外文期刊>Biotechnology for Biofuels >Hybrid phenolic-inducible promoters towards construction of self-inducible systems for microbial lignin valorization
【24h】

Hybrid phenolic-inducible promoters towards construction of self-inducible systems for microbial lignin valorization

机译:杂交酚诱导性启动子,以构建微生物木质素增值的自诱导系统

获取原文
       

摘要

Abstract BackgroundEngineering strategies to create promoters that are both higher strength and tunable in the presence of inexpensive compounds are of high importance to develop metabolic engineering technologies that can be commercialized. Lignocellulosic biomass stands out as the most abundant renewable feedstock for the production of biofuels and chemicals. However, lignin a major polymeric component of the biomass is made up of aromatic units and remains as an untapped resource. Novel synthetic biology tools for the expression of heterologous proteins are critical for the effective engineering of a microbe to valorize lignin. This study demonstrates the first successful attempt in the creation of engineered promoters that can be induced by aromatics present in lignocellulosic hydrolysates to increase heterologous protein production.ResultsA hybrid promoter engineering approach was utilized for the construction of phenolic-inducible promoters of higher strength. The hybrid promoters were constructed by replacing the spacer region of an endogenous promoter, P emrR present in E. coli that was naturally inducible by phenolics. In the presence of vanillin, the engineered promoters P vtac, P vtrc, and P vtic increased protein expression by 4.6-, 3.0-, and 1.5-fold, respectively, in comparison with a native promoter, P emrR. In the presence of vanillic acid, P vtac, P vtrc, and P vtic improved protein expression by 9.5-, 6.8-, and 2.1-fold, respectively, in comparison with P emrR. Among the cells induced with vanillin, the emergence of a sub-population constituting the healthy and dividing cells using flow cytometry was observed. The analysis also revealed this smaller sub-population to be the primary contributor for the increased expression that was observed with the engineered promoters.ConclusionsThis study demonstrates the first successful attempt in the creation of engineered promoters that can be induced by aromatics to increase heterologous protein production. Employing promoters inducible by phenolics will provide the following advantages: (1) develop substrate inducible systems; (2) lower operating costs by replacing expensive IPTG currently used for induction; (3) develop dynamic regulatory systems; and (4) provide flexibility in operating conditions. The flow cytometry findings strongly suggest the need for novel approaches to maintain a healthy cell population in the presence of phenolics to achieve increased heterologous protein expression and, thereby, valorize lignin efficiently.
机译:背景技术在廉价化合物的存在下产生强度更高且可调节的启动子的工程策略对开发可商业化的代谢工程技术至关重要。木质纤维素生物质是生产生物燃料和化学品的最丰富的可再生原料。然而,木质素是生物质的主要聚合物组分,由木质素单元组成,仍作为未开发资源使用。用于表达异源蛋白的新型合成生物学工具对于有效改造微生物以木质素的价值至关重要。这项研究证明了成功创建工程启动子的首次成功尝试,该启动子可以被木质纤维素水解产物中存在的芳烃诱导以增加异源蛋白质的产量。结果采用杂交启动子工程设计方法来构建高强度酚诱导型启动子。通过替换存在于大肠杆菌中的内源性启动子P emrR的间隔区来构建杂合启动子,该内源性启动子可由酚类天然诱导。与天然启动子P emrR相比,在香草醛存在下,工程启动子P vtac,P vtrc和P vtic分别使蛋白质表达提高了4.6、3.0和1.5倍。与P emrR相比,在存在香草酸的情况下,P vtac,P vtrc和P vtic分别将蛋白质表达提高了9.5倍,6.8倍和2.1倍。在使用香兰素诱导的细胞中,使用流式细胞仪观察到了组成健康细胞和分裂细胞的亚群的出现。分析还揭示了较小的亚群是工程启动子观察到的表达增加的主要贡献者。结论本研究证明了成功创建工程启动子的首次成功尝试,工程启动子可以被芳香族化合物诱导以增加异源蛋白质的产生。 。利用可被酚类诱导的启动子将具有以下优点:(1)开发底物诱导系统; (2)通过替换当前用于感应的昂贵IPTG来降低运营成本; (三)建立动态监管体系; (4)提供操作条件的灵活性。流式细胞仪的发现强烈表明需要新的方法来在酚类化合物存在下维持健康的细胞群,以实现增加的异源蛋白表达,从而有效地使木质素增值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号