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罗尔斯通氏菌启动子的核心元件特征分析及具有不同活性水平的启动子-RBS 小型文库的开发,以实现高效基因表达。

Core element characterization of Rhodococcus promoters and development of a promoter-RBS mini-pool with different activity levels for efficient gene expression.

机构信息

Department of Chemical Engineering, Tsinghua University, Beijing 100084, China; Key Laboratory of Industrial Biocatalysis (Tsinghua University), the Ministry of Education, Beijing 100084, China.

Department of Chemical Engineering, Tsinghua University, Beijing 100084, China; Key Laboratory of Industrial Biocatalysis (Tsinghua University), the Ministry of Education, Beijing 100084, China; Center for Synthetic and Systems Biology, Tsinghua University, Beijing 100084, China.

出版信息

N Biotechnol. 2018 Sep 25;44:41-49. doi: 10.1016/j.nbt.2018.04.005. Epub 2018 Apr 22.

Abstract

To satisfy the urgent demand for promoter engineering that can accurately regulate the metabolic circuits and expression of specific genes in the Rhodococcus microbial platform, a promoter-ribosome binding site (RBS) coupled mini-pool with fine-tuning of different activity levels was successfully established. Transcriptome analyses of R. ruber TH revealed several representative promoters with different activity levels, e.g., Pami, Pcs, Pnh, P50sl36, PcbiM, PgroE and Pniami. β-Galactosidase (LacZ) reporter measurement demonstrated that different gene expression levels could be obtained with these natural promoters combined with an optimal RBS of ami. Further use of these promoters to overexpress the nitrile hydratase (NHase) gene with RBSami in R. ruber THdAdN produced different expression levels consistent with the transcription analyses. The -35 and -10 core elements of different promoters were further analyzed, and the conserved sequences were revealed to be TTGNNN and (T/C)GNNA(A/C)AAT. By mutating the core elements of the strong promoters, Pnh and Pami, into the above consensus sequence, two even stronger promoters, PnhM and PamiM, were obtained with 2.2-fold and 7.7-fold improvements in transcription, respectively. Integrating several strategies, including transcriptome promoter screening, -35 and -10 core element identification, core element point-mutation, RBS optimization and diverse reporter verification, a fine-tuning promoter-RBS combination mini-pool with different activity levels in Rhodococcus strains was successfully established. This development is significant for broad applications of the Rhodococcus genus as a microbial platform.

摘要

为满足在红球菌微生物平台中精确调控代谢途径和特定基因表达的启动子工程的迫切需求,成功建立了一个具有精细调控不同活性水平的启动子-核糖体结合位点(RBS)偶联小型文库。红平红球菌(R. ruber)TH 的转录组分析揭示了几种具有不同活性水平的代表性启动子,如 Pami、Pcs、Pnh、P50sl36、PcbiM、PgroE 和 Pniami。β-半乳糖苷酶(LacZ)报告基因测量表明,使用这些天然启动子与 ami 最佳 RBS 结合,可以获得不同的基因表达水平。进一步将这些启动子与 RBSami 一起用于在红平红球菌 THdAdN 中过表达腈水合酶(NHase)基因,产生的表达水平与转录分析一致。进一步分析了不同启动子的-35 和-10 核心元件,揭示了保守序列为 TTGNNN 和(T/C)GNNA(A/C)AAT。通过将强启动子 Pnh 和 Pami 的核心元件突变为上述共识序列,得到了两个甚至更强的启动子 PnhM 和 PamiM,转录分别提高了 2.2 倍和 7.7 倍。整合了几种策略,包括转录组启动子筛选、-35 和-10 核心元件鉴定、核心元件点突变、RBS 优化和多种报告基因验证,成功建立了一个在红球菌菌株中具有不同活性水平的精细调控启动子-RBS 组合小型文库。这一发展对于广泛应用红球菌属作为微生物平台具有重要意义。

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