Biosensor-based growth-coupling as an evolutionary strategy to improve heme export in Corynebacterium glutamicum.

IF 4.3 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Cell Factories Pub Date : 2024-10-14 DOI:10.1186/s12934-024-02556-1
Aileen Krüger, Janik Göddecke, Michael Osthege, Luis Navratil, Ulrike Weber, Marco Oldiges, Julia Frunzke
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Abstract

The iron-containing porphyrin heme is of high interest for the food industry for the production of artificial meat as well as for medical applications. Recently, the biotechnological platform strain Corynebacterium glutamicum has emerged as a promising host for animal-free heme production. Beyond engineering of complex heme biosynthetic pathways, improving heme export offers significant yet untapped potential for enhancing production strains. In this study, a growth-coupled biosensor was designed to impose a selection pressure on the increased expression of the hrtBA operon encoding an ABC-type heme exporter in C. glutamicum. For this purpose, the promoter region of the growth-regulating genes pfkA (phosphofructokinase) and aceE (pyruvate dehydrogenase) was replaced with that of PhrtB, creating biosensor strains with a selection pressure for hrtBA activation. Resulting sensor strains were used for plate-based selections and for a repetitive batch f(luorescent)ALE using a fully automated laboratory platform. Genome sequencing of isolated clones featuring increased hrtBA expression revealed three distinct mutational hotspots: (i) chrS, (ii) chrA, and (iii) cydD. Mutations in the genes of the ChrSA two-component system, which regulates hrtBA in response to heme levels, were identified as a promising target to enhance export activity. Furthermore, causal mutations within cydD, encoding an ABC-transporter essential for cytochrome bd oxidase assembly, were confirmed by the construction of a deletion mutant. Reversely engineered strains showed strongly increased hrtBA expression as well as increased cellular heme levels. These results further support the proposed role of CydDC as a heme transporter in bacteria. Mutations identified in this study therefore underline the potential of biosensor-based growth coupling and provide promising engineering targets to improve microbial heme production.

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基于生物传感器的生长耦合是改善谷氨酸棒杆菌血红素输出的进化策略。
含铁的卟啉血红素在食品工业中的人造肉生产和医疗应用方面具有很高的价值。最近,生物技术平台菌株谷氨酸棒杆菌(Corynebacterium glutamicum)已成为无动物血红素生产的理想宿主。除了复杂的血红素生物合成途径工程外,改善血红素输出也为增强生产菌株提供了巨大的潜力,但这些潜力尚未得到开发。本研究设计了一种生长耦合生物传感器,以对谷氨酸菌中编码 ABC 型血红素输出器的 hrtBA 操作子的表达增加施加选择压力。为此,生长调节基因 pfkA(磷酸果糖激酶)和 aceE(丙酮酸脱氢酶)的启动子区域被 PhrtB 的启动子区域所取代,从而产生了具有 hrtBA 激活选择压力的生物传感器菌株。获得的传感器菌株被用于基于平板的选择,并利用全自动实验室平台进行了重复性批量荧光ALE试验。对具有 hrtBA 表达增加特征的分离克隆进行基因组测序,发现了三个不同的突变热点:(i) chrS、(ii) chrA 和 (iii) cydD。ChrSA 双组分系统的基因突变被认为是提高输出活性的一个有希望的目标,该系统根据血红素水平调节 hrtBA。此外,通过构建缺失突变体,确认了编码细胞色素 bd 氧化酶组装所必需的 ABC 转运体的 cydD 基因的因果突变。反向工程菌株显示出 hrtBA 表达的强烈增加以及细胞血红素水平的增加。这些结果进一步支持了所提出的 CydDC 在细菌中作为血红素转运体的作用。因此,本研究中发现的突变强调了基于生物传感器的生长耦合的潜力,并为改善微生物血红素生产提供了有希望的工程目标。
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来源期刊
Microbial Cell Factories
Microbial Cell Factories 工程技术-生物工程与应用微生物
CiteScore
9.30
自引率
4.70%
发文量
235
审稿时长
2.3 months
期刊介绍: Microbial Cell Factories is an open access peer-reviewed journal that covers any topic related to the development, use and investigation of microbial cells as producers of recombinant proteins and natural products, or as catalyzers of biological transformations of industrial interest. Microbial Cell Factories is the world leading, primary research journal fully focusing on Applied Microbiology. The journal is divided into the following editorial sections: -Metabolic engineering -Synthetic biology -Whole-cell biocatalysis -Microbial regulations -Recombinant protein production/bioprocessing -Production of natural compounds -Systems biology of cell factories -Microbial production processes -Cell-free systems
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