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通过实施铁响应性原儿茶酸生物合成来改善谷氨酸棒杆菌的生长特性。

Improving growth properties of Corynebacterium glutamicum by implementing an iron-responsive protocatechuate biosynthesis.

机构信息

Microbial Biotechnology, Campus Straubing for Biotechnology and Sustainability, Technical University of Munich, Straubing, Germany.

SynBiofoundry@TUM, Technical University of Munich, Straubing, Germany.

出版信息

Microb Biotechnol. 2023 May;16(5):1041-1053. doi: 10.1111/1751-7915.14244. Epub 2023 Mar 11.

Abstract

Corynebacterium glutamicum experiences a transient iron limitation during growth in minimal medium, which can be compensated by the external supplementation of protocatechuic acid (PCA). Although C. glutamicum is genetically equipped to form PCA from the intermediate 3-dehydroshikimate catalysed by 3-dehydroshikimate dehydratase (encoded by qsuB), PCA synthesis is not part of the native iron-responsive regulon. To obtain a strain with improved iron availability even in the absence of the expensive supplement PCA, we re-wired the transcriptional regulation of the qsuB gene and modified PCA biosynthesis and degradation. Therefore, we ushered qsuB expression into the iron-responsive DtxR regulon by replacing the native promoter of the qsuB gene by the promoter P and introduced a second copy of the P -qsuB cassette into the genome of C. glutamicum. Reduction of the degradation was achieved by mitigating expression of the pcaG and pcaH genes through a start codon exchange. The final strain C. glutamicum IRON+ showed in the absence of PCA a significantly increased intracellular Fe availability, exhibited improved growth properties on glucose and acetate, retained a wild type-like biomass yield but did not accumulate PCA in the supernatant. For the cultivation in minimal medium C. glutamicum IRON+ represents a useful platform strain that reveals beneficial growth properties on different carbon sources without affecting the biomass yield and overcomes the need of PCA supplementation.

摘要

谷氨酸棒杆菌在最小培养基中生长时会经历短暂的铁限制,可通过外部补充原儿茶酸(PCA)来补偿。尽管谷氨酸棒杆菌在基因上配备了从 3-脱氢莽草酸中间物通过 3-脱氢莽草酸脱水酶(由 qsuB 编码)催化形成 PCA 的能力,但 PCA 合成不是天然铁反应调节子的一部分。为了即使在没有昂贵的补充 PCA 的情况下获得具有改善的铁可用性的菌株,我们重新布线了 qsuB 基因的转录调控,并修饰了 PCA 的生物合成和降解。因此,我们通过用 P 启动子取代 qsuB 基因的天然启动子,将 qsuB 表达引入到 DtxR 铁反应调节子中,并在谷氨酸棒杆菌的基因组中引入了第二个 P -qsuB 盒的副本。通过启动子交换来减轻 pcaG 和 pcaH 基因的表达,从而降低降解。最终的菌株谷氨酸棒杆菌 IRON+在没有 PCA 的情况下表现出细胞内铁可用性显著增加,在葡萄糖和醋酸盐上表现出改善的生长特性,保留了类似于野生型的生物量产量,但在上清液中不积累 PCA。对于最小培养基的培养,谷氨酸棒杆菌 IRON+代表了一种有用的平台菌株,它在不同碳源上表现出有益的生长特性,而不影响生物量产量,并克服了对 PCA 补充的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6919/10128138/766d2b6650ee/MBT2-16-1041-g006.jpg

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