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非传统酵母和细菌中穿梭表达载体的广谱表达启动子筛选。

Screening of broad-host expression promoters for shuttle expression vectors in non-conventional yeasts and bacteria.

机构信息

State Key Laboratory of Microbial Metabolism, and School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Microb Cell Fact. 2024 Aug 16;23(1):230. doi: 10.1186/s12934-024-02506-x.

Abstract

BACKGROUND

Non-conventional yeasts and bacteria gain significance in synthetic biology for their unique metabolic capabilities in converting low-cost renewable feedstocks into valuable products. Improving metabolic pathways and increasing bioproduct yields remain dependent on the strategically use of various promoters in these microbes. The development of broad-spectrum promoter libraries with varying strengths for different hosts is attractive for biosynthetic engineers.

RESULTS

In this study, five Yarrowia lipolytica constitutive promoters (yl.hp4d, yl.FBA1in, yl.TEF1, yl.TDH1, yl.EXP1) and five Kluyveromyces marxianus constitutive promoters (km.PDC1, km.FBA1, km.TEF1, km.TDH3, km.ENO1) were selected to construct promoter-reporter vectors, utilizing α-amylase and red fluorescent protein (RFP) as reporter genes. The promoters' strengths were systematically characterized across Y. lipolytica, K. marxianus, Pichia pastoris, Escherichia coli, and Corynebacterium glutamicum. We discovered that five K. marxianus promoters can all express genes in Y. lipolytica and that five Y. lipolytica promoters can all express genes in K. marxianus with variable expression strengths. Significantly, the yl.TEF1 and km.TEF1 yeast promoters exhibited their adaptability in P. pastoris, E. coli, and C. glutamicum. In yeast P. pastoris, the yl.TEF1 promoter exhibited substantial expression of both amylase and RFP. In bacteria E. coli and C. glutamicum, the eukaryotic km.TEF1 promoter demonstrated robust expression of RFP. Significantly, in E. coli, The RFP expression strength of the km.TEF1 promoter reached ∼20% of the T7 promoter.

CONCLUSION

Non-conventional yeast promoters with diverse and cross-domain applicability have great potential for developing innovative and dynamic regulated systems that can effectively manage carbon flux and enhance target bioproduct synthesis across diverse microbial hosts.

摘要

背景

非传统酵母和细菌因其在将低成本可再生原料转化为有价值产品方面的独特代谢能力,在合成生物学中具有重要意义。改进代谢途径和提高生物制品产量仍然依赖于这些微生物中各种启动子的策略性使用。为不同宿主开发具有不同强度的广谱启动子文库,对生物合成工程师来说具有吸引力。

结果

在这项研究中,选择了五种脂肪假丝酵母组成型启动子(yl.hp4d、yl.FBA1in、yl.TEF1、yl.TDH1、yl.EXP1)和五种马克斯克鲁维酵母组成型启动子(km.PDC1、km.FBA1、km.TEF1、km.TDH3、km.ENO1)来构建启动子-报告基因载体,利用α-淀粉酶和红色荧光蛋白(RFP)作为报告基因。系统地研究了这 10 种启动子在脂肪假丝酵母、马克斯克鲁维酵母、巴斯德毕赤酵母、大肠杆菌和谷氨酸棒杆菌中的强度。我们发现,五种马克斯克鲁维酵母启动子都可以在脂肪假丝酵母中表达基因,五种脂肪假丝酵母启动子都可以在马克斯克鲁维酵母中表达基因,只是表达强度不同。重要的是,yl.TEF1 和 km.TEF1 酵母启动子在巴斯德毕赤酵母、大肠杆菌和谷氨酸棒杆菌中表现出适应性。在酵母巴斯德毕赤酵母中,yl.TEF1 启动子对淀粉酶和 RFP 的表达都很显著。在细菌大肠杆菌和谷氨酸棒杆菌中,真核 km.TEF1 启动子对 RFP 的表达很强。重要的是,在大肠杆菌中,km.TEF1 启动子的 RFP 表达强度达到 T7 启动子的约 20%。

结论

具有多种跨域适用性的非传统酵母启动子,对于开发创新和动态调控系统具有很大的潜力,可以有效地管理碳通量,提高不同微生物宿主中目标生物制品的合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7813/11330142/be3c71e3c1b5/12934_2024_2506_Fig1_HTML.jpg

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