Department of Biochemistry and Biophysics, Stockholm University, Stockholm SE106 91, Sweden.
The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, Kongens Lyngby 2800, Denmark.
ACS Synth Biol. 2022 Jan 21;11(1):241-253. doi: 10.1021/acssynbio.1c00393. Epub 2022 Jan 4.
Antibiotic resistance cassettes are indispensable tools in recombinant DNA technology, synthetic biology, and metabolic engineering. The genetic cassette encoding the TEM-1 β-lactamase (denoted Tn3.1) is one of the most commonly used and can be found in more than 120 commercially available bacterial expression plasmids (, the , , , , , , and series). A widely acknowledged problem with the cassette is that it produces excessively high titers of β-lactamase that rapidly degrade β-lactam antibiotics in the culture media, leading to loss of selective pressure, and eventually a large percentage of cells that do not have a plasmid. To address these shortcomings, we have engineered a next-generation version that expresses minimal levels of β-lactamase (denoted Tn3.1). We have also engineered a version that is compatible with the Standard European Vector Architecture (SEVA) (denoted Ap (pSEVA#1--)). Expression plasmids containing either Tn3.1 or Ap (pSEVA#1--) can be selected using a 5-fold lower concentration of β-lactam antibiotics and benefit from the increased half-life of the β-lactam antibiotics in the culture medium (3- to 10-fold). Moreover, more cells in the culture retain the plasmid. In summary, we present two antibiotic-efficient genetic cassettes encoding the TEM-1 β-lactamase that reduce antibiotic consumption (an integral part of antibiotic stewardship), reduce production costs, and improve plasmid performance in bacterial cell factories.
抗生素抗性盒是重组 DNA 技术、合成生物学和代谢工程中不可或缺的工具。编码 TEM-1 β-内酰胺酶的基因盒(表示为 Tn3.1)是最常用的基因盒之一,可在 120 多种市售细菌表达质粒中找到(、、、、、、和系列)。该盒的一个广泛认可的问题是,它产生过高的β-内酰胺酶滴度,迅速降解培养基中的β-内酰胺抗生素,导致选择压力丧失,最终导致大部分细胞没有质粒。为了解决这些缺点,我们设计了一种表达最低水平β-内酰胺酶的下一代版本(表示为 Tn3.1)。我们还设计了一种与标准欧洲载体架构(SEVA)兼容的版本(表示为 Ap(pSEVA#1--))。含有 Tn3.1 或 Ap(pSEVA#1--)的表达质粒可以使用低 5 倍浓度的β-内酰胺抗生素进行选择,并受益于培养基中β-内酰胺抗生素半衰期的延长(3-10 倍)。此外,培养物中的更多细胞保留质粒。总之,我们提出了两种编码 TEM-1 β-内酰胺酶的抗生素高效遗传盒,这些遗传盒可降低抗生素消耗(抗生素管理的一个组成部分)、降低生产成本,并提高细菌细胞工厂中质粒的性能。