The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, China.
The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, China.
Protein Expr Purif. 2024 Nov;223:106558. doi: 10.1016/j.pep.2024.106558. Epub 2024 Jul 27.
In this study, the cellobiose 2-epimerase gene csce from Caldicellulosiruptor saccharolyticus was expressed in Escherichia coli using TB medium containing yeast extract Oxoid and tryptone Oxoid. Interesting, it was found that when the concentration of isopropyl-beta-d-thiogalactopyranoside (IPTG) and lactose was 0 (no addition), the activity of cellobiose 2-epimerase reached 5.88 U/mL. It was 3.70-fold higher than the activity observed when 1.0 mM IPTG was added. When using M9 medium without yeast extract Oxoid and tryptone Oxoid, cellobiose 2-epimerase gene could not be expressed without IPTG and lactose. However, cellobiose 2-epimerase gene could be expressed when yeast extract Oxoid or tryptone Oxoid was added, indicating that these supplements contained inducers for gene expression. In the absence of IPTG and lactose, the addition of soy peptone Angel-1 or yeast extract Angel-1 to M9 medium significantly upregulated the expression of cellobiose 2-epimerase gene in E. coli BL21 pET28a-csce, and these inductions led to higher expression levels compared to tryptone Oxoid or yeast extract Oxoid. The relative transcription level of csce was consistent with its expression level in E. coli BL21 pET28a-csce. In the medium TB without IPTG and lactose and containing yeast extract Angel-1 and soy peptone Angel-1, the activity of cellobiose 2-epimerase reached 6.88 U/mL, representing a 2.2-fold increase compared to previously reported maximum activity in E. coli. The significance of this study lies in its implications for efficient heterologous expression of recombinant enzyme proteins in E. coli without the need for IPTG and lactose addition.
在这项研究中,使用含有酵母提取物 Oxoid 和胰蛋白胨 Oxoid 的 TB 培养基在大肠杆菌中表达了来自嗜热纤维梭菌的纤维二糖 2-差向异构酶基因 csce。有趣的是,当异丙基-β-D-硫代半乳糖吡喃糖苷(IPTG)和乳糖的浓度为 0(不添加)时,纤维二糖 2-差向异构酶的活性达到 5.88 U/mL。这比添加 1.0 mM IPTG 时观察到的活性高 3.70 倍。当使用不含酵母提取物 Oxoid 和胰蛋白胨 Oxoid 的 M9 培养基时,没有 IPTG 和乳糖,细胞二糖 2-差向异构酶基因无法表达。然而,当添加酵母提取物 Oxoid 或胰蛋白胨 Oxoid 时,细胞二糖 2-差向异构酶基因可以表达,表明这些补充物包含基因表达的诱导剂。在没有 IPTG 和乳糖的情况下,向 M9 培养基中添加大豆蛋白胨 Angel-1 或酵母提取物 Angel-1 可显著上调大肠杆菌 BL21 pET28a-csce 中细胞二糖 2-差向异构酶基因的表达,与添加胰蛋白胨 Oxoid 或酵母提取物 Oxoid 相比,这些诱导导致更高的表达水平。csce 的相对转录水平与其在大肠杆菌 BL21 pET28a-csce 中的表达水平一致。在不含 IPTG 和乳糖且含有酵母提取物 Angel-1 和大豆蛋白胨 Angel-1 的 TB 培养基中,纤维二糖 2-差向异构酶的活性达到 6.88 U/mL,与之前报道的大肠杆菌中最大活性相比提高了 2.2 倍。这项研究的意义在于,它为在大肠杆菌中高效异源表达重组酶蛋白提供了启示,而无需添加 IPTG 和乳糖。