Cancer Institute, Xuzhou Medical University, Xuzhou, Jiangsu, P.R. China.
Center of Clinical Oncology, Affiliated Hospital of Xuzhou Medical University, Xuzhou Medical University, Xuzhou, Jiangsu, P.R. China.
Microbiologyopen. 2020 Jul;9(7):e1043. doi: 10.1002/mbo3.1043. Epub 2020 May 11.
An efficient electrotransformation system that includes electrocompetent cells is a critical component for the success of large-scale gene transduction and replication. The conditions of TG1 competent cell preparation and optimal electrotransformation were evaluated by investigating different parameters. Certain parameters for preparation of TG1 competent cells (≥8 × 10 colony forming units (cfu)/μg DNA) include optimum culture time of monoclonal bacteria (8-10 hr), amplification growth concentration (approximately OD = 0.45), and culture volume (400 ml in 2 L conical flask). With increased storage of competent cells at -80°C, electrotransformation efficiency gradually decreased, but it remains greater than ≥ 10 cfu/μg DNA 3 months later. Moreover, the recovery time of electrotransformation also influenced electrotransformation efficiency (1.5-2 hr for optimization). The optimized transformation efficiency of TG1 (≥8 × 10 cfu/μg DNA) was observed under suitable electric voltage (2.5 kV), electric intensity (15 kV/cm), and electric time (3.5 ms) of electricity for plasmid transformation. Optimized DNA amount (0.01-100 ng) dissolved in water led to the high efficiency of plasmid transformation (≥8 × 10 cfu/μg DNA), but had low efficiency when dissolved in T4 ligation buffer (≤3 × 10 cfu/μg DNA). These results indicated that an optimized TG1 transformation system is useful for high electrotransformation efficiency under general laboratory conditions. The optimized TG1 transformation system might facilitate large-scale gene transduction for phage display library construction.
一个高效的电转化系统,包括电转化感受态细胞,是大规模基因转导和复制成功的关键组成部分。通过研究不同的参数,评估了 TG1 感受态细胞制备的条件和最佳电转化条件。制备 TG1 感受态细胞的某些参数(≥8×10 个菌落形成单位(cfu)/μg DNA)包括单克隆细菌的最佳培养时间(8-10 小时)、扩增生长浓度(约 OD = 0.45)和培养体积(2L 锥形瓶中 400ml)。随着感受态细胞在-80°C下的储存时间增加,电转化效率逐渐降低,但在 3 个月后仍大于≥10 cfu/μg DNA。此外,电转化的恢复时间也会影响电转化效率(优化时为 1.5-2 小时)。在合适的电电压(2.5kV)、电强度(15kV/cm)和电时间(3.5ms)下,观察到 TG1 的优化转化效率(≥8×10 cfu/μg DNA)适用于质粒转化。优化的溶解在水中的 DNA 量(0.01-100ng)导致质粒转化的高效率(≥8×10 cfu/μg DNA),但溶解在 T4 连接缓冲液中时效率较低(≤3×10 cfu/μg DNA)。这些结果表明,在一般实验室条件下,优化的 TG1 转化系统可用于高效电转化。优化的 TG1 转化系统可能有助于噬菌体展示文库构建的大规模基因转导。