Xue G P, Johnson J S, Smyth D J, Dierens L M, Wang X, Simpson G D, Gobius K S, Aylward J H
CSIRO Division of Tropical Crops and Pastures, St. Lucia, Qld, Australia.
Appl Microbiol Biotechnol. 1996 Mar;45(1-2):120-6. doi: 10.1007/s002530050658.
Temperature-regulated expression of recombinant proteins in the tac promoter (Ptac) system was investigated. Expression levels of fungal xylanase and cellulase from N. patriciarum in E. coli strains containing the natural lacI gene under the control of the Ptac markedly increased with increasing cultivation temperature in the absence of a chemical inducer. The specific activities (units per milligram protein of crude enzyme) of the fungal xylanase and cellulase produced from recombinant E. coli strain pop2136 grown at 42 degrees C were about 4.5 times higher than those of the cells grown at 23 degrees C and were even slightly higher when compared with cells grown in the presence of the inducer isopropyl beta-D-thiogalactopyranoside. The xylanase expression level in the temperature-regulated Ptac system was about 35% of total cellular protein. However, this system can not be applied to E. coli strains containing lacIq, which confers over production of the lac repressor, for high-level expression of recombinant proteins. In comparison with the lambda PL system, the Ptac-based xylanase plasmid in E. coli pop2136 gave a considerably higher specific activity of the xylanase than did the best lambda PL-based construct using the same thermal induction procedure. The high-level expression of the xylanase using the temperature-regulated Ptac system was also obtained in 10-litre fermentation studies using a fed-batch process. These results unambiguously demonstrated that the temperature-modulated Ptac system can be used for overproduction of some non-toxic recombinant proteins.
研究了tac启动子(Ptac)系统中重组蛋白的温度调节表达。在Ptac控制下含有天然lacI基因的大肠杆菌菌株中,来自N. patriciarum的真菌木聚糖酶和纤维素酶的表达水平在没有化学诱导剂的情况下随着培养温度的升高而显著增加。在42℃下生长的重组大肠杆菌菌株pop2136产生的真菌木聚糖酶和纤维素酶的比活性(每毫克粗酶蛋白的单位数)比在23℃下生长的细胞高约4.5倍,与在诱导剂异丙基β-D-硫代半乳糖苷存在下生长的细胞相比甚至略高。温度调节的Ptac系统中木聚糖酶的表达水平约占总细胞蛋白的35%。然而,该系统不能应用于含有lacIq的大肠杆菌菌株,因为lacIq会导致lac阻遏物的过量产生,不利于重组蛋白的高水平表达。与λPL系统相比,在大肠杆菌pop2136中基于Ptac的木聚糖酶质粒比使用相同热诱导程序的最佳基于λPL的构建体产生的木聚糖酶比活性高得多。在使用补料分批工艺的10升发酵研究中也获得了使用温度调节的Ptac系统的木聚糖酶的高水平表达。这些结果明确表明,温度调节的Ptac系统可用于过量生产一些无毒重组蛋白。