Klessen C, Schmidt K H, Gumpert J, Grosse H H, Malke H
Central Institute of Microbiology and Experimental Therapy, Academy of Sciences of the German Democratic Republic, Jena.
Appl Environ Microbiol. 1989 Apr;55(4):1009-15. doi: 10.1128/aem.55.4.1009-1015.1989.
To circumvent problems encountered in the synthesis of active chymosin in a number of bacteria and fungi, a recombinant DNA L-form expression system that directed the complete secretion of fully activable prochymosin into the extracellular culture medium was developed. The expression plasmid constructions involved the in-frame fusion of prochymosin cDNA minus codons 1 to 4 to streptococcal pyrogenic exotoxin type A gene (speA') sequences, including the speA promoter, ribosomal binding site, and signal sequence and five codons of mature SpeA. Secretion of fusion prochymosin enzymatically and immunologically indistinguishable from bovine prochymosin was achieved after transformation of two stable protoplast type L-form strains derived from Proteus mirabilis. The secreted proenzyme was converted by autocatalytic processing to chymosin showing milk-clotting activity. In controlled laboratory fermentation processes, a maximum specific rate of activable prochymosin synthesis of 0.57 x 10(-3)/h was determined from the time courses of biomass dry weight and product formation. Yields as high as 40 +/- 10 micrograms/ml were obtained in the cell-free culture fluid of strain L99 carrying a naturally altered expression plasmid of increased segregational stability. The expression-secretion system described may be generally useful for production of recombinant mammalian proteins synthesized intracellularly as aberrantly folded insoluble aggregates.
为了规避在多种细菌和真菌中合成活性凝乳酶时遇到的问题,开发了一种重组DNA L型表达系统,该系统可将完全可激活的凝乳酶原完全分泌到细胞外培养基中。表达质粒构建涉及将去除第1至4个密码子的凝乳酶原cDNA与A群链球菌致热外毒素基因(speA')序列进行读框融合,包括speA启动子、核糖体结合位点、信号序列以及成熟SpeA的五个密码子。在用奇异变形杆菌衍生的两种稳定的原生质体L型菌株进行转化后,实现了与牛凝乳酶在酶学和免疫学上无法区分的融合凝乳酶原的分泌。分泌的酶原通过自催化加工转化为具有凝乳活性的凝乳酶。在受控的实验室发酵过程中,根据生物量干重和产物形成的时间进程,确定可激活凝乳酶原合成的最大比速率为0.57×10⁻³/h。在携带具有更高分离稳定性的天然改变表达质粒的L99菌株的无细胞培养液中,产量高达40±10微克/毫升。所述的表达-分泌系统通常可用于生产作为异常折叠的不溶性聚集体在细胞内合成的重组哺乳动物蛋白。