Belder J B, Nguyen-Distèche M, Houba-Herin N, Ghuysen J M, Maruyama I N, Hara H, Hirota Y, Inouye M
Service de Microbiologie, Université de Liège, Instit de Chimie, Belgium.
Mol Microbiol. 1988 Jul;2(4):519-25. doi: 10.1111/j.1365-2958.1988.tb00058.x.
Replacement of the amino-terminal 40-amino-acid region of the 588-amino-acid precursor of the membrane-bound penicillin-binding protein 3 (PBP3) by the decapeptide MKGKEFQAWI was carried out by altering the amino-coding end of the ftsI gene. Insertion of the modified gene into a runaway-replication plasmid under the control of a fused lpp promoter and lac promoter/operator, resulted in the overexpression by Escherichia coli of the modified PBP3 (designated PBP3**) in the cytoplasm. About 80% of the accumulated PBP3** underwent sequestration in the form of insoluble protein granules that were isolated by cell breakage or cell lysis. After selective removal of contaminants by an EDTA-lysozyme/DNase (deoxyribonuclease)/Nonidet extraction, treatment of the granules with guanidinium chloride followed by dialysis against buffer containing 0.5 M NaCl yielded a refolded, water-soluble PBP3**, which, upon chromatography on Superose 12, exhibited the expected 60,000 molecular mass. The refolded PBP3** bound benzylpenicillin in a 1 to 1 molar ratio, was highly sensitive to aztreonam and showed the same degree of thermostability, in terms of penicillin-binding capacity, as the parent, membrane-bound PBP3, suggesting that protein refolding occurred with formation of the correct intramolecular interactions. Two to three mg of refolded PBP3** can be obtained from 1 litre of culture of the overproducing strain.
通过改变ftsI基因的氨基编码末端,用十肽MKGKEFQAWI替换膜结合青霉素结合蛋白3(PBP3)的588个氨基酸前体的氨基末端40个氨基酸区域。将修饰后的基因插入到由融合的lpp启动子和lac启动子/操纵子控制的失控复制质粒中,导致大肠杆菌在细胞质中过量表达修饰后的PBP3(称为PBP3**)。积累的PBP3中约80%以不溶性蛋白质颗粒的形式被隔离,这些颗粒通过细胞破碎或细胞裂解分离出来。通过EDTA-溶菌酶/脱氧核糖核酸酶(DNase)/诺乃洗涤剂提取选择性去除污染物后,用氯化胍处理颗粒,然后用含0.5M NaCl的缓冲液透析,得到重折叠的水溶性PBP3,其在Superose 12上进行层析时,显示出预期的60,000分子量。重折叠的PBP3以1:1的摩尔比结合苄青霉素,对氨曲南高度敏感,并且就青霉素结合能力而言,显示出与亲本膜结合PBP3相同程度的热稳定性,这表明蛋白质重折叠伴随着正确的分子内相互作用的形成。从1升高产菌株培养物中可获得2至3毫克重折叠的PBP3。