Fei J, Lin Q C, Cai G Q, Zhang M H, Huang Q, Wang Y K, Guo L H, Zhang Q J
Shanghai Institute of Cell Biology, Academia Sinica.
Shi Yan Sheng Wu Xue Bao. 1992 Sep;25(3):289-93.
According to the comparison of amino acid sequence between PGA (Penicillin G Acylase) and PBPs (Penicillin Binding Protein), We suggest that No. 565-595 peptide fragment in beta-subunit of PGA may be a substrate-binding site of enzyme. Plasmid pTZGA was constructed by cloning the 2.6 kb PGA gene of pWGA into phagemid pTZ18U The technique of site-specific mutagenesis was used to study the role of residue No. 579 (Ser) and No. 580 (Arg) of PGA. Four kinds of mutants were obtained (Ser579-->Gly579, Arg580-->Gly580, Arg580-->Glu580, Arg580-->Lys580), both Glu580 and Gly580 mutants showed no activity of enzyme and Lys580 mutant remained 30% and Gly579 mutant kept 70% activity of wilde type. The same protein expression of four mutants according to the results of ELISA indicate that mutation does not affect the expression of PGA, but Arg580 residue may be essential for substrate-binding or catalysis of PGA.
通过比较青霉素G酰化酶(PGA)和青霉素结合蛋白(PBPs)的氨基酸序列,我们推测PGAβ亚基中的565 - 595肽段可能是该酶的底物结合位点。通过将pWGA的2.6 kb PGA基因克隆到噬菌粒pTZ18U中构建了质粒pTZGA。采用定点诱变技术研究PGA第579位残基(丝氨酸)和第580位残基(精氨酸)的作用。获得了四种突变体(Ser579→Gly579、Arg580→Gly580、Arg580→Glu580、Arg580→Lys580),其中Glu580和Gly580突变体均无酶活性,Lys580突变体保留了30%的活性,Gly579突变体保留了70%的野生型活性。ELISA结果显示四种突变体的蛋白表达相同,表明突变不影响PGA的表达,但Arg580残基可能对PGA的底物结合或催化至关重要。