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Site-directed mutagenesis of proposed active-site residues of penicillin-binding protein 5 from Escherichia coli.

机译:对来自大肠杆菌的青霉素结合蛋白5的拟议活性位点残基进行定点诱变。

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摘要

Alignment of the amino acid sequence of penicillin-binding protein 5 (PBP5) with the sequences of other members of the family of active-site-serine penicillin-interacting enzymes predicted the residues playing a role in the catalytic mechanism of PBP5. Apart from the active-site (Ser44), Lys47, Ser110-Gly-Asn, Asp175 and Lys213-Thr-Gly were identified as the residues making up the conserved boxes of this protein family. To determine the role of these residues, they were replaced using site-directed mutagenesis. The mutant proteins were assayed for their penicillin-binding capacity and DD-carboxypeptidase activity. The Ser44Cys and the Ser44Gly mutants showed a complete loss of both penicillin-binding capacity and DD-carboxypeptidase activity. The Lys47Arg mutant also lost its DD-carboxypeptidase activity but was able to bind and hydrolyse penicillin, albeit at a considerably reduced rate. Mutants in the Ser110-Gly-Asn fingerprint were affected in both acylation and deacylation upon reaction with penicillin and lost their DD-carboxypeptidase activity with the exception of Asn112Ser and Asn112Thr. The Asp175Asn mutant showed wild-type penicillin-binding but a complete loss of DD-carboxypeptidase activity. Mutants of Lys213 lost both penicillin-binding and DD-carboxypeptidase activity except for Lys213His, which still bound penicillin with a k+2/K' of 0.2% of the wild-type value. Mutation of His216 and Thr217 also had a strong effect on DD-carboxypeptidase activity. Thr217Ser and Thr217Ala showed augmented hydrolysis rates for the penicillin acyl-enzyme. This study reveals the residues in the conserved fingerprints to be very important for both DD-carboxypeptidase activity and penicillin-binding, and confirms them to play crucial roles in catalysis.
机译:青霉素结合蛋白5(PBP5)的氨基酸序列与活性位点丝氨酸青霉素相互作用酶家族其他成员序列的比对预测了这些残基在PBP5的催化机制中起作用。除了活性位点(Ser44)外,Lys47,Ser110-Gly-Asn,Asp175和Lys213-Thr-Gly也被鉴定为构成该蛋白家族保守盒的残基。为了确定这些残基的作用,使用定点诱变将其替换。分析突变蛋白的青霉素结合能力和DD-羧肽酶活性。 Ser44Cys和Ser44Gly突变体显示出青霉素结合能力和DD-羧肽酶活性完全丧失。 Lys47Arg突变体也失去了DD-羧肽酶的活性,但能够结合和水解青霉素,尽管速率大大降低。与青霉素反应后,Ser110-Gly-Asn指纹图谱中的突变体同时受到酰化和脱酰作用的影响,并且除了Asn112Ser和Asn112Thr以外,它们的DD-羧肽酶活性都丧失了。 Asp175Asn突变体显示出野生型青霉素结合,但DD-羧肽酶活性完全丧失。除了Lys213His以外,Lys213的突变体都失去了青霉素结合和DD-羧肽酶的活性,而Lys213His仍以野生型值的0.2%的k + 2 / K'结合青霉素。 His216和Thr217的突变也对DD-羧肽酶活性有很强的影响。 Thr217Ser和Thr217Ala显示青霉素酰基酶的水解速率增加。这项研究揭示了保守指纹中的残基对于DD-羧肽酶活性和青霉素结合都非常重要,并证实了它们在催化中起关键作用。

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