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Structure of a slow processing precursor penicillin acylase from Escherichia coli reveals the linker peptide blocking the active-site cleft

机译:来自大肠杆菌的缓慢加工的前体青霉素酰基转移酶的结构揭示了连接子肽阻断了活性位点裂

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摘要

Penicillin G acylase is a periplasmic protein, cytoplasmically expressed as a precursor polypeptide comprising a signal sequence, the A and B chains of the mature enzyme (209 and 557 residues respectively) joined by a spacer peptide of 54 amino acid residues. The wild-type AB heterodimer is produced by proteolytic removal of this spacer in the periplasm. The first step in processing is believed to be autocatalytic hydrolysis of the peptide bond between the C-terminal residue of the spacer and the active-site serine residue at the N terminus of the B chain. We have deter mined the crystal structure of a slowly processing precursor mutant (Thr263Gly) of penicillin G acylase from Escherichia coli, which reveals that the spacer peptide blocks the entrance to the active-site cleft consistent with an autocatalytic mechanism of maturation. In this mutant precursor there is, however, an unexpected cleavage at a site four residues from the active-site serine residue. Analyses of the stereochemistry of the 260-261 bond seen to be cleaved in this precursor structure and of the 263-264 peptide bond have suggested factors that may govern the autocatalytic mechanism. (C) 2000 Academic Press. [References: 38]
机译:青霉素G酰基转移酶是一种周质蛋白,在细胞质中表达为前体多肽,包含信号序列,成熟酶的A和B链(分别为209和557个残基)与54个氨基酸残基的间隔肽相连。野生型AB异二聚体是通过蛋白水解去除周质中的该间隔区而产生的。据信加工的第一步是间隔物的C-末端残基与B链N末端的活性位丝氨酸残基之间的肽键的自催化水解。我们已经确定了来自大肠杆菌的青霉素G酰基转移酶的缓慢加工前体突变体(Thr263Gly)的晶体结构,这揭示了间隔肽阻断了活性位点裂口的入口,这与成熟的自催化机制一致。然而,在该突变体前体中,在活性位点丝氨酸残基的四个残基位点意外地裂解。 260-261键的立体化学分析和此263-264肽键的立体化学分析表明可能控制自催化机制。 (C)2000学术出版社。 [参考:38]

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