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Penicillin-binding protein 2a of Streptococcus pneumoniae: expression in Escherichia coli and purification and refolding of inclusion bodies into a soluble and enzymatically active enzyme.

机译:肺炎链球菌青霉素结合蛋白2a:在大肠杆菌中表达,并将包涵体纯化并重折叠成可溶性和酶促活性酶。

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Penicillin-binding proteins (PBPs), targets of beta-lactam antibiotics, are membrane-bound enzymes essential for the biosynthesis of the bacterial cell wall. PBPs possess transpeptidase and transglycosylase activities responsible for the final steps of the bacterial cell wall cross-linking and polymerization, respectively. To facilitate our structural studies of PBPs, we constructed a 5'-truncated version (lacking bp from 1 to 231 encoding the N-terminal part of the protein including the transmembrane domain) of the pbp2a gene of Streptococcus pneumoniae and expressed the truncated gene product as a GST fusion protein in Escherichia coli. This GST fusion form of PBP2a, designated GST-PBP2a*, was expressed almost exclusively as inclusion bodies. Using a combination of high- and low-speed centrifugation, large amounts of purified inclusion bodies were obtained. These purified inclusion bodies were refolded into a soluble and enzymatically active enzyme using a single-step refolding method consisting of solubilization of the inclusion bodies with urea and direct dialysis of the solubilized preparations. Using these purification and refolding methods, approximately 37 mg of soluble GST-PBP2a* protein was obtained from 1 liter of culture. The identity of this refolded PBP2a* protein was confirmed by N-terminal sequencing. The refolded PBP2a*, with or without the GST-tag, was found to bind to BOCILLIN FL, a beta-lactam, and to hydrolyze S2d, an analog of the bacterial cell wall stem peptides. The S2d hydrolysis activity of PBP2a* was inhibited by penicillin G. In conclusion, using this expression system, and the purification and refolding methods, large amounts of the soluble GST-PBP2a* protein were obtained and shown to be enzymatically active. Copyright 1999 Academic Press.
机译:青霉素结合蛋白(PBP)是β-内酰胺类抗生素的靶标,是细菌细胞壁生物合成所必需的膜结合酶。 PBP具有转肽酶和转糖基酶活性,分别负责细菌细胞壁交联和聚合的最终步骤。为促进我们对PBP的结构研究,我们构建了肺炎链球菌pbp2a基因的5'截短形式(从1到231缺少bp,编码包含跨膜结构域的蛋白质的N端部分),并表达了截短的基因产物作为大肠杆菌中的GST融合蛋白。 PBP2a的这种GST融合形式,称为GST-PBP2a *,几乎全部表示为包涵体。结合高速和低速离心,获得了大量纯化的包涵体。使用一步重折叠方法将这些纯化的包涵体重折叠成可溶性和酶促活性酶,该方法包括用尿素溶解包涵体并直接透析溶解的制剂。使用这些纯化和重折叠方法,从1升培养物中获得了约37 mg可溶性GST-PBP2a *蛋白。通过N末端测序证实了该重新折叠的PBP2a *蛋白的身份。发现带有或不带有GST标签的重新折叠的PBP2a *与β-内酰胺BOCILLIN FL结合,并水解细菌细胞壁干肽类似物S2d。青霉素G抑制了PBP2a *的S2d水解活性。总之,使用该表达系统以及纯化和重折叠方法,获得了大量可溶性GST-PBP2a *蛋白,并显示出酶活性。版权所有1999 Academic Press。

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