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Functional expression of a penicillin acylase from the extreme thermophile Thermus thermophilus HB27 in Escherichia coli

机译:嗜热嗜热菌HB27中青霉素酰基转移酶在大肠杆菌中的功能表达

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Background Penicillin acylases (PACs) are enzymes of industrial relevance in the manufacture of β-lactam antibiotics. Development of a PAC with a longer half-life under the reaction conditions used is essential for the improvement of the operational stability of the process. A gene encoding a homologue to Escherichia coli PAC was found in the genome of the thermophilic bacterium Thermus thermophilus (Tth) HB27. Because of the nature of this PAC and its complex maturation that is crucial to reach its functional heterodimeric final conformation, the overexpression of this enzyme in a heterologous mesophilic host was a challenge. Here we describe the purification and characterization of the PAC protein from Tth HB27 overexpressed in Escherichia coli. Results Fusions to a superfolder green fluorescent protein and differential membrane solubilization assays indicated that the native enzyme remains attached through its amino-terminal end to the outer side of the cytoplasmic membrane of Tth cells. In order to overexpress this PAC in E. coli cells, a variant of the protein devoid of its membrane anchoring segment was constructed. The effect of the co-expression of chaperones and calcium supplementation of the culture medium was investigated. The total production of PAC was enhanced by the presence of DnaK/J and GrpE and even more by trigger factor and GroEL/ES. In addition, 10 mM calcium markedly improved both PAC specific and volumetric activities. Recombinant PAC was affinity-purified and proper maturation of the protein was confirmed by SDS-PAGE and MALDI-TOF analysis of the subunits. The recombinant protein was tested for activity towards several penicillins, cephalosporins and homoserine lactones. Hydrophobic acyl-chain penicillins were preferred over the rest of the substrates. Penicillin K (octanoyl penicillin) was the best substrate, with the highest specificity constant value (16.12 mM-1.seg-1). The optimum pH was aprox. 4 and the optimum temperature was 75 °C. The half-life of the enzyme at this temperature was 9.2 h. Conclusions This is the first report concerning the heterologous expression of a pac gene from a thermophilic microorganism in the mesophilic host E. coli. The recombinant protein was identified as a penicillin K-deacylating thermozyme.
机译:背景技术青霉素酰化酶(PACs)是与β-内酰胺类抗生素生产相关的工业酶。在所使用的反应条件下,开发具有更长半衰期的PAC对于改善工艺的操作稳定性至关重要。在嗜热细菌嗜热菌(Tth)HB27的基因组中发现了编码大肠杆菌PAC同源基因的基因。由于该PAC的性质及其复杂的成熟对达到其功能性异二聚体最终构象至关重要,因此在异源嗜温宿主中该酶的过表达是一个挑战。在这里,我们描述了从大肠杆菌中过表达的Tth HB27中PAC蛋白的纯化和鉴定。结果与超文件夹绿色荧光蛋白融合和差异膜溶解测定法表明,天然酶通过其氨基末端保持附着在Tth细胞胞质膜的外侧。为了在大肠杆菌细胞中过表达该PAC,构建了没有其膜锚定区段的蛋白质变体。研究了伴侣蛋白的共表达和培养基中钙的补充的作用。 DnaK / J和GrpE的存在可以提高PAC的总产量,触发因子和GroEL / ES可以进一步提高PAC的总产量。此外,10 mM钙可显着提高PAC比活性和体积活性。重组PAC经亲和纯化,并通过亚基的SDS-PAGE和MALDI-TOF分析确认了蛋白质的正确成熟。测试了重组蛋白对几种青霉素,头孢菌素和高丝氨酸内酯的活性。疏水性酰基链青霉素优于其余的底物。青霉素K(辛酰基青霉素)是最好的底物,具有最高的特异性常数(16.12 mM -1 .seg -1 )。最佳pH约为aprox。 4,最佳温度为75°C。该酶在此温度下的半衰期为9.2小时。结论这是有关嗜温微生物大肠杆菌中嗜热微生物中pac基因异源表达的第一份报告。重组蛋白被鉴定为青霉素K-脱酰热酶。

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