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Esterase Autodisplay: Enzyme Engineering and Whole-Cell Activity Determination in Microplates with pH Sensors

机译:酯酶自动显示:使用pH传感器的酶标板中酶工程和全细胞活性测定

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摘要

Among the GDSL family of serine esterases/lipases is a group of bacterial enzymes that posses C-terminal extensions involved in outer membrane anchoring or translocation. ApeE from Salmonella enterica serovar Typhimurium, a member of this group, has been expressed in Escherichia coli and was resistant to protease digestion when the protease was added to whole cells, indicating a periplasmic localization. The five consensus blocks conserved within all GDSL esterases were identified in ApeE by multiple sequence alignment and separated from the C-terminal extension. The DNA sequence spanning the four invariant residues Ser, Gly, Asn, and His, and hence representing the catalytic domains of ApeE, was amplified by PCR and fused in frame to the transport domains of the autodisplay system. The resulting artificial esterase, called EsjA, was overexpressed in the cell envelope of E. coli and was shown to be active by the use of α-naphthyl acetate (α-NA) as a substrate in an in-gel activity stain after sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Surface exposure of EsjA was indicated by its accessibility to protease added to whole cells. The esterase activity of whole cells displaying EsjA was determined by a pH agar assay and by the use of microplates with integrated pH-dependent optical sensors. α-NA, α-naphthyl butyrate, and α-naphthyl caproate were used as substrates, and it turned out that the substrate preferences of artificial EsjA were altered in comparison to original ApeE. Our results indicate that autodisplay of esterase in combination with pH sensor microplates can provide a new platform technology for the screening of tailor-made hydrolase activities.
机译:在GDSL丝氨酸酯酶/脂肪酶家族中,有一组细菌酶具有参与外膜锚定或易位的C末端延伸。肠沙门氏菌血清型鼠伤寒沙门氏菌的ApeE已经在大肠杆菌中表达,并且当将蛋白酶添加到全细胞中时对蛋白酶的消化具有抗性,表明其在周质定位。通过多重序列比对,在ApeE中鉴定出所有GDSL酯酶中保守的5个共有嵌段,并与C端延伸区分开。通过PCR扩增跨越四个不变残基Ser,Gly,Asn和His的DNA序列,并因此代表ApeE的催化结构域,并将其框内融合到自动展示系统的转运结构域中。所得的称为EsjA的人工酯酶在大肠杆菌的细胞膜中过度表达,并且在十二烷基硫酸钠后的凝胶内活性染色中,通过使用乙酸α-萘乙酸酯(α-NA)作为底物显示出活性硫酸-聚丙烯酰胺凝胶电泳。 EsjA的表面暴露可通过其与添加至全细胞的蛋白酶的可及性来表明。展示EsjA的全细胞的酯酶活性是通过pH琼脂分析和带有集成pH依赖性光学传感器的微孔板测定的。使用α-NA,丁酸萘甲酸萘酯和己酸α-萘甲酸乙酯作为底物,结果表明,与原始ApeE相比,人工EsjA的底物偏爱有所改变。我们的结果表明,酯酶与pH传感器微孔板的自动展示可以为筛选定制水解酶活性提供新的平台技术。

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