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Engineering and Directed Evolution of a Ca2+ Binding Site A-Deficient AprE Mutant Reveal an Essential Contribution of the Loop Leu75–Leu82 to Enzyme Activity

机译:Ca2 +的工程和定向演化 结合位点A缺陷AprE突变体揭示了环Leu75–Leu82对酶活性的重要贡献。

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摘要

An aprE mutant from B. subtilis 168 lacking the connecting loop Leu75–Leu82 which is predicted to encode a Ca2+ binding site was constructed. Expression of the mutant gene (aprEΔLeu75–Leu82) produced B. subtilis colonies lacking protease activity. Intrinsic fluorescence analysis revealed spectral differences between wild-type AprE and AprEΔL75–L82. An AprEΔL75–L82 variant with reestablished enzyme activity was selected by directed evolution. The novel mutations Thr66Met/Gly102Asp located in positions which are predicted to be important for catalytic activity were identified in this variant. Although these mutations restored hydrolysis, they had no effect with respect to thermal inactivation of AprEΔL75–L82 T66M G102D. These results support the proposal that in addition to function as a calcium binding site, the loop that connects β-sheet e3 with α-helix c plays a structural role on enzyme activity of AprE from B. subtilis 168.
机译:构建了来自枯草芽孢杆菌168的aprE突变体,该突变体缺乏连接环Leu75–Leu82,该环被预测为编码Ca2 +结合位点。突变基因(aprEΔLeu75–Leu82)的表达产生了缺乏蛋白酶活性的枯草芽孢杆菌菌落。内在荧光分析显示野生型AprE和AprEΔL75-L82之间的光谱差异。具有定向酶活性的AprEΔL75–L82变体通过定向进化进行选择。在该变体中鉴定出位于预计对催化活性重要的位置的新突变Thr66Met / Gly102Asp。尽管这些突变恢复了水解,但它们对AprEΔL75–L82 T66M G102D的热失活没有影响。这些结果支持了这样的建议:除了充当钙结合位点外,将β-sheete3与α-螺旋c连接的环对枯草芽孢杆菌168的AprE的酶活性起结构性作用。

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