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通过结构导向进化对浅黄伞非特异性过氧合酶中过氧合活性与过氧化活性之比的修饰。

Modification of the peroxygenative:peroxidative activity ratio in the unspecific peroxygenase from Agrocybe aegerita by structure-guided evolution.

作者信息

Mate Diana M, Palomino Miguel A, Molina-Espeja Patricia, Martin-Diaz Javier, Alcalde Miguel

机构信息

Department of Biocatalysis, Institute of Catalysis, CSIC, Marie Curie 2, 28049 Madrid, Spain.

出版信息

Protein Eng Des Sel. 2017 Mar 1;30(3):189-196. doi: 10.1093/protein/gzw073.

Abstract

Unspecific peroxygenase (UPO) is a heme-thiolate peroxidase capable of performing with high-selectivity C-H oxyfunctionalizations of great interest in organic synthesis through its peroxygenative activity. However, the convergence of such activity with an unwanted peroxidative activity encumbers practical applications. In this study, we have modified the peroxygenative:peroxidative activity ratio (P:p ratio) of UPO from Agrocybe aegerita by structure-guided evolution. Several flexible loops (Glu1-Pro35, Gly103-Asp131, Ser226-Gly243, Gln254-Thr276 and Ty293-Arg327) were selected on the basis on their B-factors and ΔΔG values. The full ensemble of segments (43% of UPO sequence) was subjected to focused evolution by the Mutagenic Organized Recombination Process by Homologous IN vivo Grouping (MORPHING) method in Saccharomyces cerevisiae. Five independent mutant libraries were screened in terms of P:p ratio and thermostability. We identified several variants that harbored substitutions at positions 120 and 320 with a strong enhancement in the P:p ratio albeit at the cost of stability. The most thermostable mutant of this process (S226G with an increased T50 of 2°C) was subjected to further combinatorial saturation mutagenesis on Thr120 and Thr320 yielding a collection of variants with modified P:p ratio and recovered stability. Our results seem to indicate the coexistence of several oxidation sites for peroxidative and peroxygenative activities in UPO.

摘要

非特异性过氧酶(UPO)是一种血红素-硫醇盐过氧化物酶,通过其过氧化活性能够在有机合成中以高选择性进行极具吸引力的C-H氧官能化反应。然而,这种活性与不需要的过氧化活性的结合阻碍了实际应用。在本研究中,我们通过结构导向进化修饰了来自皱盖乌芝的UPO的过氧化:过氧化活性比(P:p比)。根据几个柔性环(Glu1-Pro35、Gly103-Asp131、Ser226-Gly243、Gln254-Thr276和Tyr293-Arg327)的B因子和ΔΔG值进行了选择。通过酿酒酵母中的同源体内分组诱变组织重组过程(MORPHING)方法,对片段的完整集合(UPO序列的43%)进行了定向进化。根据P:p比和热稳定性筛选了五个独立的突变文库。我们鉴定出了几个变体,它们在120和320位发生了取代,P:p比有显著提高,尽管以稳定性为代价。该过程中最耐热的突变体(S226G,T50增加2°C)在Thr120和Thr320上进行了进一步的组合饱和诱变,产生了一系列P:p比改变且稳定性恢复的变体。我们的结果似乎表明UPO中存在多个过氧化和过氧化活性的氧化位点。

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