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首页> 外文期刊>Catalysts >Biosynthesis of Nylon 12 Monomer, ω-Aminododecanoic Acid Using Artificial Self-Sufficient P450, AlkJ and ω-TA
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Biosynthesis of Nylon 12 Monomer, ω-Aminododecanoic Acid Using Artificial Self-Sufficient P450, AlkJ and ω-TA

机译:人工自足P450,AlkJ和ω-TA合成尼龙12单体ω-氨基十二烷酸

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ω-Aminododecanoic acid is considered as one of the potential monomers of Nylon 12, a high-performance member of the bioplastic family. The biosynthesis of ω-aminododecanoic acid from renewable sources is an attractive process in the polymer industry. Here, we constructed three artificial self-sufficient P450s (ArtssP450s) using CYP153A13 from Alcanivorax borkumensis and cytochrome P450 reductase (CPR) domains of natural self-sufficient P450s (CYP102A1, CYP102A5, and 102D1). Among them, artificial self-sufficient P450 (CYP 153A13 BM3 CPR ) with CYP102A1 CPR showed the highest catalytically activity for dodecanoic acid (DDA) substrate. This form of ArtssP450 was further co-expressed with ω-TA from Silicobacter pomeroyi and AlkJ from Pseudomonas putida GPo1. This single-cell system was used for the biotransformation of dodecanoic acid (DDA) to ω-aminododecanoic acid (ω-AmDDA), wherein we could successfully biosynthesize 1.48 mM ω-AmDDA from 10 mM DDA substrate in a one-pot reaction. The productivity achieved in the present study was five times higher than that achieved in our previously reported multistep biosynthesis method (0.3 mM).
机译:ω-氨基十二烷酸被认为是尼龙12的潜在单体之一,尼龙12是生物塑料家族的高性能成员。由可再生资源生物合成ω-氨基十二烷酸是聚合物工业中有吸引力的过程。在这里,我们使用来自北美烟草的CYP153A13和天然自给自足的P450(CYP102A1,CYP102A5和102D1)的细胞色素P450还原酶(CPR)域构建了三个人工自给自足的P450(ArtssP450)。其中,具有CYP102A1 CPR的人工自给P450(CYP 153A13 BM3 CPR)对十二烷酸(DDA)底物显示出最高的催化活性。这种形式的ArtssP450与来自pomeroyi的硅杆菌的ω-TA和来自恶臭假单胞菌GPo1的AlkJ进一步共表达。该单细胞系统用于将十二烷酸(DDA)转化为ω-氨基十二烷酸(ω-AmDDA),其中我们可以通过一锅反应成功地从10 mM DDA底物生物合成1.48 mMω-AmDDA。本研究中获得的生产率是我们先前报道的多步生物合成方法(0.3 mM)获得的生产率的五倍。

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