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嗜水气单胞菌烯酰辅酶A水合酶的定点诱变提高聚(3-羟基丁酸酯-co-3-羟基己酸酯)中3-羟基己酸酯的比例

Site-directed mutagenesis of Aeromonas hydrophila enoyl coenzyme A hydratase enhancing 3-hydroxyhexanoate fractions of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate).

作者信息

Hu Fengqing, Cao Yan, Xiao Fang, Zhang Jin, Li Hui

机构信息

School of Life Science, Liaoning University, 110036, Shenyang, China.

出版信息

Curr Microbiol. 2007 Jul;55(1):20-4. doi: 10.1007/s00284-006-0490-y. Epub 2007 May 28.

Abstract

The aim of this study is to enhance 3-hydroxyhexanoate (3HHx) fractions of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate), abbreviated as PHBHHx, through site-directed mutagenesis of Aeromonas hydrophila enoyl Coenzyme A hydratase (PhaJ(Ah)). Two amino acids (Leu-65 and Val-130) were selected as a substitutional site based on the structural information of PhaJ(Ah). The purified proteins from the wild-type enzyme and mutants were used to determine hydratase activities. Hydratase activities of four single-mutation enzymes were similar to those of the wild type PhaJ(Ah), while hydratase activities of two double-mutation enzymes were much lower. In addition, the mutated phaJ (Ah) was individually co-transformed into E. coli BL21 (DE3) together with pFH21, which carried the PHA synthase (PhaC(Ah)) gene from A. hydrophila. The recombinant E. coli harboring plasmid pETJ1 (L65A), pETJ2 (L65V) or plasmid pETJ3 (V130A) synthesized the enhanced 3HHx fractions of PHBHHx from dodecanoate, indicating that Leu-65 and Val-130 of PhaJ(Ah) play an important role in determining the acyl chain length substrate specificity. The mutated PhaJ(Ah) (L65A, L65V, or V130A) provided higher 3HHx precursors for PHA synthase, resulting in the enhanced 3HHx fractions of PHBHHx. It is possible to change the acyl chain length substrate specificity of PhaJ through site-directed mutagenesis and produce PHBHHx with a wider range of alterable monomer composition.

摘要

本研究的目的是通过对嗜水气单胞菌烯酰辅酶A水合酶(PhaJ(Ah))进行定点诱变,提高聚(3-羟基丁酸酯-co-3-羟基己酸酯)(简称为PHBHHx)中3-羟基己酸酯(3HHx)的比例。基于PhaJ(Ah)的结构信息,选择了两个氨基酸(Leu-65和Val-130)作为替换位点。使用野生型酶和突变体的纯化蛋白来测定水合酶活性。四种单突变酶的水合酶活性与野生型PhaJ(Ah)相似,而两种双突变酶的水合酶活性则低得多。此外,将突变的phaJ (Ah)与携带来自嗜水气单胞菌的PHA合酶(PhaC(Ah))基因的pFH21一起分别共转化到大肠杆菌BL21 (DE3)中。携带质粒pETJ1(L65A)、pETJ2(L65V)或质粒pETJ3(V130A)的重组大肠杆菌从十二烷酸合成了增强的PHBHHx的3HHx比例,表明PhaJ(Ah)的Leu-65和Val-130在决定酰基链长底物特异性方面起重要作用。突变的PhaJ(Ah)(L65A、L65V或V130A)为PHA合酶提供了更高的3HHx前体,从而导致PHBHHx的3HHx比例增加。通过定点诱变改变PhaJ的酰基链长底物特异性并生产具有更广泛可变单体组成的PHBHHx是可能的。

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