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聚酮合酶基因表达质粒中结构域间重组稳定化的方法。

Approaches to stabilization of inter-domain recombination in polyketide synthase gene expression plasmids.

作者信息

Hu Z, Desai R P, Volchegursky Y, Leaf T, Woo E, Licari P, Santi D V, Hutchinson C R, McDaniel R

机构信息

Kosan Biosciences Inc., 3832 Bay Center Place, Hayward, CA 94545, USA.

出版信息

J Ind Microbiol Biotechnol. 2003 Mar;30(3):161-7. doi: 10.1007/s10295-003-0029-1. Epub 2003 Mar 1.

Abstract

Regions of extremely high sequence identity are recurrent in modular polyketide synthase (PKS) genes. Such sequences are potentially detrimental to the stability of PKS expression plasmids used in the combinatorial biosynthesis of polyketide metabolites. We present two different solutions for circumventing intra-plasmid recombination within the megalomicin PKS genes in Streptomyces coelicolor. In one example, a synthetic gene was used in which the codon usage was reengineered without affecting the primary amino acid sequence. The other approach utilized a heterologous subunit complementation strategy to replace one of the problematic regions. Both methods resulted in PKS complexes capable of 6-deoxyerythronolide B analogue biosynthesis in S. coelicolor CH999, permitting reproducible scale-up to at least 5-l stirred-tank fermentation and a comparison of diketide precursor incorporation efficiencies between the erythromycin and megalomicin PKSs.

摘要

极高序列同一性区域在模块化聚酮合酶(PKS)基因中反复出现。此类序列可能对用于聚酮代谢物组合生物合成的PKS表达质粒的稳定性有害。我们提出了两种不同的解决方案,以规避天蓝色链霉菌中巨大霉素PKS基因内的质粒内重组。在一个实例中,使用了一个合成基因,其中密码子使用经过重新设计,而不影响一级氨基酸序列。另一种方法利用异源亚基互补策略来替换其中一个有问题的区域。两种方法都产生了能够在天蓝色链霉菌CH999中进行6-脱氧红霉内酯B类似物生物合成的PKS复合物,从而允许可重复地扩大规模至至少5升搅拌罐发酵,并比较红霉素和巨大霉素PKS之间的二酮前体掺入效率。

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