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首页> 外文期刊>Journal of Applied Phycology >Fusion constructs enhance heterologous beta-phellandrene production inSynechocystissp. PCC 6803
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Fusion constructs enhance heterologous beta-phellandrene production inSynechocystissp. PCC 6803

机译:融合构建体增强异源β-磷酮生产insychocystissp。 PCC 6803。

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摘要

The impact of fusion genes on the overexpression of enzymes for the heterologous production of beta-phellandrene bySynechocystismutants was investigated. The concept of overexpression of fusion genes was used in order to overcome the low expression level of these enzymes. Various constructs of the codon-optimized gene of beta-phellandrene synthase (PHLS), along with the gene of geranyl diphosphate synthase (GPPS), were incorporated into the genomic DNA ofSynechocystissp. PCC 6803 following fusion with the highly expressed endogenouscpcBandcpcAgenes, encoding the phycocyanin beta- and alpha-subunits, respectively. Findings in this study indicated that the utilization of a strong promoter (cpc) in combination with thecpcBas a leader sequence was not by itself sufficient for cpcB.PHLS protein overexpression in the absence of the rest of thecpcoperon genes (cpcA,cpcC2,cpcC1,cpcD). Significantly higher expression of the CpcB.PHLS fusion protein was achieved only when allcpcoperon genes were present. In this case, the beta-phellandrene yield was substantially greater compared with strains that also expressed thecpcB.PHLSfusion gene in the absence of the remaindercpcoperon genes. Interestingly, when thecpcAwas used in the leader sequence position, the CpcA.PHLS fusion protein caused the heterologous production of a mixture of terpenoid isomers, instead of beta-phellandrene. This study extends previous findings in the field and provides new insights into the use of the fusion construct technology as a heterologous protein overexpression strategy for enzymes with slow catalytic activity.
机译:研究了研究融合基因对β-磷酸酯型β-磷酸酯的异源生产酶过表达的影响。使用融合基因过表达的概念以克服这些酶的低表达水平。将β-磷酸酯合酶(PHLS)的密码子优化基因的各种构建与大烷基二磷酸合酶(GPPS)的基因一起掺入了宿舍的基因组DNA中。 PCC 6803融合后,融合高表达的内源性胶囊,分别编码植物蛋白β和α-亚基。本研究中的发现表明,在不存在其余的CPCOPERON基因(CPCA,CPCC2,CPCC1,CPCD的情况下,将强启动子(CPC)与THECPCBAS序列组合的利用术语不足以本身就是足以用于CPCB.phls蛋白过表达(CPCA,CPCC2,CPCC1,CPCD )。只有当存在AllcpCopoperon基因时,才能显着更高的CPCB.phls融合蛋白的表达。在这种情况下,与在没有剩余的杂波基因的情况下表达Thecpcb.phlsfusion基因的菌株比较,β-磷酸丁蛋白产率基本上更大。有趣的是,当在前导序列位置中使用的金根瓦斯时,CPCA.phls融合蛋白导致萜类异构体混合物的异源生产,而不是β-磷锡。本研究扩展了该领域的先前发现,并为使用融合构建技术为具有缓慢催化活性的酶的异源蛋白质过表达策略提供了新的洞察。

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