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藻蓝蛋白·水芹烯合酶融合蛋白可增强集胞藻(蓝细菌)中重组蛋白的表达及β-水芹烯(单萜)碳氢化合物的产生。

A phycocyanin·phellandrene synthase fusion enhances recombinant protein expression and β-phellandrene (monoterpene) hydrocarbons production in Synechocystis (cyanobacteria).

作者信息

Formighieri Cinzia, Melis Anastasios

机构信息

Plant and Microbial Biology, University of California, Berkeley, CA 94720-3102, USA.

Plant and Microbial Biology, University of California, Berkeley, CA 94720-3102, USA.

出版信息

Metab Eng. 2015 Nov;32:116-124. doi: 10.1016/j.ymben.2015.09.010. Epub 2015 Sep 26.

Abstract

Cyanobacteria can be exploited as photosynthetic platforms for heterologous generation of terpene hydrocarbons with industrial applications. Transformation of Synechocystis and heterologous expression of the β-phellandrene synthase (PHLS) gene alone is necessary and sufficient to confer to Synechocystis the ability to divert intermediate terpenoid metabolites and to generate the monoterpene β-phellandrene during photosynthesis. However, terpene synthases, including the PHLS, have a slow Kcat (low Vmax) necessitating high levels of enzyme concentration to enable meaningful rates and yield of product formation. Here, a novel approach was applied to increase the PHLS protein expression alleviating limitations in the rate and yield of β-phellandrene product generation. Different PHLS fusion constructs were generated with the Synechocystis endogenous cpcB sequence, encoding for the abundant in cyanobacteria phycocyanin β-subunit, expressed under the native cpc operon promoter. In one of these constructs, the CpcB·PHLS fusion protein accumulated to levels approaching 20% of the total cellular protein, i.e., substantially higher than expressing the PHLS protein alone under the same endogenous cpc promoter. The CpcB·PHLS fusion protein retained the activity of the PHLS enzyme and catalyzed β-phellandrene synthesis, yielding an average of 3.2 mg product g(-1) dry cell weight (dcw) versus the 0.03 mg g(-1)dcw measured with low-expressing constructs, i.e., a 100-fold yield improvement. In conclusion, the terpene synthase fusion-protein approach is promising, as, in this case, it substantially increased the amount of the PHLS in cyanobacteria, and commensurately improved rates and yield of β-phellandrene hydrocarbons production in these photosynthetic microorganisms.

摘要

蓝细菌可被用作光合平台,用于异源生成具有工业应用价值的萜烯类碳氢化合物。单独转化集胞藻并异源表达β-水芹烯合酶(PHLS)基因,对于赋予集胞藻在光合作用过程中转移萜类中间代谢产物并生成单萜β-水芹烯的能力而言,是必要且充分的。然而,包括PHLS在内的萜烯合酶具有较低的催化常数(低Vmax),这就需要高浓度的酶才能实现有意义的产物形成速率和产量。在此,应用了一种新方法来提高PHLS蛋白表达,以缓解β-水芹烯产物生成速率和产量方面的限制。利用集胞藻内源性cpcB序列构建了不同的PHLS融合构建体,该序列编码蓝细菌中丰富的藻蓝蛋白β亚基,并在天然cpc操纵子启动子下表达。在其中一种构建体中,CpcB·PHLS融合蛋白积累至接近细胞总蛋白的20%,即显著高于在相同内源性cpc启动子下单独表达PHLS蛋白时的水平。CpcB·PHLS融合蛋白保留了PHLS酶的活性,并催化β-水芹烯的合成,平均产量为3.2 mg产物/克干细胞重量(dcw),而低表达构建体测得的产量为0.03 mg/克dcw,即产量提高了100倍。总之,萜烯合酶融合蛋白方法很有前景,在这种情况下,它大幅增加了蓝细菌中PHLS的量,并相应提高了这些光合微生物中β-水芹烯类碳氢化合物的生成速率和产量。

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