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Responses of Synechocystis sp. PCC 6803 to heterologous biosynthetic pathways.

Microb Cell Fact.. 2017-08; 
Vavitsas K, Rue EØ, Stefánsdóttir LK, Gnanasekaran T,, Blennow A, Crocoll C, Gudmundsson S, Jensen PE.
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Gene Synthesis ... and CfTPS3 [GenBank: KF444508], encoding the diterpene synthases that convert geranylgeranyl diphosphate (GGPP) to 13R-manoyl oxide [13], were codon-optimized using the OptimumGene™ optimization tool for Synechocystis, available from GenScript and inserted into ... Get A Quote

Abstract

BACKGROUND: There are an increasing number of studies regarding genetic manipulation of cyanobacteria to produce commercially interesting compounds. The majority of these works study the expression and optimization of a selected heterologous pathway, largely ignoring the wholeness and complexity of cellular metabolism. Regulation and response mechanisms are largely unknown, and even the metabolic pathways themselves are not fully elucidated. This poses a clear limitation in exploiting the rich biosynthetic potential of cyanobacteria. RESULTS: In this work, we focused on the production of two different compounds, the cyanogenic glucoside dhurrin and the diterpenoid 13R-manoyl oxide in Synechocystis PCC 6803. We ... More

Keywords

Amino acids; Cyanobacteria; Metabolic modelling; Metabolism; Terpenoids