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Metabolic Engineering|December 27, 2017
Thermodynamic analysis of computed pathways integrated into the metabolic networks of E. coli and Synechocystis reveals contrasting expansion potentialJohannes Asplund-Samuelsson, Markus Janasch, Elton P HudsonMetabolic Engineering|December 5, 2017
Diversion of the long-chain acyl-ACP pool in Synechocystis to fatty alcohols through CRISPRi repression of the essential phosphate acyltransferase PlsXDanuta Kaczmarzyk, Ivana Cengic, Lun Yao, et al.Current Opinion in Biotechnology|November 1, 2005
Biocatalysis in semi-aqueous and nearly anhydrous conditionsElton P Hudson, Ross K Eppler, Douglas S ClarkACS Synthetic Biology|December 23, 2015
Multiple Gene Repression in Cyanobacteria Using CRISPRiLun Yao, Ivana Cengic, Josefine Anfelt, et al.Metabolic Engineering|July 21, 2018
Systematic overexpression study to find target enzymes enhancing production of terpenes in Synechocystis PCC 6803, using isoprene as a model compoundElias Englund, Kiyan Shabestary, Elton P Hudson, et al.Plos One|May 25, 2012
Automated solid-phase subcloning based on beads brought into proximity by magnetic forceElton P Hudson, Andrej Nikoshkov, Mathias Uhlen, et al.Journal of Biotechnology|May 8, 2014
Overexpression of sigma factor SigB improves temperature and butanol tolerance of Synechocystis sp. PCC6803Danuta Kaczmarzyk, Josefine Anfelt, Amanda Särnegrim, et al.Journal of Experimental Botany|October 30, 2018
Kinetic modeling of the Calvin cycle identifies flux control and stable metabolomes in Synechocystis carbon fixationMarkus Janasch, Johannes Asplund-Samuelsson, Ralf Steuer, et al.The Plant Cell|July 26, 2023
CRISPR interference screens reveal growth-robustness tradeoffs in Synechocystis sp. PCC 6803 across growth conditionsRui Miao, Michael Jahn, Kiyan Shabestary, et al.Applied and Environmental Microbiology|September 24, 2013
Using transcriptomics to improve butanol tolerance of Synechocystis sp. strain PCC 6803Josefine Anfelt, Björn Hallström, Jens Nielsen, et al.Pageof 5