Microbial hyaluronic acid production BF Chong, LM Blank, R Mclaughlin, LK Nielsen Applied microbiology and biotechnology 66, 341-351, 2005 | 495 | 2005 |
Large-scale 13C-flux analysis reveals mechanistic principles of metabolic network robustness to null mutations in yeast LM Blank, L Kuepfer, U Sauer Genome biology 6, 1-16, 2005 | 404 | 2005 |
MEMOTE for standardized genome-scale metabolic model testing C Lieven, ME Beber, BG Olivier, FT Bergmann, M Ataman, P Babaei, ... Nature biotechnology 38 (3), 272-276, 2020 | 349 | 2020 |
Metabolic functions of duplicate genes in Saccharomyces cerevisiae L Kuepfer, U Sauer, LM Blank Genome research 15 (10), 1421-1430, 2005 | 314 | 2005 |
Growth independent rhamnolipid production from glucose using the non-pathogenic Pseudomonas putida KT2440 A Wittgens, T Tiso, TT Arndt, P Wenk, J Hemmerich, C Müller, ... Microbial cell factories 10, 1-18, 2011 | 291 | 2011 |
Possibilities and limitations of biotechnological plastic degradation and recycling R Wei, T Tiso, J Bertling, K O’Connor, LM Blank, UT Bornscheuer Nature Catalysis 3 (11), 867-871, 2020 | 272 | 2020 |
Metabolic-flux and network analysis in fourteen hemiascomycetous yeasts LM Blank, F Lehmbeck, U Sauer FEMS yeast research 5 (6-7), 545-558, 2005 | 249 | 2005 |
Involvement of Pex13p in Pex14p localization and peroxisomal targeting signal 2–dependent protein import into peroxisomes W Girzalsky, P Rehling, K Stein, J Kipper, L Blank, WH Kunau, R Erdmann The Journal of cell biology 144 (6), 1151-1162, 1999 | 228 | 1999 |
Chemical and biological single cell analysis A Schmid, H Kortmann, PS Dittrich, LM Blank Current opinion in biotechnology 21 (1), 12-20, 2010 | 219 | 2010 |
Machine learning applications for mass spectrometry-based metabolomics UW Liebal, ANT Phan, M Sudhakar, K Raman, LM Blank Metabolites 10 (6), 243, 2020 | 217 | 2020 |
Towards bio-upcycling of polyethylene terephthalate T Tiso, T Narancic, R Wei, E Pollet, N Beagan, K Schröder, A Honak, ... Metabolic engineering 66, 167-178, 2021 | 206 | 2021 |
Pex17p of Saccharomyces cerevisiae Is a Novel Peroxin and Component of the Peroxisomal Protein Translocation Machinery B Huhse, P Rehling, M Albertini, L Blank, K Meller, WH Kunau The Journal of cell biology 140 (1), 49-60, 1998 | 199 | 1998 |
Metabolic response of Pseudomonas putida during redox biocatalysis in the presence of a second octanol phase LM Blank, G Ionidis, BE Ebert, B Bühler, A Schmid The FEBS journal 275 (20), 5173-5190, 2008 | 188 | 2008 |
Tn7-Based Device for Calibrated Heterologous Gene Expression in Pseudomonas putida S Zobel, I Benedetti, L Eisenbach, V de Lorenzo, N Wierckx, LM Blank ACS synthetic biology 4 (12), 1341-1351, 2015 | 182 | 2015 |
TCA cycle activity in Saccharomyces cerevisiae is a function of the environmentally determined specific growth and glucose uptake rates LM Blank, U Sauer Microbiology 150 (4), 1085-1093, 2004 | 180 | 2004 |
Plastic waste as a novel substrate for industrial biotechnology N Wierckx, MA Prieto, P Pomposiello, V de Lorenzo, K O'Connor, ... Microbial biotechnology 8 (6), 900, 2015 | 172 | 2015 |
Fermentation characterization and flux analysis of recombinant strains of Clostridium acetobutylicum with an inactivated solR gene LM Harris, L Blank, RP Desai, NE Welker, ET Papoutsakis Journal of Industrial Microbiology and Biotechnology 27, 322-328, 2001 | 166 | 2001 |
Selected Pseudomonas putida Strains Able To Grow in the Presence of High Butanol Concentrations J Rühl, A Schmid, LM Blank Applied and environmental microbiology 75 (13), 4653-4656, 2009 | 163 | 2009 |
Engineering Pseudomonas putida KT2440 for efficient ethylene glycol utilization MA Franden, LN Jayakody, WJ Li, NJ Wagner, NS Cleveland, ... Metabolic engineering 48, 197-207, 2018 | 162 | 2018 |
Biotechnological upcycling of plastic waste and other non-conventional feedstocks in a circular economy LM Blank, T Narancic, J Mampel, T Tiso, K O’Connor Current opinion in biotechnology 62, 212-219, 2020 | 152 | 2020 |