Structure and function of the bacterial AAA protease FtsH S Langklotz, U Baumann, F Narberhaus Biochimica Et Biophysica Acta (BBA)-Molecular Cell Research 1823 (1), 40-48, 2012 | 216 | 2012 |
Analysis of the mechanism of action of potent antibacterial hetero-tri-organometallic compounds: a structurally new class of antibiotics M Wenzel, M Patra, CHR Senges, I Ott, JJ Stepanek, A Pinto, P Prochnow, ... ACS chemical biology 8 (7), 1442-1450, 2013 | 149 | 2013 |
The C‐terminal end of LpxC is required for degradation by the FtsH protease F Führer, S Langklotz, F Narberhaus Molecular microbiology 59 (3), 1025-1036, 2006 | 113 | 2006 |
The fate of plasma-generated oxygen atoms in aqueous solutions: non-equilibrium atmospheric pressure plasmas as an efficient source of atomic O (aq) J Benedikt, MM Hefny, A Shaw, BR Buckley, F Iza, S Schäkermann, ... Physical Chemistry Chemical Physics 20 (17), 12037-12042, 2018 | 96 | 2018 |
A dielectric barrier discharge terminally inactivates RNase A by oxidizing sulfur-containing amino acids and breaking structural disulfide bonds JW Lackmann, S Baldus, E Steinborn, E Edengeiser, F Kogelheide, ... Journal of Physics D: Applied Physics 48 (49), 494003, 2015 | 90 | 2015 |
A trapping approach reveals novel substrates and physiological functions of the essential protease FtsH in Escherichia coli K Westphal, S Langklotz, N Thomanek, F Narberhaus Journal of Biological Chemistry 287 (51), 42962-42971, 2012 | 87 | 2012 |
Activation of RidA chaperone function by N-chlorination A Müller, S Langklotz, N Lupilova, K Kuhlmann, JE Bandow, LIO Leichert Nature communications 5 (1), 1-14, 2014 | 84 | 2014 |
Tuning the activity of a short Arg-Trp antimicrobial peptide by lipidation of a C-or N-terminal lysine side-chain HB Albada, P Prochnow, S Bobersky, S Langklotz, P Schriek, JE Bandow, ... ACS medicinal chemistry letters 3 (12), 980-984, 2012 | 82 | 2012 |
Control of lipopolysaccharide biosynthesis by FtsH-mediated proteolysis of LpxC is conserved in enterobacteria but not in all gram-negative bacteria S Langklotz, M Schäkermann, F Narberhaus Journal of bacteriology 193 (5), 1090-1097, 2011 | 73 | 2011 |
Degradation of cytoplasmic substrates by FtsH, a membrane-anchored protease with many talents F Narberhaus, M Obrist, F Führer, S Langklotz Research in microbiology 160 (9), 652-659, 2009 | 71 | 2009 |
FtsH-mediated coordination of lipopolysaccharide biosynthesis in Escherichia coli correlates with the growth rate and the alarmone (p) ppGpp M Schäkermann, S Langklotz, F Narberhaus Journal of bacteriology 195 (9), 1912-1919, 2013 | 61 | 2013 |
Sequence and length recognition of the C-terminal turnover element of LpxC, a soluble substrate of the membrane-bound FtsH protease F Führer, A Müller, H Baumann, S Langklotz, B Kutscher, F Narberhaus Journal of molecular biology 372 (2), 485-496, 2007 | 58 | 2007 |
The Escherichia coli replication inhibitor CspD is subject to growth‐regulated degradation by the Lon protease S Langklotz, F Narberhaus Molecular microbiology 80 (5), 1313-1325, 2011 | 56 | 2011 |
Short Antibacterial Peptides with Significantly Reduced Hemolytic Activity can be Identified by a Systematic l-to-d Exchange Scan of their Amino Acid Residues HB Albada, P Prochnow, S Bobersky, S Langklotz, JE Bandow, ... ACS Combinatorial Science 15 (11), 585-592, 2013 | 49 | 2013 |
Comparison of proteomic responses as global approach to antibiotic mechanism of action elucidation CHR Senges, JJ Stepanek, M Wenzel, N Raatschen, Ü Ay, Y Märtens, ... Antimicrobial agents and chemotherapy 65 (1), e01373-20, 2020 | 36 | 2020 |
Rhodomyrtone (Rom) is a membrane-active compound J Saising, MT Nguyen, T Härtner, P Ebner, AAM Bhuyan, A Berscheid, ... Biochimica et Biophysica Acta (BBA)-Biomembranes 1860 (5), 1114-1124, 2018 | 36 | 2018 |
Agrobacterium tumefaciens Small Lipoprotein Atu8019 Is Involved in Selective Outer Membrane Vesicle (OMV) Docking to Bacterial Cells LR Knoke, S Abad Herrera, K Götz, BH Justesen, T Günther Pomorski, ... Frontiers in microbiology 11, 1228, 2020 | 27 | 2020 |
Cell division protein FtsZ is unfolded for N-terminal degradation by antibiotic-activated ClpP N Silber, S Pan, S Schäkermann, C Mayer, H Brötz-Oesterhelt, P Sass MBio 11 (3), e01006-20, 2020 | 26 | 2020 |
Purine biosynthesis is the bottleneck in trimethoprim‐treated Bacillus subtilis JJ Stepanek, S Schäkermann, M Wenzel, P Prochnow, JE Bandow PROTEOMICS–Clinical Applications 10 (9-10), 1036-1048, 2016 | 26 | 2016 |
Silyl-based alkyne-modifying linker for the preparation of C-terminal acetylene-derivatized protected peptides M Strack, S Langklotz, JE Bandow, N Metzler-Nolte, HB Albada The Journal of Organic Chemistry 77 (22), 9954-9958, 2012 | 25 | 2012 |