Cdc25 phosphatases and cancer K Kristjansdottir, J Rudolph Chemistry & biology 11 (8), 1043-1051, 2004 | 417 | 2004 |
Catalytic and chemical competence of regulation of cdc25 phosphatase by oxidation/reduction J Sohn, J Rudolph Biochemistry 42 (34), 10060-10070, 2003 | 213 | 2003 |
Cdc25 phosphatases: structure, specificity, and mechanism J Rudolph Biochemistry 46 (12), 3595-3604, 2007 | 203 | 2007 |
A slow, tight-binding inhibitor of the zinc-dependent deacetylase LpxC of lipid A biosynthesis with antibiotic activity comparable to ciprofloxacin AL McClerren, S Endsley, JL Bowman, NH Andersen, Z Guan, J Rudolph, ... Biochemistry 44 (50), 16574-16583, 2005 | 185 | 2005 |
Kinetic mechanism of quinone oxidoreductase 2 and its inhibition by the antimalarial quinolines JJ Kwiek, TAJ Haystead, J Rudolph Biochemistry 43 (15), 4538-4547, 2004 | 182 | 2004 |
Chemotaxis and phototaxis require a CheA histidine kinase in the archaeon Halobacterium salinarium. J Rudolph, D Oesterhelt The EMBO Journal 14 (4), 667-673, 1995 | 151 | 1995 |
Deletion Analysis of thecheOperon in the ArchaeonHalobacterium salinarium J Rudolph, D Oesterhelt Journal of molecular biology 258 (4), 548-554, 1996 | 137 | 1996 |
Phosphorylation in halobacterial signal transduction. J Rudolph, N Tolliday, C Schmitt, SC Schuster, D Oesterhelt The EMBO Journal 14 (17), 4249-4257, 1995 | 129 | 1995 |
Structural Mechanism of Oxidative Regulation of the Phosphatase Cdc25B via an Intramolecular Disulfide Bond, G Buhrman, B Parker, J Sohn, J Rudolph, C Mattos Biochemistry 44 (14), 5307-5316, 2005 | 127 | 2005 |
N5-carboxyaminoimidazole ribonucleotide: evidence for a new intermediate and two new enzymic activities in the de novo purine biosynthetic pathway of Escherichia coli EJ Mueller, E Meyer, J Rudolph, VJ Davisson, JA Stubbe Biochemistry 33 (8), 2269-2278, 1994 | 126 | 1994 |
Investigation of the mechanism of phosphoribosylamine transfer from glutamine phosphoribosylpyrophosphate amidotransferase to glycinamide ribonucleotide synthetase J Rudolph, J Stubbe Biochemistry 34 (7), 2241-2250, 1995 | 124 | 1995 |
Redox regulation of MAP kinase phosphatase 3 D Seth, J Rudolph Biochemistry 45 (28), 8476-8487, 2006 | 120 | 2006 |
Redox regulation of SH2-domain-containing protein tyrosine phosphatases by two backdoor cysteines CY Chen, D Willard, J Rudolph Biochemistry 48 (6), 1399-1409, 2009 | 109 | 2009 |
Inhibiting transient protein–protein interactions: lessons from the Cdc25 protein tyrosine phosphatases J Rudolph Nature Reviews Cancer 7 (3), 202-211, 2007 | 101 | 2007 |
Refined Solution Structure of the LpxC−TU-514 Complex and pKa Analysis of an Active Site Histidine: Insights into the Mechanism and Inhibitor Design, BE Coggins, AL McClerren, L Jiang, X Li, J Rudolph, O Hindsgaul, ... Biochemistry 44 (4), 1114-1126, 2005 | 95 | 2005 |
Inhibition of Cdc25 phosphatases by indolyldihydroxyquinones J Sohn, B Kiburz, Z Li, L Deng, A Safi, MC Pirrung, J Rudolph Journal of medicinal chemistry 46 (13), 2580-2588, 2003 | 93 | 2003 |
Interface surfaces for protein-protein complexes YEA Ban, H Edelsbrunner, J Rudolph Journal of the ACM (JACM) 53 (3), 361-378, 2006 | 90 | 2006 |
Car: a cytoplasmic sensor responsible for arginine chemotaxis in the archaeon Halobacterium salinarum KF Storch, J Rudolph, D Oesterhelt The EMBO Journal, 1999 | 87 | 1999 |
Dual-specific Cdc25B phosphatase: in search of the catalytic acid W Chen, M Wilborn, J Rudolph Biochemistry 39 (35), 10781-10789, 2000 | 77 | 2000 |
Poly (ADP-ribose) polymerase 1 searches DNA via a ‘monkey bar’mechanism J Rudolph, J Mahadevan, P Dyer, K Luger Elife 7, e37818, 2018 | 76 | 2018 |