Toxins-antitoxins: plasmid maintenance, programmed cell death, and cell cycle arrest F Hayes Science 301 (5639), 1496-1499, 2003 | 735 | 2003 |
Toxins-antitoxins: diversity, evolution and function F Hayes, L Van Melderen Critical reviews in biochemistry and molecular biology 46 (5), 386-408, 2011 | 299 | 2011 |
Axe–Txe, a broad‐spectrum proteic toxin–antitoxin system specified by a multidrug‐resistant, clinical isolate of Enterococcus faecium R Grady, F Hayes Molecular microbiology 47 (5), 1419-1432, 2003 | 294 | 2003 |
Transposon-based strategies for microbial functional genomics and proteomics F Hayes Annual review of genetics 37 (1), 3-29, 2003 | 279 | 2003 |
Extrachromosomal and mobile elements in enterococci: transmission, maintenance, and epidemiology DB Clewell, KE Weaver, GM Dunny, TM Coque, MV Francia, F Hayes Enterococci: From commensals to leading causes of drug resistant infection …, 2014 | 164 | 2014 |
Bacterial DNA segregation dynamics mediated by the polymerizing protein ParF D Barilla, MF Rosenberg, U Nobbmann, F Hayes The EMBO journal 24 (7), 1453-1464, 2005 | 152 | 2005 |
Identification of the Minimal Replicon of Lactococcus lactis subsp. lactis UC317 Plasmid pCI305 F Hayes, C Daly, GF Fitzgerald Applied and Environmental Microbiology 56 (1), 202-209, 1990 | 151 | 1990 |
The bacterial segrosome: a dynamic nucleoprotein machine for DNA trafficking and segregation F Hayes, D Barillà Nature Reviews Microbiology 4 (2), 133-143, 2006 | 149 | 2006 |
Emerging roles of toxin-antitoxin modules in bacterial pathogenesis B Kedzierska, F Hayes Molecules 21, 790, 2016 | 135 | 2016 |
Functional assay for BRCA1: mutagenesis of the COOH-terminal region reveals critical residues for transcription activation F Hayes, C Cayanan, D Barilla, ANA Monteiro Cancer research 60 (9), 2411-2418, 2000 | 111 | 2000 |
The P1 ParA protein and its ATPase activity play a direct role in the segregation of plasmid copies to daughter cells MA Davis, L Radnedge, KA Martin, F Hayes, B Youngren, SJ Austin Molecular microbiology 21 (5), 1029-1036, 1996 | 110 | 1996 |
Pentapeptide scanning mutagenesis: random insertion of a variable five amino acid cassette in a target protein B Hallet, DJ Sherratt, F Hayes Nucleic acids research 25 (9), 1866-1867, 1997 | 107 | 1997 |
Regulating toxin-antitoxin expression: controlled detonation of intracellular molecular timebombs F Hayes, B Kędzierska Toxins 6 (1), 337-358, 2014 | 105 | 2014 |
Toxin–antitoxin regulation: bimodal interaction of YefM–YoeB with paired DNA palindromes exerts transcriptional autorepression B Kędzierska, LY Lian, F Hayes Nucleic acids research 35 (1), 325-339, 2007 | 102 | 2007 |
ParG, a protein required for active partition of bacterial plasmids, has a dimeric ribbon–helix–helix structure AP Golovanov, D Barillà, M Golovanova, F Hayes, LY Lian Molecular microbiology 50 (4), 1141-1153, 2003 | 99 | 2003 |
The tail of the ParG DNA segregation protein remodels ParF polymers and enhances ATP hydrolysis via an arginine finger-like motif D Barilla, E Carmelo, F Hayes Proceedings of the National Academy of Sciences 104 (6), 1811-1816, 2007 | 98 | 2007 |
The partition system of multidrug resistance plasmid TP228 includes a novel protein that epitomizes an evolutionarily distinct subgroup of the ParA superfamily F Hayes Molecular microbiology 37 (3), 528-541, 2000 | 95 | 2000 |
Loss of receptor regulation by a phospholipase D1 mutant unresponsive to protein kinase C FMA Zhang Y, Altshuller YM, Hammond SM, Hayes F, Morris AJ EMBO J 18, 6339-6348, 1999 | 89 | 1999 |
A family of stability determinants in pathogenic bacteria F Hayes Journal of bacteriology 180 (23), 6415-6418, 1998 | 85 | 1998 |
The homologous operons for P1 and P7 plasmid partition are autoregulated from dissimilar operator sites F Hayes, L Radnedge, MA Davis, SJ Austin Molecular microbiology 11 (2), 249-260, 1994 | 81 | 1994 |