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Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|October 8, 2005
Mechanisms of iron-sulfur cluster assembly: the SUF machineryM Fontecave, S Ollagnier de Choudens, B Py, et al.Mutation Research|September 1, 1989
DNA repair mechanisms affecting cytotoxicity by streptozotocin in E. coliR J Fram, S L Mack, M George, et al.Journal of Bacteriology|April 1, 1975
Isolation and partial characterization of three Escherichia coli mutants with altered transfer ribonucleic acid methylasesM G Marinus, N R Morris, D Söll, et al.Nucleic Acids Research|May 4, 2006
Homologous recombination prevents methylation-induced toxicity in Escherichia coliAnetta Nowosielska, Stephen A Smith, Bevin P Engelward, et al.Molecular Microbiology|March 17, 2001
SoxR-dependent response to oxidative stress and virulence of Erwinia chrysanthemi: the key role of SufC, an orphan ABC ATPaseL Nachin, M El Hassouni, L Loiseau, et al.Journal of Molecular Biology|October 12, 2000
Alteration of a single tryptophan residue of the cellulose-binding domain blocks secretion of the Erwinia chrysanthemi Cel5 cellulase (ex-EGZ) via the type II systemV Chapon, H D Simpson, X Morelli, et al.Molecular Microbiology|February 1, 1994
Periplasmic disulphide bond formation is essential for cellulase secretion by the plant pathogen Erwinia chrysanthemiI Bortoli-German, E Brun, B Py, et al.Protein Engineering|February 1, 1991
Cellulase EGZ of Erwinia chrysanthemi: structural organization and importance of His98 and Glu133 residues for catalysisB Py, I Bortoli-German, J Haiech, et al.Gene|September 30, 1991
Sequence analysis of the cellulase-encoding celY gene of Erwinia chrysanthemi: a possible case of interspecies gene transferA Guiseppi, J L Aymeric, B Cami, et al.Chemistry & Biology|February 9, 2000
Multiple pathways of recombination define cellular responses to cisplatinZ Z Zdraveski, J A Mello, M G Marinus, et al.Pageof 10