Philippon A, Dusart J, Joris B, Frère JM, (1998) The diversity, structure and regulation of beta-lactamases. Cell Mol Life Sci 54: 341-346.
Frère JM, (1995) Beta-lactamases and bacterial resistance to antibiotics. Mol Microbiol 16: 385-395.
Clarke SR, Dyke KG, (2001) The signal transducer (BlaRI) and the repressor (BlaI) of the Staphylococcus aureus beta-lactamase operon are inducible. Microbiology 147: 803-810.
Kobayashi T, Zhu YF, Nicholls NJ, Lampen JO, (1987) A second regulatory gene, blaR1, encoding a potential penicillin-binding protein required for induction of beta-lactamase in Bacillus licheniformis. J Bacteriol 169: 3873-3878.
Sherratt DJ, Collins JF, (1973) Analysis by transformation of the penicillinase system in Bacillus licheniformis. J Gen Microbiol 76: 217-230.
Salerno AJ, Lampen JO, (1988) Differential transcription of the bla regulatory region during induction of beta-lactamase in Bacillus licheniformis. FEBS Lett 227: 61-65.
Stapleton PD, Taylor PW, (2002) Methicillin resistance in Staphylococcus aureus: mechanisms and modulation. Sci Prog 85: 57-72.
Lewis RA, Dyke KG, (2000) MecI represses synthesis from the beta-lactamase operon of Staphylococcus aureus. J Antimicrob Chemother 45: 139-144.
McKinney TK, Sharma VK, Craig WA, Archer GL, (2001) Transcription of the gene mediating methicillin resistance in Staphylococcus aureus (mecA) is corepressed but not coinduced by cognate mecA and beta-lactamase regulators. J Bacteriol 183: 6862-6868.
Zhu Y, Englebert S, Joris B, Ghuysen JM, Kobayashi T, et al. (1992) Structure, function, and fate of the BlaR signal transducer involved in induction of beta-lactamase in Bacillus licheniformis. J Bacteriol 174: 6171-6178.
Joris B, Ledent P, Kobayashi T, Lampen JO, Ghuysen JM, (1990) Expression in Escherichia coli of the carboxy terminal domain of the BLAR sensory-transducer protein of Bacillus licheniformis as a water-soluble Mr 26,000 penicillin-binding protein. FEMS Microbiol Lett 58: 107-113.
Kerff F, Charlier P, Colombo ML, Sauvage E, Brans A, et al. (2003) Crystal structure of the sensor domain of the BlaR penicillin receptor from Bacillus licheniformis. Biochemistry 42: 12835-12843.
Wilke MS, Hills TL, Zhang HZ, Chambers HF, Strynadka NC, (2004) Crystal structures of the Apo and penicillin-acylated forms of the BlaR1 beta-lactam sensor of Staphylococcus aureus. J Biol Chem 279: 47278-47287.
Birck C, Cha JY, Cross J, Schulze-Briese C, Meroueh SO, et al. (2004) X-ray crystal structure of the acylated beta-lactam sensor domain of BlaR1 from Staphylococcus aureus and the mechanism of receptor activation for signal transduction. Journal of the American Chemical Society 126: 13945-13947.
Hardt K, Joris B, Lepage S, Brasseur R, Lampen JO, et al. (1997) The penicillin sensory transducer, BlaR, involved in the inducibility of beta-lactamase synthesis in Bacillus licheniformis is embedded in the plasma membrane via a four-alpha-helix bundle. Mol Microbiol 23: 935-944.
Hanique S, Colombo ML, Goormaghtigh E, Soumillion P, Frère JM, et al. (2004) Evidence of an intramolecular interaction between the two domains of the BlaR1 penicillin receptor during the signal transduction. J Biol Chem 279: 14264-14272.
Duval V, Swinnen M, Lepage S, Brans A, Granier B, et al. (2003) The kinetic properties of the carboxy terminal domain of the Bacillus licheniformis 749/I BlaR penicillin-receptor shed a new light on the derepression of beta-lactamase synthesis. Mol Microbiol 48: 1553-1564.
Llarrull LI, Toth M, Champion MM, Mobashery S, (2011) Activation of BlaR1 protein of methicillin-resistant Staphylococcus aureus, its proteolytic processing, and recovery from induction of resistance. The Journal of biological chemistry 286: 38148-38158.
Zhang HZ, Hackbarth CJ, Chansky KM, Chambers HF, (2001) A proteolytic transmembrane signaling pathway and resistance to beta-lactams in staphylococci. Science 291: 1962-1965.
Amoroso A, Boudet J, Berzigotti S, Duval V, Teller N, et al. (2012) A Peptidoglycan Fragment Triggers beta-lactam Resistance in Bacillus licheniformis. PLoS pathogens 8: e1002571.
Filée P, Benlafya K, Delmarcelle M, Moutzourelis G, Frère JM, et al. (2002) The fate of the BlaI repressor during the induction of the Bacillus licheniformis BlaP beta-lactamase. Mol Microbiol 44: 685-694.
Gregory PD, Lewis RA, Curnock SP, Dyke KG, (1997) Studies of the repressor (BlaI) of beta-lactamase synthesis in Staphylococcus aureus. Mol Microbiol 24: 1025-1037.
Pelmenschikov V, Blomberg MR, Siegbahn PE, (2002) A theoretical study of the mechanism for peptide hydrolysis by thermolysin. J Biol Inorg Chem 7: 284-298.
Gao X, Wang J, Yu DQ, Bian F, Xie BB, et al. (2010) Structural basis for the autoprocessing of zinc metalloproteases in the thermolysin family. Proc Natl Acad Sci U S A 107: 17569-17574.
Le Moual H, Devault A, Roques BP, Crine P, Boileau G, (1991) Identification of glutamic acid 646 as a zinc-coordinating residue in endopeptidase-24.11. J Biol Chem 266: 15670-15674.
Lipscomb WN, Strater N, (1996) Recent Advances in Zinc Enzymology. Chemical reviews 96: 2375-2434.
Fukasawa KM, Hata T, Ono Y, Hirose J, (2011) Metal preferences of zinc-binding motif on metalloproteases. Journal of amino acids 2011 574816.
Hausrath AC, Matthews BW, (1994) Redetermination and refinement of the complex of benzylsuccinic acid with thermolysin and its relation to the complex with carboxypeptidase A. The Journal of biological chemistry 269: 18839-18842.
Demidyuk IV, Gasanov EV, Safina DR, Kostrov SV, (2008) Structural organization of precursors of thermolysin-like proteinases. The protein journal 27: 343-354.
Del Papa MF, Hancock LE, Thomas VC, Perego M, (2007) Full activation of Enterococcus faecalis gelatinase by a C-terminal proteolytic cleavage. Journal of bacteriology 189: 8835-8843.
Sambrook J, EF Fritsch, T Maniatis, (2001) Molecular cloning: a laboratory manual. NY Cold Spring Harbor Laboratory Press.
Gong Z, Hew CL, (1994) Zinc and DNA binding properties of a novel LIM homeodomain protein Isl-2. Biochemistry 33: 15149-15158.
Mazen A, Gradwohl G, de Murcia G, (1988) Zinc-binding proteins detected by protein blotting. Anal Biochem 172: 39-42.
McEuen AR, Edwards B, Koepke KA, Ball AE, Jennings BA, et al. (1992) Zinc binding by retroviral integrase. Biochemical and biophysical research communications 189: 813-818.
Matagne A, Misselyn-Bauduin AM, Joris B, Erpicum T, Granier B, et al. (1990) The diversity of the catalytic properties of class A beta-lactamases. Biochem J 265: 131-146.
Sambrook J, EF Fritsch, T Maniatis, (2001) Purification of antibodies. Molecular cloning a laboratory manual. 2008/02/12 ed. NY: Cold Spring Harbor Laboratory Press pp. 18.11-18.18.
Sullivan MA, Yasbin RE, Young FE, (1984) New shuttle vectors for Bacillus subtilis and Escherichia coli which allow rapid detection of inserted fragments. Gene 29: 21-26.