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Biochemistry|March 21, 1989
Interactions of colicin A domains with phospholipid monolayers and liposomes: relevance to the mechanism of actionM Frenette, M Knibiehler, D Baty, et al.Molecular Microbiology|January 3, 2001
Iron-free pyoverdin binds to its outer membrane receptor FpvA in Pseudomonas aeruginosa: a new mechanism for membrane iron transportI J Schalk, C Hennard, C Dugave, et al.Nature|December 5, 1991
A 'molten-globule' membrane-insertion intermediate of the pore-forming domain of colicin AF G van der Goot, J M González-Mañas, J H Lakey, et al.The Journal of Biological Chemistry|December 14, 1999
Increased stability upon heptamerization of the pore-forming toxin aerolysinC Lesieur, S Frutiger, G Hughes, et al.FEBS Letters|April 22, 1996
Characterisation of the heptameric pore-forming complex of the Aeromonas toxin aerolysin using MALDI-TOF mass spectrometryM Moniatte, F G van der Goot, J T Buckley, et al.Molecular Microbiology|November 1, 1988
Functional domains of colicin AD Baty, M Frenette, R Lloubès, et al.European Journal of Biochemistry|June 15, 1993
Characterization of the receptor and translocator domains of colicin NR el Kouhen, H P Fierobe, S Scianimanico, et al.The Journal of Biological Chemistry|August 25, 1993
Dimerization stabilizes the pore-forming toxin aerolysin in solutionF G van der Goot, J Ausio, K R Wong, et al.European Biophysics Journal : EBJ|December 13, 2005
Biophysics of T5, IRA phages, Escherichia coli outer membrane protein FhuA and T5-FhuA interactionT Mdzinarashvili, M Khvedelidze, A Ivanova, et al.The Journal of Biological Chemistry|May 29, 1999
Porins OmpC and PhoE of Escherichia coli as specific cell-surface targets of human lactoferrin. Binding characteristics and biological effectsF R Sallmann, S Baveye-Descamps, F Pattus, et al.Pageof 10