Previous Article | Next Article 
J Bacteriol. 1976 April; 126(1): 7-12
Siderophore protection against colicins M, B, V, and Ia in Escherichia coli.
R Wayne,
K Frick and
J B Neilands
ABSTRACT
A variety of natural and synthetic siderophores capable of supporting the growth of Escherichia coli K-12 on iron-limited media also protect strain RW193+ (tonA+ ent-) from the killing action of colicins B, V, and Ia. Protective activity falls into two categories. The first, characteristic of enterobactin protection against colicin B and ferrichrome protection against colicin M, has properties of a specific receptor competition between the siderophore and the colicin. Thus, enterobactin specifically protects against colicin B in fes- mutants (able to accumulate but unable to utilize enterobactin) as predicted by our proposal that the colicin B receptor functions in the specific binding for uptake of enterobactin (Wayne and Neilands, 1975). Similarly ferrichrome specifically protects against colicin M in SidA mutants (defective in hydroxamate siderophore utilization). The second category of protective response, characteristic of the more general siderophore inhibition of colicins B, V, and Ia, requires the availability or metabolism of siderophore iron. Thus, enterobactin protects against colicins V and Ia, but only when the colicin indicator strain is fes+, and hydroxamate siderophores inhibit colicins B, V, and Ia, but only when the colicin indicator strain is SidA+. Moreover, ferrichrome inhibits colicins B, V, and Ia, yet chromium (III) deferriferrichrome is inactive, and ferrichrome itself does not prevent adsorption of colicin Ia receptor material in vitro. Although the nonspecific protection against colicins B, V, and Ia requires iron, the availability of siderophore iron for cell growth is not sufficient to bring about protection. None of the siderophores tested protect cells against the killing action of colicin E1 or K, or against the energy poisons azide, 2, 4-dinitrophenol, and carbonylcyanide m-chlorophenylhydrazone. We suggest that nonspecific siderophore protection against colicins B, V, and Ia may be due either to an induction of membrane alterations in response to siderophore iron metabolism or to a direct interference by siderophore iron with some unknown step in colicin action subsequent to adsorption.
J Bacteriol. 1976 April; 126(1): 7-12
This article has been cited by other articles:
-
Rabsch, W., Ma, L., Wiley, G., Najar, F. Z., Kaserer, W., Schuerch, D. W., Klebba, J. E., Roe, B. A., Gomez, J. A. L., Schallmey, M., Newton, S. M. C., Klebba, P. E.
(2007). FepA- and TonB-Dependent Bacteriophage H8: Receptor Binding and Genomic Sequence. J. Bacteriol.
189: 5658-5674
[Abstract]
[Full Text]
-
Cascales, E., Buchanan, S. K., Duche, D., Kleanthous, C., Lloubes, R., Postle, K., Riley, M., Slatin, S., Cavard, D.
(2007). Colicin Biology. Microbiol. Mol. Biol. Rev.
71: 158-229
[Abstract]
[Full Text]
-
Ma, L., Kaserer, W., Annamalai, R., Scott, D. C., Jin, B., Jiang, X., Xiao, Q., Maymani, H., Massis, L. M., Ferreira, L. C. S., Newton, S. M. C., Klebba, P. E.
(2007). Evidence of Ball-and-chain Transport of Ferric Enterobactin through FepA. J. Biol. Chem.
282: 397-406
[Abstract]
[Full Text]
-
Annamalai, R., Jin, B., Cao, Z., Newton, S. M. C., Klebba, P. E.
(2004). Recognition of Ferric Catecholates by FepA. J. Bacteriol.
186: 3578-3589
[Abstract]
[Full Text]
-
Cao, Z., Warfel, P., Newton, S. M. C., Klebba, P. E.
(2003). Spectroscopic Observations of Ferric Enterobactin Transport. J. Biol. Chem.
278: 1022-1028
[Abstract]
[Full Text]
-
Thulasiraman, P., Newton, S. M. C., Xu, J., Raymond, K. N., Mai, C., Hall, A., Montague, M. A., Klebba, P. E.
(1998). Selectivity of Ferric Enterobactin Binding and Cooperativity of Transport in Gram-Negative Bacteria. J. Bacteriol.
180: 6689-6696
[Abstract]
[Full Text]
-
Payne, M. A., Igo, J. D., Cao, Z., Foster, S. B., Newton, S. M. C., Klebba, P. E.
(1997). Biphasic Binding Kinetics between FepA and Its Ligands. J. Biol. Chem.
272: 21950-21955
[Abstract]
[Full Text]
-
Newton, S. M. C., Allen, J. S., Cao, Z., Qi, Z., Jiang, X., Sprencel, C., Igo, J. D., Foster, S. B., Payne, M. A., Klebba, P. E.
(1997). Double mutagenesis of a positive charge cluster in the ligand-binding site of the ferric enterobactin receptor, FepA. Proc. Natl. Acad. Sci. USA
94: 4560-4565
[Abstract]
[Full Text]
-
Rutz, J., Liu, J, Lyons, J., Goranson, J, Armstrong, S., McIntosh, M., Feix, J., Klebba, P.
(1992). Formation of a gated channel by a ligand-specific transport protein in the bacterial outer membrane. Science
258: 471-475
[Abstract]
-
Scott, D. C., Cao, Z., Qi, Z., Bauler, M., Igo, J. D., Newton, S. M. C., Klebba, P. E.
(2001). Exchangeability of N Termini in the Ligand-gated Porins of Escherichia coli. J. Biol. Chem.
276: 13025-13033
[Abstract]
[Full Text]
Copyright © 1976 by the American Society for Microbiology. All rights reserved.