Bacillibactin-Mediated Iron Transport in Bacillus subtilis
- 13 December 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 128 (1) , 22-23
- https://doi.org/10.1021/ja055898c
Abstract
The hexadentate triscatecholamide bacillibactin delivers iron to Bacillus subtilis and is structurally similar to enterobactin, although in a more oblate conformation. B. subtilis uses two partially overlapping permeases (1 and 2) to acquire iron from its endogenous siderophores (bacillibactin and itoic acid). Enterobactin and bacillibactin have opposite metal chiralities, different affinity for ferric ion, and dissimilar iron transport behaviors. The solution thermodynamic stability of ferric bacillibactin has been investigated through potentiometric and spectrophotometric titrations. The addition of a glycine to the catechol chelating arms causes a destabilization of the ferric complex of bacillibactin compared to ferric enterobactin. B. subtilis appears to express a separate receptor for enterobactin (permease 3), although enterobactin can also be transported through the permease for bacillibactin (permease 2).Keywords
This publication has 7 references indexed in Scilit:
- Corynebactin and a Serine Trilactone Based Analogue: Chirality and Molecular Modeling of Ferric ComplexesInorganic Chemistry, 2002
- Corynebactin and Enterobactin: Related Siderophores of Opposite ChiralityJournal of the American Chemical Society, 2002
- Salmonella typhimurium IroN and FepA Proteins Mediate Uptake of Enterobactin but Differ in Their Specificity for Other SiderophoresJournal of Bacteriology, 1999
- Investigation of equilibria in solution. Determination of equilibrium constants with the HYPERQUAD suite of programsTalanta, 1996
- Solution equilibria of enterobactin and metal-enterobactin complexesInorganic Chemistry, 1991
- Coordination chemistry and microbial iron transportAccounts of Chemical Research, 1979
- The Thermal Breakdown of DiaryltetrazolesJournal of the American Chemical Society, 1958