| Literature DB >> 19144921 |
Stefanie Krieg1, Frédéric Huché, Kay Diederichs, Nadia Izadi-Pruneyre, Anne Lecroisey, Cécile Wandersman, Philippe Delepelaire, Wolfram Welte.
Abstract
Gram-negative bacteria use specific heme uptake systems, relying on outer membrane receptors and excreted heme-binding proteins (hemophores) to scavenge and actively transport heme. To unravel the unknown molecular details involved, we present 3 structures of the Serratia marcescens receptor HasR in complex with its hemophore HasA. The transfer of heme over a distance of 9 A from its high-affinity site in HasA into a site of lower affinity in HasR is coupled with the exergonic complex formation of the 2 proteins. Upon docking to the receptor, 1 of the 2 axial heme coordinations of the hemophore is initially broken, but the position and orientation of the heme is preserved. Subsequently, steric displacement of heme by a receptor residue ruptures the other axial coordination, leading to heme transfer into the receptor.Entities:
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Year: 2009 PMID: 19144921 PMCID: PMC2633585 DOI: 10.1073/pnas.0809406106
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205