The heme transfer from the soluble HasA hemophore to its membrane-bound receptor HasR is driven by protein-protein interaction from a high to a lower affinity binding site

被引:78
作者
Izadi-Pruneyre, Nadia
Huche, Frederic
Lukat-Rodgers, Gudrun S.
Lecroisey, Anne
Gilli, Robert
Rodgers, Kenton R.
Wandersman, Cecile
Delepelaire, Philippe
机构
[1] Inst Pasteur, CNRS URA 2172, Unite Membranes Bacteriennes, Dept Microbiol, F-75724 Paris 15, France
[2] Inst Pasteur, CNRS URA 2185, Dept Biol Struct & Chim, Unite Resonance Magnet Nucl Biomol, F-75724 Paris 15, France
[3] Univ Aix Marseille 2, CNRS FRE 2737, Fac Pharm, F-13385 Marseille 05, France
[4] N Dakota State Univ, Dept Chem Biochem & Mol Biol, Fargo, ND 58105 USA
关键词
D O I
10.1074/jbc.M603698200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
HasA is an extracellular heme binding protein, and HasR is an outer membrane receptor protein from Serratia marcescens. They are the initial partners of a heme internalization system allowing S. marcescens to scavenge heme at very low concentrations due to the very high affinity of HasA for heme (K-a = 5,3 x 10(10) M-1). Heme is then transferred to HasR, which has a lower affinity for heme. The mechanism of the heme transfer between HasA and HasR is largely unknown. HasR has been overexpressed and purified in holo and apo forms. It binds one heme molecule with a Ka of 5 x 10(6) M-1 and shows the characteristic absorbance spectrum of a low spin heme iron. Both holoHasA and apoHasA bind tightly to apoHasR in a 1:1 stoichiometry. In this study we show that heme transfer occurs in vitro in the purified HasA (.) HasR complex, demonstrating that heme transfer is energy- and TonB complex-independent and driven by a protein-protein interaction. We also show that heme binding to HasR involves two conserved histidine residues.
引用
收藏
页码:25541 / 25550
页数:10
相关论文
共 34 条
[1]   Recognition of ferric catecholates by FepA [J].
Annamalai, R ;
Jin, B ;
Cao, ZH ;
Newton, SMC ;
Klebba, PE .
JOURNAL OF BACTERIOLOGY, 2004, 186 (11) :3578-3589
[2]  
Arnoux P, 1999, NAT STRUCT BIOL, V6, P516
[3]   SIMULTANEOUS DETERMINATION OF HEMES-A, HEMES-B, AND HEMES-C FROM PYRIDINE HEMOCHROME SPECTRA [J].
BERRY, EA ;
TRUMPOWER, BL .
ANALYTICAL BIOCHEMISTRY, 1987, 161 (01) :1-15
[4]   Use of heme-protein complexes by the Yersinia enterocolitica HemR receptor:: Histidine residues are essential for receptor function [J].
Bracken, CS ;
Baer, MT ;
Abdur-Rashid, A ;
Helms, W ;
Stojiljkovic, I .
JOURNAL OF BACTERIOLOGY, 1999, 181 (19) :6063-6072
[5]   Direct-detected 13C NMR to investigate the iron(III) hemophore HasA [J].
Caillet-Saguy, C ;
Delepierre, M ;
Lecroisey, A ;
Bertini, I ;
Piccioli, M ;
Turano, P .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2006, 128 (01) :150-158
[6]   OUT-OF-PLANE DEFORMATION MODES IN THE RESONANCE RAMAN-SPECTRA OF METALLOPORPHYRINS AND HEME-PROTEINS [J].
CHOI, SH ;
SPIRO, TG .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (11) :3683-3692
[7]   Transferrin-iron uptake by gram-negative bacteria [J].
Cornelissen, CN .
FRONTIERS IN BIOSCIENCE-LANDMARK, 2003, 8 :D836-D847
[8]   Heme and a five-amino-acid hemophore region form the bipartite stimulus triggering the has signaling cascade [J].
Cwerman, H ;
Wandersman, C ;
Biville, F .
JOURNAL OF BACTERIOLOGY, 2006, 188 (09) :3357-3364
[9]   Thermodynamics of heme binding to the HasASM hemophore:: Effect of mutations at three key residues for heme uptake [J].
Deniau, C ;
Gilli, R ;
Izadi-Pruneyre, N ;
Létoffé, S ;
Delepierre, M ;
Wandersman, C ;
Briand, C ;
Lecroisey, A .
BIOCHEMISTRY, 2003, 42 (36) :10627-10633
[10]   Metal import through microbial membranes [J].
Ferguson, AD ;
Deisenhofer, J .
CELL, 2004, 116 (01) :15-24