Abstract

IsdB is a receptor on the surface of the bacterial pathogen Staphylococcus aureus that extracts heme from hemoglobin (Hb) to enable growth on Hb as a sole iron source. IsdB is critically important both for in vitro growth on Hb and in infection models and is also highly up-regulated in blood, serum, and tissue infection models, indicating a key role of this receptor in bacterial virulence. However, structural information for IsdB is limited. We present here a crystal structure of a complex between human Hb and IsdB. In this complex, the α subunits of Hb are refolded with the heme displaced to the interface with IsdB. We also observe that atypical residues of Hb, His58 and His89 of αHb, coordinate to the heme iron, which is poised for transfer into the heme-binding pocket of IsdB. Moreover, the porphyrin ring interacts with IsdB residues Tyr440 and Tyr444 Previously, Tyr440 was observed to coordinate heme iron in an IsdB·heme complex structure. A Y440F/Y444F IsdB variant we produced was defective in heme transfer yet formed a stable complex with Hb (Kd = 6 ± 2 μm) in solution with spectroscopic features of the bis-His species observed in the crystal structure. Haptoglobin binds to a distinct site on Hb to inhibit heme transfer to IsdB and growth of S. aureus, and a ternary complex of IsdB·Hb·Hp was observed. We propose a model for IsdB heme transfer from Hb that involves unfolding of Hb and heme iron ligand exchange.

Highlights

  • IsdB is a receptor on the surface of the bacterial pathogen Staphylococcus aureus that extracts heme from hemoglobin (Hb) to enable growth on Hb as a sole iron source

  • An intact copy of the recombinant IsdBN1N2 construct is bound to each ␣Hb subunit; only the first NEAT domain of IsdB (IsdBN1) is observed bound to each ␤Hb subunit

  • Inspection of crystal packing within the unit cell revealed that modeling the missing components of IsdB would result in a large scale steric clash with ␣Hb-bound IsdBN1N2, suggesting that the partial proteolysis allowed for crystallization of the complex

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Summary

The abbreviations used are

Hemoglobin; Hp, haptoglobin; metHb, methemoglobin; r.m.s.d., root mean square deviation; PDB, Protein Data Bank; ITC, isothermal titration calorimetry; NRPMI, metal-depleted RPMI; EDDHA, ethylenediamine-N,NЈ-bis(2-hydroxyphenylacetic acid). Crystal structures of various portions of IsdH in complex with Hb have been reported: IsdHN11⁄7metHb [17], IsdHN21⁄7metHb [19], and a heme transfer– deficient variant of IsdHN2N3 (Y642A) complexed with metHb [19, 26]. We demonstrate that IsdBN1N2 can bind to the Hp1⁄7metHb, as was previously demonstrated for IsdH, it is unable to remove heme from the complex. This finding correlates with our observation that S. aureus did not utilize Hp1⁄7Hb as a sole iron source

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