4.4 Article

Solution structure of the iron-sulfur cluster cochaperone HscB and its binding surface for the iron-sulfur assembly scaffold protein IscU

Journal

BIOCHEMISTRY
Volume 47, Issue 36, Pages 9394-9404

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/bi800502r

Keywords

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Funding

  1. NIH [GM58667, GM54264, P41 RR02301, P41 GM66326]
  2. Department of Biochemistry and the Graduate Student Collaborative, University of Wisconsin-Madison

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The interaction between IscU and HscB is critical for successful assembly of iron-sulfur clusters. NMR experiments were performed on HscB to investigate which of its residues might be part of the IscU binding surface. Residual dipolar couplings (D-1(HN) and D-1(C alpha H alpha)) indicated that the crystal structure of HscB [Cupp-Vickery, J. R., and Vickery, L. E. (2000) Crystal structure of Hsc20, a J-type cochaperone from Escherichia coli, J. Mol. Biol. 304, 835-845] faithfully represents its solution state. NMR relaxation rates (N-15 R-1, R-2) and H-1-N-15 heteronuclear NOE values indicated that HscB is rigid along its entire backbone except for three short regions which exhibit flexibility on a fast time scale. Changes in the NMR spectrum of HscB upon addition of IscU mapped to the J-domain/C-domain interface, the interdomain linker, and the C-domain. Sequence conservation is low in the interface and in the linker, and NMR changes observed for these residues likely result from indirect effects of IscU binding. NMR changes observed in the conserved patch of residues in the C-domain (L92, M93, L96, E97, E100, E104, and F 153) were Suggestive of a direct interaction with IscU. To test this, we replaced several of these residues with alanine and assayed for the ability of HscB to interact with IscU and to stimulate HscA ATPase activity. HscB(L92A,M93A,F153A) and HscB(E97A,E100A,E104A) both showed decreased binding affinity for IscU; the (L92A,M93A,F153A) Substitution also strongly perturbed the allosteric interaction within the HscA center dot IscU center dot HscB ternary complex. We propose that the conserved patch in the C-domain of HscB is the principal binding site for IscU.

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