Literature DB >> 22734684

Three-dimensional structure and determinants of stability of the iron-sulfur cluster scaffold protein IscU from Escherichia coli.

Jin Hae Kim1, Marco Tonelli, Taewook Kim, John L Markley.   

Abstract

The highly conserved protein, IscU, serves as the scaffold for iron-sulfur cluster (ISC) assembly in the ISC system common to bacteria and eukaryotic mitochondria. The apo-form of IscU from Escherichia coli has been shown to populate two slowly interconverting conformational states: one structured (S) and one dynamically disordered (D). Furthermore, single-site amino acid substitutions have been shown to shift the equilibrium between the metamorphic states. Here, we report three-dimensional structural models derived from NMR spectroscopy for the S-state of wild-type (WT) apo-IscU, determined under conditions where the protein was 80% in the S-state and 20% in the D-state, and for the S-state of apo-IscU(D39A), determined under conditions where the protein was ~95% in the S-state. We have used these structures in interpreting the effects of single site amino acid substitutions that alter %S = (100 × [S])/([S] + [D]). These include different residues at the same site, %S: D39V > D39L > D39A > D39G ≈ WT, and alanine substitutions at different sites, %S: N90A > S107AE111A > WT. Hydrophobic residues at residue 39 appear to stabilize the S-state by decreasing the flexibility of the loops that contain the conserved cysteine residues. The alanine substitutions at positions 90, 107, and 111, on the other hand, stabilize the protein without affecting the loop dynamics. In general, the stability of the S-state correlates with the compactness and thermal stability of the variant.

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Year:  2012        PMID: 22734684      PMCID: PMC3445271          DOI: 10.1021/bi300579p

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  29 in total

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Review 6.  Iron-sulfur clusters: nature's modular, multipurpose structures.

Authors:  H Beinert; R H Holm; E Münck
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7.  Interaction of the iron-sulfur cluster assembly protein IscU with the Hsc66/Hsc20 molecular chaperone system of Escherichia coli.

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8.  Contributions of the LPPVK motif of the iron-sulfur template protein IscU to interactions with the Hsc66-Hsc20 chaperone system.

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  23 in total

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2.  In vitro characterization of a novel Isu homologue from Drosophila melanogaster for de novo FeS-cluster formation.

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Review 4.  Posttranslational control of the scaffold for Fe-S cluster biogenesis as a compensatory regulatory mechanism.

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5.  Unique roles of iron and zinc binding to the yeast Fe-S cluster scaffold assembly protein "Isu1".

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6.  Role of the HSPA9/HSC20 chaperone pair in promoting directional human iron-sulfur cluster exchange involving monothiol glutaredoxin 5.

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7.  Glutathione-complexed [2Fe-2S] clusters function in Fe-S cluster storage and trafficking.

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Review 8.  Metamorphic protein IscU alternates conformations in the course of its role as the scaffold protein for iron-sulfur cluster biosynthesis and delivery.

Authors:  John L Markley; Jin Hae Kim; Ziqi Dai; Jameson R Bothe; Kai Cai; Ronnie O Frederick; Marco Tonelli
Journal:  FEBS Lett       Date:  2013-01-16       Impact factor: 4.124

9.  Metamorphic protein IscU changes conformation by cis-trans isomerizations of two peptidyl-prolyl peptide bonds.

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