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1.
Commun Biol ; 6(1): 1276, 2023 12 18.
Article in English | MEDLINE | ID: mdl-38110506

ABSTRACT

Iron-sulfur clusters are essential for life and defects in their biosynthesis lead to human diseases. The mechanism of cluster assembly and delivery to cytosolic and nuclear client proteins via the cytosolic iron-sulfur cluster assembly (CIA) pathway is not well understood. Here we report cryo-EM structures of the HEAT-repeat protein Met18 from Saccharomyces cerevisiae, a key component of the CIA targeting complex (CTC) that identifies cytosolic and nuclear client proteins and delivers a mature iron-sulfur cluster. We find that in the absence of other CTC proteins, Met18 adopts tetrameric and hexameric states. Using mass photometry and negative stain EM, we show that upon the addition of Cia2, these higher order oligomeric states of Met18 disassemble. We also use pulldown assays to identify residues of critical importance for Cia2 binding and recognition of the Leu1 client, many of which are buried when Met18 oligomerizes. Our structures show conformations of Met18 that have not been previously observed in any Met18 homolog, lending support to the idea that a highly flexible Met18 may be key to how the CTC is able to deliver iron-sulfur clusters to client proteins of various sizes and shapes, i.e. Met18 conforms to the dimensions needed.


Subject(s)
Hot Temperature , Iron-Sulfur Proteins , Humans , Iron-Sulfur Proteins/chemistry , Cytosol/metabolism , Nuclear Proteins/metabolism , Saccharomyces cerevisiae/metabolism , Iron/metabolism , Sulfur/metabolism
2.
Biochemistry ; 56(19): 2477-2487, 2017 05 16.
Article in English | MEDLINE | ID: mdl-28445031

ABSTRACT

Mobile loops located at the active site entrance in enzymes often participate in conformational changes required to shield the reaction from bulk solvent, to control the access of the substrate to the active site, and to position residues for substrate binding and catalysis. In d-arginine dehydrogenase from Pseudomonas aeruginosa (PaDADH), previous crystallographic data suggested that residues 45-47 in the FAD-binding domain and residues 50-56 in the substrate-binding domain in loop L1 could adopt two distinct conformations. In this study, we have used molecular dynamics, kinetics, and fluorescence spectroscopy on the S45A and A46G enzyme variants of PaDADH to investigate the impact of mutations in loop L1 on the catalytic function of the enzyme. Molecular dynamics showed that the mutant enzymes have probabilities of being in open conformations that are higher than that of wild-type PaDADH of loop L1, yielding an increased level of solvent exposure of the active site. In agreement, the flavin fluorescence intensity was ∼2-fold higher in the S45A and A46G enzymes than in wild-type PaDADH, with a 9 nm bathochromic shift of the emission band. In the variant enzymes, the kcat/Km values with d-arginine were ∼13-fold lower than in wild-type PaDADH. Moreover, the pH profiles for the kcat value with d-arginine showed a hollow, consistent with restricted proton movements in catalysis, and no saturation was achieved with the alternate substrate d-leucine in the reductive half-reaction of the variant enzymes. Taken together, the computational and experimental data are consistent with the dynamics of loop L1 being important for substrate capture and catalysis in PaDADH.


Subject(s)
Amino Acid Oxidoreductases/metabolism , Bacterial Proteins/metabolism , Models, Molecular , Pseudomonas aeruginosa/enzymology , Algorithms , Amino Acid Oxidoreductases/chemistry , Amino Acid Oxidoreductases/genetics , Arginine/chemistry , Arginine/metabolism , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Biocatalysis , Catalytic Domain , Databases, Protein , Hydrogen-Ion Concentration , Leucine/chemistry , Leucine/metabolism , Ligands , Molecular Dynamics Simulation , Mutagenesis, Site-Directed , Mutation , Oxidation-Reduction , Protein Conformation , Protein Folding , Protein Unfolding , Recombinant Proteins/chemistry , Recombinant Proteins/metabolism , Stereoisomerism , Substrate Specificity
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