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      Direct observation of intermediates in the SufS cysteine desulfurase reaction reveals functional roles of conserved active-site residues

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          Abstract

          Iron-sulfur (Fe-S) clusters are necessary for the proper functioning of numerous metalloproteins. Fe-S cluster (Isc) and sulfur utilization factor (Suf) pathways are the key biosynthetic routes responsible for generating these Fe-S cluster prosthetic groups in Escherichia coli. Although Isc dominates under normal conditions, Suf takes over during periods of iron depletion and oxidative stress. Sulfur acquisition via these systems relies on the ability to remove sulfur from free cysteine using a cysteine desulfurase mechanism. In the Suf pathway, the dimeric SufS protein uses the cofactor pyridoxal 5′-phosphate (PLP) to abstract sulfur from free cysteine, resulting in the production of alanine and persulfide. Despite much progress, the stepwise mechanism by which this PLP-dependent enzyme operates remains unclear. Here, using rapid-mixing kinetics in conjunction with X-ray crystallography, we analyzed the pre-steady-state kinetics of this process while assigning early intermediates of the mechanism. We employed H123A and C364A SufS variants to trap Cys-aldimine and Cys-ketimine intermediates of the cysteine desulfurase reaction, enabling direct observations of these intermediates and associated conformational changes of the SufS active site. Of note, we propose that Cys-364 is essential for positioning the Cys-aldimine for Cα deprotonation, His-123 acts to protonate the Ala-enamine intermediate, and Arg-56 facilitates catalysis by hydrogen bonding with the sulfhydryl of Cys-aldimine. Our results, along with previous SufS structural findings, suggest a detailed model of the SufS-catalyzed reaction from Cys binding to C–S bond cleavage and indicate that Arg-56, His-123, and Cys-364 are critical SufS residues in this C–S bond cleavage pathway.

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          Author and article information

          Journal
          J Biol Chem
          J. Biol. Chem
          jbc
          jbc
          JBC
          The Journal of Biological Chemistry
          American Society for Biochemistry and Molecular Biology (11200 Rockville Pike, Suite 302, Rockville, MD 20852-3110, U.S.A. )
          0021-9258
          1083-351X
          16 August 2019
          27 June 2019
          : 294
          : 33
          : 12444-12458
          Affiliations
          []Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208
          [§ ]Department of Chemistry and Biochemistry, University of Alabama, Tuscaloosa, Alabama 35487
          Author notes
          [1 ] To whom correspondence may be addressed. Tel.: 205-348-0269; Fax: 205-348-9104; E-mail: jadunkle@ 123456ua.edu .
          [2 ] To whom correspondence may be addressed. Tel.: 803-777-8151; Fax: 803-777-9521; E-mail: woutten@ 123456sc.edu .

          Edited by F. Peter Guengerich

          Author information
          https://orcid.org/0000-0001-7655-5967
          https://orcid.org/0000-0001-6252-0587
          https://orcid.org/0000-0002-9095-0194
          Article
          PMC6699847 PMC6699847 6699847 RA119.009471
          10.1074/jbc.RA119.009471
          6699847
          31248989
          c853553e-cdad-4261-91d1-1387c2d48137
          © 2019 Blahut et al.

          Published under exclusive license by The American Society for Biochemistry and Molecular Biology, Inc.

          History
          : 21 May 2019
          : 16 June 2019
          Funding
          Funded by: HHS | National Institutes of Health (NIH) , open-funder-registry 10.13039/100000002;
          Award ID: GM112919
          Award Recipient : Award Recipient :
          Categories
          Enzymology

          enzyme catalysis,SufS,X-ray crystallography,iron-sulfur protein,enzyme mechanism,PLP,cysteine sulfur bond cleavage,pre-steady-state kinetics,cysteine desulfurase,PLP-dependent sulfur abstraction

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