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Catalytic Activity of the Archetype from Group 4 of the FTR-like Ferredoxin:Thioredoxin Reductase Family Is Regulated by Unique S = 7/2 and S = 1/2 [4Fe-4S] Clusters.
Prakash, Divya; Xiong, Jin; Chauhan, Shikha S; Walters, Karim A; Kruse, Hannah; Yennawar, Neela; Golbeck, John H; Guo, Yisong; Ferry, James G.
Affiliation
  • Prakash D; School of Chemical and Biomolecular Sciences, Southern Illinois University-Carbondale, Carbondale, Illinois 62901, United States.
  • Xiong J; Department of Chemistry, The Carnegie Mellon University, Pittsburgh,, Pennsylvania 15213, United States.
  • Chauhan SS; School of Chemical and Biomolecular Sciences, Southern Illinois University-Carbondale, Carbondale, Illinois 62901, United States.
  • Walters KA; Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.
  • Kruse H; School of Chemical and Biomolecular Sciences, Southern Illinois University-Carbondale, Carbondale, Illinois 62901, United States.
  • Yennawar N; The Huck Institutes of the Life Sciences, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.
  • Golbeck JH; Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.
  • Guo Y; Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.
  • Ferry JG; Department of Chemistry, The Carnegie Mellon University, Pittsburgh,, Pennsylvania 15213, United States.
Biochemistry ; 63(12): 1588-1598, 2024 Jun 18.
Article in En | MEDLINE | ID: mdl-38817151
ABSTRACT
Thioredoxin reductases (TrxR) activate thioredoxins (Trx) that regulate the activity of diverse target proteins essential to prokaryotic and eukaryotic life. However, very little is understood of TrxR/Trx systems and redox control in methanogenic microbes from the domain Archaea (methanogens), for which genomes are abundant with annotations for ferredoxinthioredoxin reductases [Fdx/thioredoxin reductase (FTR)] from group 4 of the widespread FTR-like family. Only two from the FTR-like family are characterized the plant-type FTR from group 1 and FDR from group 6. Herein, the group 4 archetype (AFTR) from Methanosarcina acetivorans was characterized to advance understanding of the family and TrxR/Trx systems in methanogens. The modeled structure of AFTR, together with EPR and Mössbauer spectroscopies, supports a catalytic mechanism similar to plant-type FTR and FDR, albeit with important exceptions. EPR spectroscopy of reduced AFTR identified a transient [4Fe-4S]1+ cluster exhibiting a mixture of S = 7/2 and typical S = 1/2 signals, although rare for proteins containing [4Fe-4S] clusters, it is most likely the on-pathway intermediate in the disulfide reduction. Furthermore, an active site histidine equivalent to residues essential for the activity of plant-type FTR and FDR was found dispensable for AFTR. Finally, a unique thioredoxin system was reconstituted from AFTR, ferredoxin, and Trx2 from M. acetivorans, for which specialized target proteins were identified that are essential for growth and other diverse metabolisms.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Iron-Sulfur Proteins Language: En Journal: Biochemistry Year: 2024 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Iron-Sulfur Proteins Language: En Journal: Biochemistry Year: 2024 Document type: Article Affiliation country:
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