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1. Diverse roles of the metal binding domains and transport mechanism of copper transporting P-type ATPases

2. Structure and ion-release mechanism of PIB-4-type ATPases

3. The Crystal Structure of Thermotoga maritima Class III Ribonucleotide Reductase Lacks a Radical Cysteine Pre-Positioned in the Active Site.

4. Author response: Structure and ion-release mechanism of PIB-4-type ATPases

5. Backbone 1H, 13C, and 15N resonance assignments of BoMan26A, a β-mannanase of the glycoside hydrolase family 26 from the human gut bacterium Bacteroides ovatus

6. A surface-exposed GH26 β-mannanase from Bacteroides ovatus: Structure, role, and phylogenetic analysis of BoMan26B

7. Galactomannan Catabolism Conferred by a Polysaccharide Utilization Locus of Bacteroides ovatus

8. A surface-exposed GH26 β-mannanase from

9. A β‐mannan utilization locus in Bacteroides ovatus involves a GH36 α‐galactosidase active on galactomannans

10. Galactomannan Catabolism Conferred by a Polysaccharide Utilization Locus of Bacteroides ovatus: ENZYME SYNERGY AND CRYSTAL STRUCTURE OF A β-MANNANASE

11. What can we learn about nucleotide metabolism from a thermophilic anaerobic ribonucleotide reductase?

12. The Crystal Structure of Thermotoga maritima Class III Ribonucleotide Reductase Lacks a Radical Cysteine Pre-Positioned in the Active Site

13. The first ribonucleotide reductase without an activating radical cysteine

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