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1. Enterococcus faecalis NADH Peroxidase-Defective Mutants Stain Falsely in Colony Zymogram Assay for Extracellular Electron Transfer to Ferric Ions

2. Respiratory Heme A-Containing Oxidases Originated in the Ancestors of Iron-Oxidizing Bacteria

3. Diversity of Cytochrome c Oxidase Assembly Proteins in Bacteria

4. Genes important for catalase activity in Enterococcus faecalis.

6. Molecular Biology of Bacillus subtilis Cytochromes anno 2020

7. YtkA (CtaK) and YozB (CtaM) function in the biogenesis of cytochrome c oxidase in Bacillus subtilis

8. Two routes for extracellular electron transfer in Enterococcus faecalis

9. Electrochemical wiring of the Gram-positive bacterium Enterococcus faecalis with osmium redox polymer modified electrodes

10. Extracellular electron transfer features of Gram-positive bacteria

11. Extracellular Electron Transfer by the Gram-Positive Bacterium Enterococcus faecalis

12. Forespore Targeting of SpoVD in Bacillus subtilis Is Mediated by the N-Terminal Part of the Protein

13. Heme A synthase in bacteria depends on one pair of cysteinyls for activity

14. Transpeptidase activity of penicillin-binding protein SpoVD in peptidoglycan synthesis conditionally depends on the disulfide reductase StoA

15. In Vitro Assembly of Catalase*

16. Cortex synthesis duringBacillus subtilissporulation depends on the transpeptidase activity of SpoVD

17. Heme A biosynthesis

18. Production, purification and detergent exchange of isotopically labeled Bacillus subtilis cytochrome b558 (SdhC)

19. Composition and function of cytochrome c biogenesis System II

20. In vivo production of catalase containing haem analogues

21. The physical state of water in bacterial spores

22. Crystal Structure and Biophysical Properties of Bacillus subtilis BdbD

23. Positively Regulated Glycerol/G3P-Dependent Bacillus subtilis Gene Expression System Based on Anti-Termination

24. The Active-Site Cysteinyls and Hydrophobic Cavity Residues of ResA Are Important for Cytochrome c Maturation in Bacillus subtilis

25. Extracytoplasmic Processes Impaired by Inactivation of trxA (Thioredoxin Gene) in Bacillus subtilis

26. CtaG is required for formation of active cytochrome c oxidase in Bacillus subtilis

27. Mutations in the Thiol-Disulfide Oxidoreductases BdbC and BdbD Can Suppress Cytochrome c Deficiency of CcdA-Defective Bacillus subtilis Cells

28. Genes required for cytochrome c synthesis inBacillus subtilis

29. Respiratory Cytochromes, Other Heme Proteins, and Heme Biosynthesis

30. The Krebs Citric Acid Cycle

31. [Untitled]

32. Enterococcus faecalis V583 Contains a Cytochrome bd -Type Respiratory Oxidase

33. The Distal Heme Center in Bacillus subtilis Succinate:Quinone Reductase Is Crucial for Electron Transfer to Menaquinone

34. Efficient Spore Synthesis in Bacillus subtilis Depends on the CcdA Protein

35. Carboxin resistance in Paracoccus denitrificans conferred by a mutation in the membrane-anchor domain of succinate:quinone reductase (complex II)

36. The ms 2 io 6 A37 Modification of tRNA in Salmonella typhimurium Regulates Growth on Citric Acid Cycle Intermediates

37. Preparation, crystallization and preliminary X-ray analysis of protein YtlP fromBacillus subtilis

38. Bacillus subtilis CcdA-defective mutants are blocked in a late step of cytochrome c biogenesis

39. Heme proteins in lactic acid bacteria

40. Heme Proteins in Lactic Acid Bacteria

41. Transmembrane topology and axial ligands to hemes in the cytochrome b subunit of Bacillus subtilis succinate:menaquinone reductase

42. Bacillus subtilis CtaA is a heme-containing membrane protein involved in heme A biosynthesis

43. Purification and characterisation of a water-soluble ferrochelatase from Bacillus subtilis

44. Production, purification and detergent exchange of isotopically labeled Bacillussubtilis cytochrome b₅₅₈ (SdhC)

45. Bacillus subtilis CtaA and CtaB function in haem A biosynthesis

47. Two hemes in Bacillus subtilis succinate:menaquinone oxidoreductase (complex II)

48. Organization and regulation of the Bacillus subtilis odhAB operon, which encodes two of the subenzymes of the 2-oxoglutarate dehydrogenase complex

49. Studies of ferric heme proteins with Highly Anisotropic/Highly Axial Low Spin (S = 1/2) electron paramagnetic resonance signals with bis-histidine and histidine-methionine axial iron coordination

50. Penicillin-binding protein SpoVD disulphide is a target for StoA in Bacillus subtilis forespores

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