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1. Burkholderia xenovorans RcoM(Bx)-1, a transcriptional regulator system for sensing low and persistent levels of carbon monoxide.

2. Ligand responses of Vfr, the virulence factor regulator from Pseudomonas aeruginosa.

3. Mutagenesis and functional characterization of the four domains of GlnD, a bifunctional nitrogen sensor protein.

4. Cyclic di-GMP allosterically inhibits the CRP-like protein (Clp) of Xanthomonas axonopodis pv. citri.

5. Effect of perturbation of ATP level on the activity and regulation of nitrogenase in Rhodospirillum rubrum.

6. Identification and functional characterization of NifA variants that are independent of GlnB activation in the photosynthetic bacterium Rhodospirillum rubrum.

7. The transcription regulator RcoM-2 from Burkholderia xenovorans is a cysteine-ligated hemoprotein that undergoes a redox-mediated ligand switch.

8. RcoM: a new single-component transcriptional regulator of CO metabolism in bacteria.

9. Mechanism of the CO-sensing heme protein CooA: new insights from the truncated heme domain and UVRR spectroscopy.

10. Specificity and regulation of interaction between the PII and AmtB1 proteins in Rhodospirillum rubrum.

11. Structure-based hypothesis on the activation of the CO-sensing transcription factor CooA.

12. DNA binding by an imidazole-sensing CooA variant is dependent on the heme redox state.

13. Heme displacement mechanism of CooA activation: mutational and Raman spectroscopic evidence.

14. Roles of the heme and heme ligands in the activation of CooA, the CO-sensing transcriptional activator.

15. Effect of AmtB homologues on the post-translational regulation of nitrogenase activity in response to ammonium and energy signals in Rhodospirillum rubrum.

16. The poor growth of Rhodospirillum rubrum mutants lacking PII proteins is due to an excess of glutamine synthetase activity.

17. Identification of Rhodospirillum rubrum GlnB variants that are altered in their ability to interact with different targets in response to nitrogen status signals.

18. Dual roles of an E-helix residue, Glu167, in the transcriptional activator function of CooA.

19. GlnD is essential for NifA activation, NtrB/NtrC-regulated gene expression, and posttranslational regulation of nitrogenase activity in the photosynthetic, nitrogen-fixing bacterium Rhodospirillum rubrum.

20. CooA, a paradigm for gas sensing regulatory proteins.

21. Investigation of the role of the N-terminal proline, the distal heme ligand in the CO sensor CooA.

22. CO-sensing mechanisms.

23. Dynamics of carbon monoxide binding to CooA.

24. Identification of critical residues in GlnB for its activation of NifA activity in the photosynthetic bacterium Rhodospirillum rubrum.

25. Functionally critical elements of CooA-related CO sensors.

26. Activation mechanism of the CO sensor CooA. Mutational and resonance Raman spectroscopic studies.

27. The role of the hydrophobic distal heme pocket of CooA in ligand sensing and response.

28. Repositioning about the dimer interface of the transcription regulator CooA: a major signal transduction pathway between the effector and DNA-binding domains.

29. Analysis of the L116K variant of CooA, the heme-containing CO sensor, suggests the presence of an unusual heme ligand resulting in novel activity.

30. The heme pocket afforded by Gly117 is crucial for proper heme ligation and activity of CooA.

31. Functional characterization of three GlnB homologs in the photosynthetic bacterium Rhodospirillum rubrum: roles in sensing ammonium and energy status.

32. Mapping CooA.RNA polymerase interactions. Identification of activating regions 2 and 3 in CooA, the co-sensing transcriptional activator.

33. Redox-mediated transcriptional activation in a CooA variant.

34. Effect of P(II) and its homolog GlnK on reversible ADP-ribosylation of dinitrogenase reductase by heterologous expression of the Rhodospirillum rubrum dinitrogenase reductase ADP-ribosyl transferase-dinitrogenase reductase-activating glycohydrolase regulatory system in Klebsiella pneumoniae.

35. CooA: a heme-containing regulatory protein that serves as a specific sensor of both carbon monoxide and redox state.

36. Characterization of variants altered at the N-terminal proline, a novel heme-axial ligand in CooA, the CO-sensing transcriptional activator.

37. Structure of the CO sensing transcription activator CooA.

38. Altering the specificity of CooA, the carbon monoxide-sensing transcriptional activator: characterization of CooA variants that bind cyanide in the Fe(II) form with high affinity.

39. Mutagenesis and functional characterization of the glnB, glnA, and nifA genes from the photosynthetic bacterium Rhodospirillum rubrum.

40. Electronic absorption, EPR, and resonance raman spectroscopy of CooA, a CO-sensing transcription activator from R. rubrum, reveals a five-coordinate NO-heme.

41. Probing the heme axial ligation in the CO-sensing CooA protein with magnetic circular dichroism spectroscopy.

42. Requirement of NifX and other nif proteins for in vitro biosynthesis of the iron-molybdenum cofactor of nitrogenase.

43. Transcription activation by CooA, the CO-sensing factor from Rhodospirillum rubrum. The interaction between CooA and the C-terminal domain of the alpha subunit of RNA polymerase.

44. Identification of two important heme site residues (cysteine 75 and histidine 77) in CooA, the CO-sensing transcription factor of Rhodospirillum rubrum.

45. Resonance Raman evidence for a novel charge relay activation mechanism of the CO-dependent heme protein transcription factor CooA.

46. CooA, a CO-sensing transcription factor from Rhodospirillum rubrum, is a CO-binding heme protein.

47. Characterization of the region encoding the CO-induced hydrogenase of Rhodospirillum rubrum.

48. Perturbation of nifT expression in Klebsiella pneumoniae has limited effect on nitrogen fixation.

49. Purification and characterization of the alternative nitrogenase from the photosynthetic bacterium Rhodospirillum rubrum.

50. Effect of an ntrBC mutation on the posttranslational regulation of nitrogenase activity in Rhodospirillum rubrum.

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