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3. M.tuberculosis nitrobindin with a water molecule coordinated to the heme iron atom

4. M.tuberculosis nitrobindin with a cyanide molecule coordinated to the heme iron atom

7. Resonance Raman and fluorescence spectra of 1.8 dihydroxyanthraquinone in n-alkanes at low temperature. Evidence for excited state proton transfer.

12. Peroxidase-benzhydroxamic acid complexes: spectroscopic evidence that a Fe-H2O distance of 2.6 Å can correspond to hexa-coordinate high-spin heme.

13. Resonance Raman characterization of the di-heme protein cytochrome c4 from Pseudomonas stutzeri.

16. Comment on “Sensitive marker bands for the detection of spin states of heme in surface-enhanced resonance Raman scattering spectra of metmyoglobin” by Y. Kitahama, M. Egashira, T. Suzuki, I. Tanabe and Y. Ozaki.

36. Entrance channels to coproheme in coproporphyrin ferrochelatase probed by exogenous imidazole binding.

37. Proximal ligand tunes active site structure and reactivity in bacterial L. monocytogenes coproheme ferrochelatase.

38. Revisiting catalytic His and Glu residues in coproporphyrin ferrochelatase - unexpected activities of active site variants.

39. Nitrobindin versus myoglobin: A comparative structural and functional study.

40. Iron insertion into coproporphyrin III-ferrochelatase complex: Evidence for an intermediate distorted catalytic species.

41. The role of the distal cavity in carbon monoxide stabilization in the coproheme decarboxylase enzyme from C. diphtheriae.

42. The Role of the Hydrogen Bond Network in Maintaining Heme Pocket Stability and Protein Function Specificity of C. diphtheriae Coproheme Decarboxylase.

43. Active site architecture of coproporphyrin ferrochelatase with its physiological substrate coproporphyrin III: Propionate interactions and porphyrin core deformation.

44. Nitrosylation of ferric zebrafish nitrobindin: A spectroscopic, kinetic, and thermodynamic study.

45. Dissociation of the proximal His-Fe bond upon NO binding to ferrous zebrafish nitrobindin.

46. Probing the Role of Murine Neuroglobin CDloop-D-Helix Unit in CO Ligand Binding and Structural Dynamics.

47. Spectroscopic evidence of the effect of hydrogen peroxide excess on the coproheme decarboxylase from actinobacterial Corynebacterium diphtheriae .

48. An active site at work - the role of key residues in C. diphteriae coproheme decarboxylase.

49. Substrate specificity and complex stability of coproporphyrin ferrochelatase is governed by hydrogen-bonding interactions of the four propionate groups.

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