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91 results on '"Hemerythrin metabolism"'

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51. The crystal structures of Phascolopsis gouldii wild type and L98Y methemerythrins: structural and functional alterations of the O2 binding pocket.

52. Oxymyohemerythrin: discriminating between O2 release and autoxidation.

53. The O(2) binding pocket of myohemerythrin: role of a conserved leucine.

54. A leucine residue "Gates" solvent but not O2 access to the binding pocket of phascolopsis gouldii hemerythrin.

55. EPR properties of mixed-valent mu-oxo and mu-hydroxo dinuclear iron complexes produced by radiolytic reduction at 77 K.

56. Dioxygen-activating bio-inorganic model complexes.

57. NADH peroxidase activity of rubrerythrin.

58. Oxygen-carrying proteins: three solutions to a common problem.

59. Functional role of leucine-103 in myohemerythrin.

60. Primary structure of a myohemerythrin-like cadmium-binding protein, isolated from a terrestrial annelid oligochaete.

61. Viscosity dependence of O2 escape from respiratory proteins as a function of cosolvent molecular weight.

62. Predicting molecular interactions and inducible complementarity: fragment docking of Fab-peptide complexes.

63. Resonance Raman study on the active-site structure of a cooperative hemerythrin.

64. Metal substitutions at the diiron sites of hemerythrin and myohemerythrin: contributions of divalent metals to stability of a four-helix bundle protein.

65. Two distinct subunits of hemerythrin from the brachiopod Lingula reevii: an apparent requirement for cooperativity in O2 binding.

67. Learning from the immune system: laboratory methods for creating and refining molecular diversity in polypeptides.

68. Conformational fluctuations and protein reactivity. Determination of the rate-constant spectrum and consequences in elementary biochemical processes.

69. The role of viscosity in oxygen binding to respiratory proteins.

70. Raman and infrared spectroscopy of the oxo-bridged iron(III) complex, [Cl3Fe-O-FeCl3]-2 as a spectroscopic model for the oxo bridge in hemerythrin and ribonucleotide reductase.

71. Cytochrome b5 and NADH-cytochrome-b5 reductase from sipunculan erythrocytes; a methemerythrin reduction system from Phascolopsis gouldii.

72. Reaction of hemerythrin with disulfides.

73. Comparisons of redox kinetics of methemerythrin and mu-sulfidomethemerythrin. Implications for interactions with cytochrome b5.

74. Role of mixed oxidation states in the oxidation of hemerythrin species by ferricyanide ion.

75. Semi-met oxidation level of chalcogenide derivatives of methemerythrin. Mössbauer and EPR studies.

76. Hydroxide ion binding to methemerythrin. An investigation by resonance Raman and difference spectroscopy.

77. Oxidation state of binuclear iron site in azidosemimethemerythrin.

78. Isolation and characterization of rubrerythrin, a non-heme iron protein from Desulfovibrio vulgaris that contains rubredoxin centers and a hemerythrin-like binuclear iron cluster.

79. Auto-oxidation of Lingula unguis and Siphonosoma cumanense hemerythrins induced by some perturbants.

80. Allosteric interactions in sipunculid and brachiopod hemerythrins.

81. Reduction of methemerythrin by deoxymyoglobin: a protein-protein redox reaction not involving electron-transfer proteins.

82. The interaction of hemerythrin with sodium dodecyl sulfate and the release of iron from the product with desferrioxamine B.

83. [Hemerythrin].

84. Circulating respiratory pigments in marine animals.

85. Oxidation of deoxyhemerythrin to semi-methemerythrin by nitrite.

86. Hemerythrin: alternative oxygen carrier.

87. Some redox properties of myohemerythrin from retractor muscle of Themiste zostericola.

88. Underwater life support based on immobilized oxygen carriers.

89. Dissociation and auto-oxidation of hemerythrin induced by SH-modification: a kinetic study.

90. Acid-assisted anion interaction with deoxyhemerythrin.

91. Nitric oxide adducts of the binuclear iron site of hemerythrin: spectroscopy and reactivity.

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