Iron in PDB, part 54 (files: 2121-2160),
PDB 1yqp-1zj9
Experimental structures of coordination spheres of Iron (Fe) in bioorganic
molecules from X-Ray and NMR experiments. Coordination spheres were calculated with 5.0 Angstroms radius
around Iron atoms. PDB files: 2121-2160 (PDB 1yqp-1zj9).
-
1yqp (Fe: 2) - T268N Mutant Cytochrome Domain of Flavocytochrome P450 BM3
-
1yqw (Fe: 39) - Structure of the Oxidized Unready Form of Ni-Fe Hydrogenase
Other atoms:
Ni (3);
Mg (3);
-
1yrc (Fe: 1) - X-Ray Crystal Structure of Hydrogenated Cytochrome P450CAM
Other atoms:
K (1);
-
1yrd (Fe: 1) - X-Ray Crystal Structure of Perdeuterated Cytochrome P450CAM
Other atoms:
K (1);
-
1yrq (Fe: 144) - Structure of the Ready Oxidized Form of [Nife]-Hydrogenase
Other atoms:
Ni (12);
Mg (12);
-
1ytc (Fe: 1) - Thermodynamic Cycles As Probes of Structure-Function Relationships in Unfolded Proteins
-
1yux (Fe: 6) - Mixed Valant State of Nigerythrin
-
1yuz (Fe: 6) - Partially Reduced State of Nigerythrin
-
1yv1 (Fe: 6) - Fully Reduced State of Nigerythrin (All Ferrous)
-
1yvq (Fe: 4) - The Low Salt (Peg) Crystal Structure of Co Hemoglobin E (BETAE26K) Approaching Physiological pH (pH 7.5)
-
1yvt (Fe: 2) - The High Salt (Phosphate) Crystal Structure of Co Hemoglobin E (GLU26LYS) at Physiological pH (pH 7.35)
-
1ywa (Fe: 1) - 0.9 A Structure of NP4 From Rhodnius Prolixus Complexed with Co at pH 5.6
-
1ywb (Fe: 1) - 0.9 A Structure of NP4 From Rhodnius Prolixus Complexed with No at pH 5.6
-
1ywc (Fe: 1) - Structure of the Ferrous Co Complex of NP4 From Rhodnius Prolixus at pH 7.0
-
1ywd (Fe: 1) - 1.08 A Structure of Ferrous NP4 (Aquo Complex)
-
1yyd (Fe: 1) - High Resolution Crystal Structure of Manganese Peroxidase
Other atoms:
Mn (1);
Ca (2);
-
1yyg (Fe: 1) - Manganese Peroxidase Complexed with Cd(II) Inhibitor
Other atoms:
Ca (3);
Na (1);
-
1yzi (Fe: 2) - A Novel Quaternary Structure of Human Carbonmonoxy Hemoglobin
-
1yzp (Fe: 1) - Substrate-Free Manganese Peroxidase
Other atoms:
Ca (2);
-
1yzr (Fe: 1) - Manganese Peroxidase-Sm(III) Complex
Other atoms:
Sm (1);
Ca (2);
-
1z01 (Fe: 18) - 2-Oxoquinoline 8-Monooxygenase Component: Active Site Modulation By Rieske-[2FE-2S] Center Oxidation/Reduction
-
1z02 (Fe: 18) - 2-Oxoquinoline 8-Monooxygenase Component: Active Site Modulation By Rieske-[2FE-2S] Center Oxidation/Reduction
-
1z03 (Fe: 18) - 2-Oxoquinoline 8-Monooxygenase Component: Active Site Modulation By Rieske-[2FE-2S] Center Oxidation/Reduction
-
1z10 (Fe: 4) - Crystal Structure of Human Microsomal P450 2A6 with Coumarin Bound
-
1z11 (Fe: 4) - Crystal Structure of Human Microsomal P450 2A6 with Methoxsalen Bound
-
1z1n (Fe: 16) - Crystal Structure of the Sixteen Heme Cytochrome From Desulfovibrio Gigas
Other atoms:
Zn (3);
-
1z6o (Fe: 16) - Crystal Structure of Trichoplusia Ni Secreted Ferritin
Other atoms:
Ca (8);
-
1z8o (Fe: 1) - Ferrous Dioxygen Complex of the Wild-Type Cytochrome P450ERYF
-
1z8p (Fe: 1) - Ferrous Dioxygen Complex of the A245S Cytochrome P450ERYF
-
1z8q (Fe: 1) - Ferrous Dioxygen Complex of the A245T Cytochrome P450ERYF
-
1z8u (Fe: 2) - Crystal Structure of Oxidized Alpha Hemoglobin Bound to Ahsp
-
1z9j (Fe: 1) - Photosynthetic Reaction Center From Rhodobacter Sphaeroides
Other atoms:
Mg (4);
Mn (1);
-
1z9k (Fe: 1) - Photosynthetic Reaction Center From Rhodobacter Sphaeroides
Other atoms:
Mg (4);
Mn (1);
-
1z9n (Fe: 2) - X-Ray Structure of A Cu-Zn Superoxide Dismutase From Haemophilus Ducreyi with Haem Bound at the Dimer Interface
Other atoms:
Cu (4);
Zn (4);
-
1za5 (Fe: 2) - Q69H-Fesod
-
1zby (Fe: 1) - High-Resolution Crystal Structure of Native (Resting) Cytochrome C Peroxidase (Ccp)
-
1zbz (Fe: 1) - High-Resolution Crystal Structure of Compound I Intermediate of Cytochrome C Peroxidase (Ccp)
-
1zgn (Fe: 2) - Crystal Structure of the Glutathione Transferase Pi in Complex with Dinitrosyl-Diglutathionyl Iron Complex
-
1zj8 (Fe: 10) - Structure of Mycobacterium Tuberculosis Nira Protein
Other atoms:
Cl (2);
-
1zj9 (Fe: 10) - Structure of Mycobacterium Tuberculosis Nira Protein
Other atoms:
Cl (2);
Page generated: Wed Nov 13 09:39:29 2024
|