How a protein binds B12: A 3.0 A X-ray structure of B12-binding domains of methionine synthase.
暂无分享,去创建一个
R. Matthews | C. Drennan | C L Drennan | R G Matthews | S. Huang | S Huang | J T Drummond | M L Lidwig | J. Drummond | M. L. Ludwig
[1] Randy J. Read,et al. Improved Fourier Coefficients for Maps Using Phases from Partial Structures with Errors , 1986 .
[2] I. Old,et al. Nucleotide sequence of the metH gene of Escherichia coli K-12 and comparison with that of Salmonella typhimurium LT2. , 1990, Gene.
[3] W. Fenton,et al. Cloning of full-length methylmalonyl-CoA mutase from a cDNA library using the polymerase chain reaction. , 1989, Genomics.
[4] R. Matthews,et al. Electrospray mass spectrometric analysis of the domains of a large enzyme: observation of the occupied cobalamin-binding domain and redefinition of the carboxyl terminus of methionine synthase. , 1993, Biochemistry.
[5] D. Hodgkin,et al. The structure of Vitamin B12 VI. The structure of crystals of vitamin B12 grown from and immersed in water , 1964, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[6] F. M. Huennekens,et al. Activation of methionine synthetase by a reduced triphosphopyridine nucleotide-dependent flavoprotein system. , 1974, The Journal of biological chemistry.
[7] D. Rousseau,et al. Hydrogen bonding of iron-coordinated histidine in heme proteins. , 1992, Journal of structural biology.
[8] W. Kabsch,et al. Dictionary of protein secondary structure: Pattern recognition of hydrogen‐bonded and geometrical features , 1983, Biopolymers.
[9] G. Vriend,et al. Rubredoxin reductase of Pseudomonas oleovorans. Structural relationship to other flavoprotein oxidoreductases based on one NAD and two FAD fingerprints. , 1990, Journal of molecular biology.
[10] Joyce M. Cox,et al. Mathematical methods used in the comparison of the quaternary structures , 1967 .
[11] M. Chance,et al. Formation of a square-planar Co(I) B12 intermediate. Implications for enzyme catalysis. , 1992, Biophysical journal.
[12] D. E. Holloway,et al. Cloning and sequencing of glutamate mutase component S from Clostridium tetanomorphum Homologies with other cobalamin‐dependent enzymes , 1992, FEBS letters.
[13] C. Cambillau,et al. TOM: a FRODO subpackage for protein-ligand fitting with interactive energy minimization , 1988 .
[14] M. Summers,et al. The structure of a B12 coenzyme: methylcobalamin studies by x-ray and NMR methods , 1985 .
[15] N. Xuong,et al. The crystal structure of cytochrome c peroxidase. , 1980, The Journal of biological chemistry.
[16] K. Trueblood,et al. The structure of vitamin B12. I. An outline of the crystallographic investigation of vitamin B12 , 1957, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[17] G. Schrauzer,et al. Reactions of cobalt(I) supernucleophiles. The alkylation of vitamin B12s cobaloximes(I), and related compounds. , 1969, Journal of the American Chemical Society.
[18] K. Trueblood,et al. Structure of Vitamin B12 , 1956, Nature.
[19] P. Lenhert. The structure of vitamin B12 - VII. The X-ray analysis of the vitamin B12 coenzyme , 1968, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[20] R. Blumenthal,et al. Assignment of enzymatic function to specific protein regions of cobalamin-dependent methionine synthase from Escherichia coli. , 1993, Biochemistry.
[21] S. Takamuku,et al. MECHANISTIC EVALUATION OF DISSOCIATIVE ELECTRON-TRANSFER AND NUCLEOPHILIC SUBSTITUTION REACTIONS , 1994 .
[22] P. Kraulis. A program to produce both detailed and schematic plots of protein structures , 1991 .
[23] R. Matthews,et al. Cloning and sequence analysis of the Escherichia coli metH gene encoding cobalamin-dependent methionine synthase and isolation of a tryptic fragment containing the cobalamin-binding domain. , 1989, The Journal of biological chemistry.
[24] N L Harris,et al. Four helix bundle diversity in globular proteins. , 1994, Journal of molecular biology.
[25] David Eisenberg,et al. Unbiased three-dimensional refinement of heavy-atom parameters by correlation of origin-removed Patterson functions , 1983 .
[26] J. Zou,et al. Improved methods for building protein models in electron density maps and the location of errors in these models. , 1991, Acta crystallographica. Section A, Foundations of crystallography.
[27] J. Savéant,et al. Single electron transfer and nucleophilic substitution. Reaction of alkyl bromides with aromatic anion radicals and low-oxidation-state iron porphyrins , 1988 .
[28] M. Summers,et al. A very long cobalt to nitrogen bond in a coenzyme B12 model. Relevance to the role of the 5,6-dimethylbenzimidazole in cobalt-carbon bond cleavage in coenzyme B12 , 1983 .
[29] R. Matthews,et al. Isolation, cloning, mapping, and nucleotide sequencing of the gene encoding flavodoxin in Escherichia coli , 1991, Journal of bacteriology.
[30] K. Trueblood,et al. The structure of vitamin B12. II. The crystal structure of a hexacarboxylic acid obtained by the degradation of vitamin B12 , 1959, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[31] R. Matthews,et al. Mechanism of reductive activation of cobalamin-dependent methionine synthase: an electron paramagnetic resonance spectroelectrochemical study. , 1990, Biochemistry.
[32] K D Watenpaugh,et al. Comparison of the crystal structures of a flavodoxin in its three oxidation states at cryogenic temperatures. , 1993, Journal of molecular biology.
[33] M. Summers,et al. Unusual bond lengths, conformations, and ligand exchange rates in B12 models with the bis(salicylidene)-o-phenylenediamine equatorial ligand , 1984 .
[34] P. Leadlay,et al. Crystallization and preliminary diffraction data for adenosylcobalamin-dependent methylmalonyl-CoA mutase from Propionibacterium shermanii. , 1988, Journal of molecular biology.
[35] R. Matthews,et al. Nitrous oxide degradation by cobalamin-dependent methionine synthase: characterization of the reactants and products in the inactivation reaction. , 1994, Biochemistry.
[36] K. Trueblood,et al. The structure of vitamin B12 V. The structure of the air-dried crystals of vitamin B12 , 1962, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[37] J. Richardson,et al. Determination and analysis of the 2 A-structure of copper, zinc superoxide dismutase. , 1980, Journal of molecular biology.
[38] J. Savéant,et al. The electrochemistry of vitamin B12 , 1983 .
[39] D. Hodgkin,et al. Structure of the 5,6-Dimethylbenzimidazolylcobamide Coenzyme , 1961, Nature.
[40] P. Leadlay,et al. Adenosylcobalamin-dependent methylmalonyl-CoA mutase from Propionibacterium shermanii. Active holoenzyme produced from Escherichia coli. , 1990, The Biochemical journal.
[41] B. Kräutler. Thermodynamic trans-effects of the nucleotide base in the B12 coenzymes , 1987 .
[42] F. M. Huennekens,et al. Activation of methionine synthase: further characterization of flavoprotein system. , 1977, Archives of biochemistry and biophysics.
[43] G. Schulz. Binding of nucleotides by proteins , 1992, Current Biology.
[44] R. Matthews,et al. Crystallization and preliminary X-ray diffraction studies of the cobalamin-binding domain of methionine synthase from Escherichia coli. , 1992, Journal of molecular biology.