222 results on '"Kräutler B"'
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2. Single, double and triple ionization of tetraphenyl iron(III) porphyrin chloride
3. Fortschritte der Chemie organischer Naturstoffe / Progress in the Chemistry of Organic Natural Products
4. Conformational Change of a Tryptophan Residue in BtuF Facilitates Binding and Transport of Cobinamide by the Vitamin B12 Transporter BtuCD-F
5. Access to organometallic arylcobaltcorrins through radical synthesis: 4-Ethylphenylcobalamin, a potential 'antivitamin B'
6. The corrin moiety of coenzyme B12 is the determinant for switching the btuB riboswitch of E. coli
7. The Structure of Co(II)-Corrins - ‘Nature’s Traps’ for Organic Radicals
8. A gatekeeper helix determines the substrate specificity of Sjögren–Larsson Syndrome enzyme fatty aldehyde dehydrogenase
9. Chlorophyll breakdown in higher plants.
10. Dark Porphyrins
11. Vitamin B12: chemistry and biochemistry
12. Book Review: Heme, Chlorophyll, and Bilins Methods and Protocols. Edited by Alison G. Smith and Michael Witty
13. Unravelling chlorophyll catabolism in higher plants
14. B12‐Coenzymes, the Central Theme
15. Coenzyme B12-Based Chemical Precedent for Co-C Bond Homolysis and Other Key Elementary Steps.
16. Adenosylcobalamin-Dependent Ribonucleotide Reductases: Still Amazing but No Longer Confusing.
17. Tritium Isotope Effects and Site-Directed Mutagenesis as Probes of the Reaction Catalysed by Methylmalonyl-CoA Mutase.
18. Corrinoid-Dependent Methyl Transfer Reactions in Sporomusa ovata.
19. Frontmatter.
20. Model Studies for the Methylmalonyl-Succinyl Rearrangement.
21. EPR Spectroscopic Evidence That in the Energy Conserving Methyltransferase Complex from Methanogenic Archaea a Histidine Residue is Ligated to the Cobamide-Cobalt.
22. Cobalamin-Dependent Methionine Synthase from Escherichia coli: Structure and Reactivity.
23. FT-Raman Spectroscopy of Methyl-B12 and of Imidazole and Imidazolate Methylcobinamide Derivatives.
24. Subject Index.
25. B12-Biosynthesis in an Aerobic Organism: How the Pathway was Elucidated.
26. Insights on the Reaction Mechanism of Methyl-malonyl-CoA mutase from the Crystal Structure.
27. Cobalamin Binding Proteins.
28. The Intrinsic Factor-Cobalamin Receptor Expressed by Yolk Sac and Proximal Tubule Epithelial Cells is the Target of Teratogenic Antibodies.
29. New Structural and Biosynthetic Aspects of the Unusual Core Lipids from Archaebacteria.
30. Coenzyme B12-Dependent Enzymes and Their Models.
31. Recent Structure-Function Studies of B12 Coenzymes in Diol Dehydrase.
32. The Biosynthesis of Vitamin B12 : Assembly of the Tetrapyrrole Ring System.
33. A Mechanistic Overview of B12-dependent Processes.
34. Glutamate Mutase.
35. The Role of S-Adenosylmethionine as a Poor Man's Adenosylcobalamin in the Reaction of Lysine 2,3-Aminomutase.
36. Insight Into the Mechanism of B12 Dependent Enzymes: Magnetic Field Effects as a Probe of Reaction Mechanism and the Role of the Ribofuranose Ring Oxygen.
37. List of Abbreviations.
38. Mechanisms of Coenzyme B12-Dependent Carbon-Carbon and Carbon-Oxygen Rearrangements.
39. How Nature Synthesizes B12 Without Oxygen. Discoveries Along the Ancient, Anaerobic Pathway.
40. Spectroscopic and Molecular Genetic Characterization of the Two Mammalian Blz-dependent Enzymes.
41. Investigations on the Biosynthesis of the 5,6-Dimethylbenzimidazole Moiety of Vitamin B12.
42. Discovery of a Biological Organometallic Reaction Sequence Involving Vitamin B12.
43. Solution structure of the carboxyl-terminal LIM domain from quail cysteine-rich protein CRP2.
44. The key step in chlorophyll breakdown in higher plants. Cleavage of pheophorbide a macrocycle by a monooxygenase.
45. Structure of cysteine- and glycine-rich protein CRP2. Backbone dynamics reveal motional freedom and independent spatial orientation of the lim domains.
46. Cellular Surface Receptors Important for Vitamin B12 Nutrition.
47. B12-Nomenclature and a Suggested Atom-Numbering.
48. New NMR Structural and Dynamical Probes of Organometallic B12 Derivatives.
49. Isobutyryl-CoA Mutase from Streptomycetes.
50. Vitamin B12 Biosynthesis in Pseudomonas denitrificans.
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