Description
Fe-S Cluster Enzymes Part A
Language: EnglishSubjects for Fe-S Cluster Enzymes Part A:
Keywords
2-Methyltryptophanspi1; ABC transporter; Circular dichroism; Cluster disassembly; Cluster repair; Cluster transfer; Cross-linkedspi1 species; Cross-linkingspi1; Crystallography; Cytosolic aconitase; DNA charge transport; DNA replication; Electron microscopy; Electron paramagnetic resonance spectroscopy; FeS cluster biogenesis; FeS cluster homeostasis; Fe-spi1S cluster assembly; Fluorescence anisotropy; Frataxin; Glutathione; GST spi1pull-downspi1 assay; In crystallo; Iron; Iron limitation; Iron-spi1sulfur cluster; Iron-spi1sulfur cluster transfer; Iron-spi1sulfur clusters; J-proteinspi1 Hsc20; Liposome; Mass spectrometry; Methylase; Methylcobalamin; Mitochondria; MitoNEET; Nuclear magnetic resonance; Nuclear magnetic resonance spectroscopy; Oxidative stress; Polymerases; Primase; Protein purification; Protein-spi1protein interaction; Protein-spi1protein interactions; Radical; Radical SAM enzymes; Reaction intermediates; RNA polymerase; S-Adenosylmethionine; Single-particlespi1 reconstruction; siRNA; Spectroscopic methods; Stress adaptation; Structure; SUMO; Trafficking; Tryptophan; UV-spi1visible absorption spectroscopy; X-rayspi1 crystallography; Yeast
Support: Print on demand
Description
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Fe-S Cluster Enzymes, Part A, Volume 595 is the first of two volumes focused on Fe-S cluster enzymes. New topics of note in this series include Electrochemistry of Fe/S Proteins, Genetic, biochemical and biophysical methods for studying Fe-S proteins and their assembly, Fluorescent reporters to track Fe-S cluster assembly and transfer reactions, Mechanism-based strategies for structural characterization of radical SAM reaction intermediates, Purification and Characterization of Recalcitrant Cobalamin-Dependent Radical S-adenosylmethionine Methylases, A polymerase with potential: the Fe-S cluster in Human DNA Primase, In Vitro Studies of Cellular Iron-sulfur Cluster Biosynthesis, Trafficking and Transport, and Fe-S cluster Hsp70 Chaperones: the ATPase cycle and protein interactions.
1. De Novo Design of Iron–Sulfur Proteins Zahra B. Dizicheh, Nicholas Halloran, William Asma and Giovanna Ghirlanda 2. In Vitro Studies of Cellular Iron–Sulfur Cluster Biosynthesis, Trafficking, and Transport Christine Wachnowsky and J.A. Cowan 3. A Polymerase With Potential: The Fe–S Cluster in Human DNA Primase Marilyn E. Holt, Lauren E. Salay and Walter J. Chazin 4. Combined Biochemical, Biophysical, and Cellular Methods to Study Fe–S Cluster Transfer and Cytosolic Aconitase Repair by MitoNEET Cécile Mons, Ioana Ferecatu, Sylvie Riquier, Ewen Lescop, Cécile Bouton and Marie-Pierre Golinelli-Cohen 5. Defining the Architecture of the Core Machinery for the Assembly of Fe–S Clusters in Human Mitochondria O. Gakh, W. Ranatunga, B.K. Galeano, D.S. Smith IV, J.R. Thompson and G. Isaya 6. Fe–S Cluster Hsp70 Chaperones: The Atpase Cycle and Protein Interactions Rafal Dutkiewicz, Malgorzata Nowak, Elizabeth A. Craig and Jaroslaw Marszalek 7. B. subtilis as a Model for Studying the Assembly of Fe–S Clusters in Gram-Positive Bacteria Patricia C. Dos Santos 8. Genetic, Biochemical, and Biophysical Methods for Studying Fe–S Proteins and Their Assembly S. Ollagnier-de Choudens and F. Barras 9. Structural Characterization of Poised States in the Oxygen Sensitive Hydrogenases and Nitrogenases Jacob H. Artz, Oleg A. Zadvornyy, David W. Mulder, Paul W. King and John W. Peters 10. Nitrogenase Assembly: Strategies and Procedures Nathaniel S. Sickerman, Yilin Hu and Markus W. Ribbe 11. TsrM as a Model for Purifying and Characterizing Cobalamin-Dependent Radical S-Adenosylmethionine Methylases Anthony J. Blaszczyk, Roy X. Wang and Squire J. Booke 12. Mechanism-Based Strategies for Structural Characterization of Radical SAM Reaction Intermediates K.M. Davis and A.K. Boal
- Contain contributions from leading authorities on enzymology
- Informs and updates on all the latest developments in the field
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