Peptide, Protein and Enzyme Design

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2016
ISBN13: 9780128053805
Rubricering
Elsevier Science e druk, 2016 9780128053805
Onderdeel van serie Methods in Enzymology
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

De Novo Enzyme Design, the newest volume in the Methods in Enzymology series, continues the legacy of this premier serial with quality chapters authored by leaders in the field. This volume includes the design of metal binding maquettes, insertion of non-natural cofactors, Cu metallopeptides, non-covalent interactions in peptide assemblies, peptide binding and bundling, heteronuclear metalloenzymes, florinated peptides, De Novo imaging agents, and protein-protein interaction.

Specificaties

ISBN13:9780128053805
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>1. Chemical Post-Translational Modification with Designed Rhodium(II) Catalysts<br>Samuel C. Martin, Matthew B. Minus and Zachary T. Ball<br>2. Cell Binding Assays for Determining the Affinity of Protein-Protein Interactions: Technologies and Considerations<br>Sean Hunter and Jennifer Cochran<br>3. Protein and Antibody Engineering by Phage Display<br>Julia C. Frei and Jonathan R. Lai<br>4. Incorporation of Unnatural Amino Acids into Proteins Expressed in Mammalian Cells<br>Robert Serfling and Irene Coin<br>5. Method for Enzyme Design with Genetically Encoded Unnatural Amino Acids<br>Cheng Hu and Jiangyun Wang<br>6. Methods for Solving Highly Symmetric De Novo Designed Metalloproteins: Crystallographic Examination of a Novel Three Stranded Coiled Coil Structure Containing D-Amino Acids<br>Leela Ruckthong, Jeanne A. Stuckey and Vincent L. Pecoraro<br>7. SpyRings Declassified: A Blueprint for using Isopeptide-Mediated Cyclization to Enhance Enzyme Thermal Resilience<br>Christopher Schoene, S. Paul Bennett and Mark Howarth <br>8. Engineering and Application of LOV2-Based Photoswitches<br>Seth Parker Zimmerman, Brian Kuhlman and Hayretin Yumerefendi<br>9. Minimalist Design of Allosterically Regulated Protein Catalysts<br>Olga V. Makhlynets and Ivan V. Korendovych<br>10. Combining Design and Selection to Create Novel Protein-Peptide Interactions<br>Elizabeth B. Speltz, Nicholas Sawyer and Lynne Regan <br>11. Metal-Directed Design of Supramolecular Protein Assemblies<br>Jake B. Bailey, Rohit H. Subramanian, Lewis A. Churchfield and F. Akif Tezcan<br>12. Designing Fluorinated Proteins<br>E. Neil G. Marsh<br>13. Solid Phase Synthesis of Helically Folded Aromatic Oligoamides<br>Simon J. Dawson, Xiaobo Hu, Stijn Claerhout and Ivan Huc<br>14. Conformational Restriction of Peptides Using Dithiol Bis-Alkylation<br>Leila Peraro, Timothy R. Siegert and Joshua A. Kritzer<br>15. Engineering Short Pre-Organized Peptide Sequences for Metal Ion Coordination: Copper(II) a Case Study<br>Luís M. P. Lima and Olga Iranzo<br>16. De Novo Construction of Redox Active Proteins<br>C. C. Moser, M. M Sheehan, N. M. Ennist, G. Kodali, C. Bialas, M. T. Englander, B. M. Discher and P. L. Dutton<br>17. Design Strategies for Redox Active Metalloenzymes: Applications in Hydrogen Production<br>Rafael Alcala-Torano, Dayn Joseph Sommer, Zahra Bahrami Dizicheh and Giovanna Ghirlanda<br>18. Equilibrium Studies of Designed Metalloproteins<br>Brian R. Gibney<br>19. Reconstitution of Heme Enzymes with Artificial Metalloporphyrinoids<br>Koji Oohora and Takashi Hayashi<br>20. Creation of a Thermally Tolerant Peroxidase<br>Yoshihito Watanabe and Hiroshi Nakajima<br>21. Designing Covalently Linked Heterodimeric Four-Helix Bundles<br>Marco Chino, Linda Leone, Ornella Maglio and Angela Lombardi<br>22. Design of Heteronuclear Metalloenzymes<br>Ambika Bhagi-Damodaran,Parisa Hosseinzadeh, Evan Mirts, Julian Reed, Igor D. Petrik and Yi Lu<br>23. Periplasmic Screening for Artificial Metalloenzymes<br>Markus Jeschek, Sven Panke and Thomas R. Ward<br>24. De Novo Designed Imaging Agents Based on Lanthanide Peptides Complexes<br>Anna F. A. Peacock<br>25. Peptide Binding for Bio-Based Nanomaterials<br>Nicholas M. Bedford, Catherine Munro and Marc R. Knecht</p>

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        Peptide, Protein and Enzyme Design