DNA Repair Enzymes: Structure, Biophysics, and Mechanism

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2017
ISBN13: 9780128125151
Rubricering
Elsevier Science e druk, 2017 9780128125151
Onderdeel van serie Methods in Enzymology
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

DNA Repair Enzymes, Part B, Volume 592 is the latest volume in the Methods in Enzymology series and the first part of a thematic that focuses on DNA Repair Enzymes. Topics in this updated volume include MacroBac: New Technologies for Robust and Efficient Large-Scale Production of Recombinant Multiprotein Complexes, Production and Assay of Recombinant Multisubunit Chromatin Remodeling Complexes, Analysis of Functional Dynamics of Modular Multidomain Proteins by SAXS and NMR, the Use of Single-Cysteine Variants for Trapping Transient States in DNA Mismatch Repair, and Structural Studies of RNases H2 as an Example of Crystal Structure Determination of Protein-Nucleic Acid Complexes.

Specificaties

ISBN13:9780128125151
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>1. MacroBac: New Technologies for Robust and Efficient Large-Scale Production of Recombinant Multiprotein Complexes<br>Scott D. Gradia, Justin P. Ishida, Miaw-Sheue Tsai, Chris Jeans, John A. Tainer and Jill O. Fuss<br>2. Production and Assay of Recombinant Multisubunit Chromatin Remodeling Complexes<br>David M. Rees, Oliver Willhoft, Chia-Liang Lin, Rohan Bythell-Douglas and Dale B. Wigley<br>3. Analysis of Functional Dynamics of Modular Multidomain Proteins by SAXS and NMR<br>Matthew K. Thompson, Aaron C. Ehlinger and Walter J. Chazin<br>4. Use of Single-Cysteine Variants for Trapping Transient States in DNA Mismatch Repair<br>Peter Friedhoff, Laura Manelyte, Luis Giron-Monzon, Ines Winkler, Flora Groothuizen and Titia K. Sixma<br>5. Expression and Structural Analyses of Human DNA Polymerase θ (POLQ)<br>Andrew W. Malaby, Sara K. Martin, Richard D. Wood and Sylvie Doublié<br>6. Structural Studies of RNases H2 as an Example of Crystal Structure Determination of Protein-Nucleic Acid Complexes<br>Małgorzata Figiel and Marcin Nowotny<br>7. DNA-PKcs, Allostery, and DNA Double-Strand Break Repair: Defining the Structure and Setting the Stage<br>Dimitri Y. Chirgadze, David B. Ascher, Tom L. Blundell and Bancinyane L. Sibanda<br>8. Single-Particle Electron Microscopy Analysis of DNA Repair Complexes<br>Marta Sawicka, Ricardo Aramayo, Rafael Ayala, Robert Glyde and Xiaodong Zhang<br>9. Using Atomic Force Microscopy to Characterize the Conformational Properties of Proteins and Protein-DNA Complexes that Carry Out DNA Repair<br>Sharonda LeBlanc, Hunter Wilkins, Zimeng Li, Parminder Kaur, Hong Wang and Dorothy A. Erie<br>10. Single-Molecule Methods for Nucleotide Excision Repair: Building a System to Watch Repair in Real Time<br>Muwen Kong, Emily C. Beckwitt, Luke Springall, Neil M. Kad and Bennett Van Houten<br>11. Next-Generation DNA Curtains for Single-Molecule Studies of Homologous Recombination<br>Michael M. Soniat, Logan R. Myler, Jeffrey M. Schaub, Yoori Kim, Ignacio F. Gallardo and Ilya J. Finkelstein<br>12. Detection of Reaction Intermediates in Mg2+-Dependent DNA Synthesis and RNA Degradation by Time-Resolved X-Ray Crystallography<br>Nadine Samara, Yang Gao, Jinjun Wu and Wei Yang<br>13. Analyzing the Catalytic Activities and Interactions of Eukaryotic Translesion Synthesis Polymerases<br>Kyle T. Powers and M.T. Washington<br>14. Kinetic Methods for Studying DNA Glycosylases Functioning in Base Excision Repair<br>Christopher T. Coey and Alexander C. Drohat<br>15. Transient Kinetic Methods for Mechanistic Characterization of DNA Binding and Nucleotide Flipping<br>Jenna M. Hendershot and Patrick J. O’Brien<br>16. What Combined Measurements from Structures and Imaging Tell Us About DNA Damage Responses<br>Chris A. Brosey, Zamal Ahmed, Susan P. Lees-Miller and John A. Tainer</p>

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        DNA Repair Enzymes: Structure, Biophysics, and Mechanism