DNA Repair : Methods and Protocols /
Corporate Author: | |
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Other Authors: | , |
Format: | eBook |
Language: | English |
Published: |
New York, NY :
Springer New York : Imprint: Humana,
2019.
|
Edition: | 1st ed. 2019. |
Series: | Methods in Molecular Biology,
1999 |
Subjects: |
Table of Contents:
- Homologous Recombination-Mediated DNA Repair and Implications for Clinical Treatment of Repair Defective Cancers
- Resolving Roadblocks to Telomere Replication
- In Time and Space: Laser Micro-Irradiation and the DNA Damage Response
- Quantification of Double Strand Breaks in Mammalian Cells using Pulsed-Field Electrophoresis
- Methods to Study Trinucleotide Repeat Instability Induced by DNA Damage and Repair
- Extracting and Measuring dNTP Pools in Saccharomyces cerevisiae
- Conversion Tract Analysis of Homology-Directed Genome Editing using Oligonucleotide Donors
- Reporter Assays for BER Pathways
- Methods for Studying DNA Single-Strand Break Repair and Signaling in Xenopus laevis Egg Extracts
- Chromatin Immunoprecipitation (ChIP) of Plasmid-Bound Proteins in Xenopus Egg Extracts
- Cellular Assays to Study the Functional Importance of Human DNA Repair Helicases
- A Mammalian Genetic Complementation Assay for Assessing Cellular Resistance to Genotoxic Compounds
- Small Molecule Inhibitor Screen for DNA Repair Proteins
- Assembling the Human Resectosome on DNA Curtains
- Thin-Layer Chromatography and Real-Time Coupled Assays to Measure ATP Hydrolysis
- Gel-Based Assays for Measuring DNA Unwinding, Annealing, and Strand Exchange
- In Vitro Assay for Plasmid Length DNA Strand Exchange by Human DMC1
- In Vitro Assays for DNA Branch Migration
- Stabilization of Human DMC1 Nucleoprotein Filament
- Measuring UV Photoproduct Repair in Isolated Telomeres and Bulk Genomic DNA
- Single-Molecule DNA Fiber Analyses to Characterize Replication Fork Dynamics in Living Cells
- Direct Visualization of DNA Replication at Telomeres using DNA Fiber Combing Combined with Telomere FISH
- Telomere and G-Quadruplex Co-Localization Analysis by Immunofluorescence-Fluorescence In Situ Hybridization (IF-FISH)
- FISHing for Damage on Metaphase Chromosomes.