The Nucleus [E-Book] / edited by Ronald Hancock.
This detailed new edition delves into recently developed protocols for those working on cell nucleus research, including some of the less well-explored areas of study. Like the previous editions, this book features contributions from top experts in their respective fields. Written for the highly suc...
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Personal Name(s): | Hancock, Ronald, editor |
Edition: |
3rd edition 2020. |
Imprint: |
New York, NY :
Humana Press,
2020
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Physical Description: |
XI, 220 pages 42 illustrations, 30 illustrations in color (online resource) |
Note: |
englisch |
ISBN: |
9781071607633 |
DOI: |
10.1007/978-1-0716-0763-3 |
Series Title: |
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Methods in Molecular Biology ;
2175 |
Subject (ZB): | |
Subject (LOC): | |
Classification: |
- Live-Cell Imaging and Analysis of Nuclear Body Mobility
- Laser Targeted Oligo Ligation (LTOL) to Identify DNA Sequences in the Vicinity of a Single Subnuclear Structure in a Single Cell
- Visualizing Chromatin Modifications in Isolated Nuclei
- Dual-Color Metal-Induced Energy Transfer (MIET) Imaging for Three-Dimensional Reconstruction of Nuclear Envelope Architecture
- Studying Proton Gradients Across the Nuclear Envelope
- COMBinatorial Oligonucleotide FISH (COMBO-FISH) with Uniquely Binding Repetitive DNA Probes
- Genome-Wide Mapping of UV-Induced DNA Damage with CPD-Seq
- AP-Seq: A Method to Measure Apurinic Sites and Small Base Adducts Genome-Wide
- Locus-Specific Chromatin Proteome Revealed by Mass Spectrometry-Based CasID
- Methyl Adenine Identification (MadID): High-Resolution Detection of Protein-DNA Interactions
- Optimized Detection of Protein-Protein and Protein-DNA Interactions, with Particular Application to Plant Telomeres
- Macromolecular Crowding Measurements with Genetically Encoded Probes Based on Förster Resonance Energy Transfer in Living Cells
- Analysis of a Nuclear Intrinsically Disordered Proteome
- Timing of Cytosine Methylation on Newly-Synthesized RNA by Electron Microscopy
- The Nucleus of Intestinal Cells of the Bacterivore Nematode Caenorhabditis elegans as a Sensitive Sensor of Environmental Pollutants.