Chromosome architecture : methods and protocols /
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Edition: | Second edition. |
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Imprint: | New York : Humana Press, [2022] |
Description: | 1 online resource (1 PDF file (xi, 330 pages)) : illustrations (chiefly color). |
Language: | English |
Series: | Methods in molecular biology, 1940-6029 ; 2476 Springer protocols Methods in molecular biology (Clifton, N.J.) ; v. 2476. Springer protocols (Series) |
Subject: | |
Format: | E-Resource Book |
URL for this record: | http://pi.lib.uchicago.edu/1001/cat/bib/13437718 |
Table of Contents:
- A Next Generation of Advances in Chromosome Architecture
- Single Molecule Narrowfield Microscopy of Protein-DNA Binding Dynamics in Glucose Signal Transduction of Live Yeast Cells
- Convolutional Neural Networks for Classifying Chromatin Morphology in Live Cell Imaging
- Fluorescence Recovery After Photobleaching (FRAP) to Study Dynamics of the Structural Maintenance of Chromosome (SMC) Complex in Live Escherichia coli Bacteria
- Atomic Force Microscopy of DNA and DNA-Protein Interactions
- Live-Cell Visualization of DNA Transfer and Pilus Dynamics during Bacterial Conjugation
- Transverse Magnetic Tweezers Allowing Coincident Epi-Fluorescence Microscopy on Horizontally Extended DNA
- Atomistic Molecular Dynamics Simulations of DNA in Complex 3D Arrangements for Comparison with Lower Resolution Structural Experiments
- Replication Labeling Methods for Super-Resolution Imaging of Chromosome Territories and Chromatin Domains
- DNA-Protein Interactions Studied Directly Using iSCAT Imaging of GNP-Tagged Proteins
- Escherichia coli Chromosome Copy Number Measurement Using Flow Cytometry Analysis
- Dynamics of Bacterial Chromosomes by Locus Tracking in Fluorescence Microscopy
- Measuring Nuclear Mechanics with Atomic Force Microscopy
- Copy Number Analysis of the Yeast Histone Deacetylase Complex Component Cti6 Directly in Living Cells
- Super-Resolution Microscopy and Tracking of DNA-Binding Proteins in Bacterial Cells
- Studying the Dynamics of Chromatin-Binding Proteins in Mammalian Cells Using Single-Molecule Localization Microscopy
- The End Restraint Method for Mechanically Perturbing Nucleic Acids In Silico
- Visualizing the Replisome, Chromosome Breaks, and Replication Restart in Bacillus subtilis
- High-Throughput Imaging of Bacillus subtilis
- Measuring Nuclear Organization of Proteins with STORM Imaging and Cluster Analysis
- Single-Molecular Quantification of Flowering Control Proteins within Nuclear Condensates in Live Whole Arabidopsis Root.