Related Experiment Video
Updated: Aug 18, 2026

Associated Chromosome Trap for Identifying Long-range DNA Interactions
Published on: April 23, 2011
Isolation of discrete repetitive sequence classes from Xenopus DNA by high temperature reassociation
Abstract:
Sequences that did or did not reassociate at 75 dagrees C (stable and unstable, respectively) were isolated from total repetitive Xenopus laevis DNA. Sequence complexities or frequencies were determined by self (minicot) or DNA excess (slave minicot) reassociations at 60 degrees C. Stable sequences were five times shorter and four times more frequent than unstable sequences. Reassociations at 75 degrees C or at 50 degrees C were used to establish apparent sequence frequencies at these criteria. Interspersion curves at either 60 degrees C or 75 degrees C and low Cot reassociation of long fragments of total X. laevis DNA at either 60 degrees C or 75 degrees C, followed by S1 digestion and agarose chromatography, were used to determine genome arrangement of the stable and unstable classes of sequence. Reassociation at high temperature was found to permit the fractionation of repetitive sequences into two populations of differing characteristics.
More Related Videos
09:06High-throughput Identification of Gene Regulatory Sequences Using Next-generation Sequencing of Circular Chromosome Conformation Capture (4C-seq)
Published on: October 5, 2018
05:22Electrophoretic Analysis of Replication Through Structure-Prone DNA Repeats Within the SV40-Based Human Episome
Published on: September 13, 2024
Related Concept Videos
DNA Isolation
Restriction Enzymes
The host bacteria protect their own genomic DNA from these enzymes by methylating these sites. Some...