Direct analysis of Holliday junction resolving enzyme in a DNA origami nanostructure
Author:
Publisher
Oxford University Press (OUP)
Subject
Genetics
Link
http://academic.oup.com/nar/article-pdf/42/11/7421/4232887/gku320.pdf
Reference23 articles.
1. Recombination at Double-Strand Breaks and DNA Ends
2. Rescue of stalled replication forks by RecG: Simultaneous translocation on the leading and lagging strand templates supports an active DNA unwinding model of fork reversal and Holliday junction formation
3. Positive Torsional Strain Causes the Formation of a Four-way Junction at Replication Forks
4. Computer viruses
5. Molecular views of recombination proteins and their control
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1. Minimizing Structural Heterogeneity in DNA Self-Assembled Dye Templating via DNA Origami-Tuned Conformations;Langmuir;2024-05-01
2. DNA digestion and formation of DNA-network structures with Holliday junction-resolving enzyme Hjc_15-6 in conjunction with polymerase reactions;Journal of Biotechnology;2024-04
3. Processing of stalled replication forks in Bacillus subtilis;FEMS Microbiology Reviews;2023-12-05
4. Structural characterization of human de novo protein NCYM and its complex with a newly identified DNA aptamer using atomic force microscopy and small-angle X-ray scattering;Frontiers in Oncology;2023-11-23
5. Atomic force microscopy-based approaches for single-molecule investigation of nucleic acid–protein complexes;Biophysical Reviews;2023-08-26
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