DNA–Protein Interactions Studied Directly Using Single Molecule Fluorescence Imaging of Quantum Dot Tagged Proteins Moving on DNA Tightropes
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Publisher
Springer New York
Link
http://link.springer.com/content/pdf/10.1007/978-1-4939-3631-1_11
Reference7 articles.
1. Dunn AR, Kad NM, Nelson SR, Warshaw DM, Wallace SS (2011) Single Qdot-labeled glycosylase molecules use a wedge amino acid to probe for lesions while scanning along DNA. Nucleic Acids Res 39:7487–7498
2. Kad NM, Wang H, Kennedy GG, Warshaw DM, Van Houten B (2010) Collaborative dynamic DNA scanning by nucleotide excision repair proteins investigated by single- molecule imaging of quantum-dot-labeled proteins. Mol Cell 37:702–713
3. Wang H, Tessmer I, Croteau DL, Erie DA, Van Houten B (2008) Functional characterization and atomic force microscopy of a DNA repair protein conjugated to a quantum dot. Nano Lett 8:1631–1637
4. Hughes CD, Wang H, Ghodke H, Simons M, Towheed A, Peng Y, Van Houten B, Kad NM (2013) Real-time single-molecule imaging reveals a direct interaction between UvrC and UvrB on DNA tightropes. Nucleic Acids Res 41:4901–4912
5. Berg HC (1993) Random walks in biology. Princeton University Press, Princeton, NJ
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