| Literature DB >> 29584891 |
Sook Ho Kim1,2, So-Hee Lim1,3, Ae-Ree Lee4, Do Hoon Kwon1,5, Hyun Kyu Song1,5, Joon-Hwa Lee4, Minhaeng Cho1,3, Albert Johner6,7, Nam-Kyung Lee6,7, Seok-Cheol Hong1,2.
Abstract
Left-handed Z-DNA is an extraordinary conformation of DNA, which can form by special sequences under specific biological, chemical or physical conditions. Human ADAR1, prototypic Z-DNA binding protein (ZBP), binds to Z-DNA with high affinity. Utilizing single-molecule FRET assays for Z-DNA forming sequences embedded in a long inactive DNA, we measure thermodynamic populations of ADAR1-bound DNA conformations in both GC and TG repeat sequences. Based on a statistical physics model, we determined quantitatively the affinities of ADAR1 to both Z-form and B-form of these sequences. We also reported what pathways it takes to induce the B-Z transition in those sequences. Due to the high junction energy, an intermediate B* state has to accumulate prior to the B-Z transition. Our study showing the stable B* state supports the active picture for the protein-induced B-Z transition that occurs under a physiological setting.Entities:
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Year: 2018 PMID: 29584891 PMCID: PMC5934635 DOI: 10.1093/nar/gky200
Source DB: PubMed Journal: Nucleic Acids Res ISSN: 0305-1048 Impact factor: 16.971