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Concerted dynamics of metallo-base pairs in an A/B-form helical transition

Authors :
Schmidt, Olivia P
Jurt, Simon
Johannsen, Silke; https://orcid.org/0000-0001-7973-8996
Karimi, Ashkan
Sigel, Roland K O; https://orcid.org/0000-0002-1307-7993
Luedtke, Nathan W; https://orcid.org/0000-0003-2214-8818
Schmidt, Olivia P
Jurt, Simon
Johannsen, Silke; https://orcid.org/0000-0001-7973-8996
Karimi, Ashkan
Sigel, Roland K O; https://orcid.org/0000-0002-1307-7993
Luedtke, Nathan W; https://orcid.org/0000-0003-2214-8818
Source :
Schmidt, Olivia P; Jurt, Simon; Johannsen, Silke; Karimi, Ashkan; Sigel, Roland K O; Luedtke, Nathan W (2019). Concerted dynamics of metallo-base pairs in an A/B-form helical transition. Nature Communications, 10:4818.
Publication Year :
2019

Abstract

Metal-mediated base pairs expand the repertoire of nucleic acid structures and dynamics. Here we report solution structures and dynamics of duplex DNA containing two all-natural C-HgII-T metallo base pairs separated by six canonical base pairs. NMR experiments reveal a 3:1 ratio of well-resolved structures in dynamic equilibrium. The major species contains two (N3)T-HgII-(N3)C base pairs in a predominantly B-form helix. The minor species contains (N3)T-HgII-(N4)C base pairs and greater A-form characteristics. Ten-fold different 1J coupling constants (15N,199Hg) are observed for (N3)C-HgII (114 Hz) versus (N4)C-HgII (1052 Hz) connectivities, reflecting differences in cytosine ionization and metal-bonding strengths. Dynamic interconversion between the two types of C-HgII-T base pairs are coupled to a global conformational exchange between the helices. These observations inspired the design of a repetitive DNA sequence capable of undergoing a global B-to-A-form helical transition upon adding HgII, demonstrating that C-HgII-T has unique switching potential in DNA-based materials and devices.

Details

Database :
OAIster
Journal :
Schmidt, Olivia P; Jurt, Simon; Johannsen, Silke; Karimi, Ashkan; Sigel, Roland K O; Luedtke, Nathan W (2019). Concerted dynamics of metallo-base pairs in an A/B-form helical transition. Nature Communications, 10:4818.
Notes :
application/pdf, info:doi/10.5167/uzh-176757, English, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1416176473
Document Type :
Electronic Resource