Abstract
Supercoiled plasmid DNA harboring an insert of (dG-dC)16, a sequence known to form Z-DNA upon negative supercoiling, was reacted with chloroacetaldehyde. Chloroacetaldehyde, like bromoacetaldehyde, was found to be a specific probe for detecting unpaired DNA bases in supercoiled plasmid DNA. Under torsional stress (at bacterial superhelical density), chloroacetaldehyde reacted at multiple discrete regions within the neighboring sequences of the (dG-dC)16 insert. When the plasmid population was considered as a whole, the distribution of the chemically reactive bases exhibited a pattern of inversion symmetry with the center of inversion in the middle of the (dG-dC)16 insert. However, when a single supercoiled plasmid molecule was considered, chloroacetaldehyde reacted with only one of the neighboring sequences, either 5' or 3' of the (dG-dC)16 insert, but not with both. The possibility that the supercoiled plasmid DNA is in equilibrium with these two structural forms is discussed.
MeSH Terms
Acetaldehyde/analogs & derivatives
Base Sequence
DNA, Superhelical
Nucleic Acid Conformation
Nucleotide Mapping
Plasmids
Chemicals
DNA, Superhelical
bromoacetaldehyde
chloroacetaldehyde
Acetaldehyde
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Kohwi-Shigematsu T
Manes T
Kohwi Y
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