Condensation of DNA by trivalent cations. 2. Effects of cation structure
- 1 January 1990
- journal article
- research article
- Published by Wiley in Biopolymers
- Vol. 30 (5-6) , 631-643
- https://doi.org/10.1002/bip.360300515
Abstract
Electron microscopy is employed to examine DNA aggregates produced by three tripositively charged condensing agents. Spermidine, hexammine cobalt (III), and me8spermidine (in which the amine groups of spermidine are exhaustively methylated) all produce condensates. The predominant form of condensate observed is toroidal; however, me8spermidine produces a large fraction of rodlike condensates. Distributions of toroidal radii and estimated volumes suggest that the size of condensates depends on the condensing agent employed, its concentration, and the time elapsed after addition of condensing agent. While ligand charge seems to be the major factor in predicting condensing power, ligand structure influences the morphology and dimensions of the particles produced. The ability to form hydrogen bonds is not required to promote condensation, since me8spermidine has no NHs. There may be a kinetic barrier to condensation at low me8spermidine concentrations. The relative proportions of toroids and rods may depend on the energetic compensation between bending and binding in cyclic structures, or on rate-limiting formation of sharply bent or kinked regions in rods.This publication has 41 references indexed in Scilit:
- Structural and electrostatic effects on binding of trivalent cations to double‐stranded and single‐stranded poly[d (AT)]Biopolymers, 1990
- A Study of øX-174 DNA Torus and Lambda DNA Torus Tertiary Structure and the Implications For DNA Self-AssemblyJournal of Biomolecular Structure and Dynamics, 1986
- Hydrated Macromolecular Assembly Structure Revealed by Freeze-Etch Stereo-Electron MicroscopyBiophysical Journal, 1986
- X-ray diffraction studies on cation-collapsed DNAJournal of Molecular Biology, 1984
- Monomolecular condensation of λ‐DNA induced by cobalt hexammineBiopolymers, 1983
- Cation-induced toroidal condensation of DNAJournal of Molecular Biology, 1980
- Counterion-induced condensation of deoxyribonucleic acid. A light-scattering studyBiochemistry, 1979
- DNA condensation with polyaminesJournal of Molecular Biology, 1978
- DNA condensation with polyaminesJournal of Molecular Biology, 1978
- Compact form of DNA induced by spermidineNature, 1976