We have used \*'Mg-nmr to investigate the binding of magnesium ions to double-stranded DNA. We have measured line shapes for "Mg in the presence of monodisperse calf thymus DNA ( 160 base pairs; b.p.) (magnesium : phosphate = 2.0) a t two different field strengths, 11.75 T and 7.05 T, and used the i
25Mg-nmr investigations of the magnesium ion–DNA interaction
✍ Scribed by D. Murk Rose; C. F. Polnaszek; R. G. Bryant
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 1982
- Tongue
- English
- Weight
- 743 KB
- Volume
- 21
- Category
- Article
- ISSN
- 0006-3525
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✦ Synopsis
Abstract
^25^Mg‐nmr data are reported that address the nature of the magnesium ion–DNA interaction. It is found that competitor ions such as calcium, mercury, zinc, and cobalt ions are not effective in competing for all of the magnesium ion–DNA interaction that is reported by the ^25^Mg‐nmr spectrum. The temperature dependence of the ^25^Mg‐nmr spectrum in DNA solution studied at high concentrations of competitor ion indicates that the chemical‐exchange lifetime of the magnesium ions at DNA binding sites makes a major contribution to the ^25^Mg‐nmr line width. However, the activation parameters are not consistent with the temperature dependence of either transport properties or chemical exchange with phosphate groups alone, but are consistent with a sum of at least two processes that provide opposing contributions to the ^25^Mg‐nmr relaxation. It is also shown that the non‐Lorentzian character of the ^25^Mg‐nmr line previously reported is consistent with the effect of an incompletely averaged static nuclear electric quadrupole interaction and/or an exchange process that is slow with respect to the magnitude of this interaction. Because the concentrations employed in these experiments are high, the present data do not provide a direct or critical test of the electrostatic theories of ion–polyelectrolyte interaction. The present data do demonstrate, however, that such theories alone are insufficient as a basis for understanding the ^25^Mg‐nmr data.
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The effects that haemoglobin-metabolite interactions have on estimates of free magnesium-ion concentration in human erythrocytes, determined by 31P NMR [Gupta, R. K. et al., J. Biol. Chem. 253, 6172-6176 (1978)], were investigated. If the metabolite-haemoglobin association constants of Berger et al.
## Abstract The effect of magnesium ions on the parameters of the DNA helix‐coil transition has been studied for the concentration range 10^−6^–10^−1^__M__ at the ionic strengths of 10^−3^__M__ Na^+^. Special attention has been given to the region of low ion concentrations and to the effect of poly