## Abstract The interaction of tRNA with Eu(III) has been studied by optical and gel electrophoretic tecfhniques. At low levels (less than six metals per tRNA), Eu(III) stabilizes yeast tRNA^Phe^ against thermal denaturation; however, at higher levels (about eight to ten Eu/tRNA) the tRNA is destab
Thermodynamics of transfer ribonucleic acids: The effect of sodium on the thermal unfolding of yeast tRNAPhe
β Scribed by Ernesto Freire; Rodney L. Biltonen
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 1978
- Tongue
- English
- Weight
- 853 KB
- Volume
- 17
- Category
- Article
- ISSN
- 0006-3525
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β¦ Synopsis
Abstract
The thermal unfolding of yeast phenylalanineβspecific tRNA (tRNA^Phe^) has been calorimetrically investigated at several salt concentrations in the absence of magnesium. Application of the deconvolution theory of macromolecular conformational transitions allows calculation of the thermodynamic parameters of unfolding. It is demonstrated that the unfolding of tRNA^Phe^ occurs in a sequential fashion and that four separate transitions or five macromolecular thermodynamic states exist in the temperature range 8β72Β°C under the experimental conditions of these studies (0.067β0.52__M__ Na^+^). The enthalpy and entropy changes between states and the relative population of each state as a function of temperature and salt concentration have been obtained. Sodium stabilizes the lowβtemperature conformations of tRNA^Phe^. The increase in the melting temperatures of each transition is shown to be linearly dependent on the logarithm of sodium concentration. These results allow calculation of the βphaseβ diagram for the transitions as a function of salt concentration.
π SIMILAR VOLUMES
## Department of Radiation Biology, University of Rochester FOUR FIGURES Studies of potassium leakage from yeast following x-irradiation have shown a loss in the ability of the cell to retain this cation. The magnitude of this increased loss has been shown to be dose-dependent (Bair, Stannard and