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The influence of spermine on the structural dynamics of yeast tRNAPhe
Authors:Lennart Nilsson  Rudolf Rigler  Wolfgang Wintermeyer
Institution:1. Department of Medical Biophysics, Karolinska Institute, S-104 01 Stockholm Sweden;2. Department of Theoretical Pysics, Royal Institute of Technology, S-100 44 Stockholm Sweden;3. Institut für Physiologische Chemie, Physikalische Biochemie und Zellbiologie der Universität München, Goethestrasse 33, D-8000 München 2 F.R.G.
Abstract:A tRNAPhe derivative carrying ethidium at position 37 in the anticodon loop has been used to study the effect of spermine on conformational transitions of the tRNA. As previously reported (Ehrenberg, M., Rigler, R. and Wintermeyer, W. (1979) Biochemistry 18, 4588–4599) in the tRNA derivative the ethidium is present in three states (T1–T3) characterized by different fluorescence decay rates. T-jump experiments show two transitions between the states, a fast one (relaxation time 10–100 ms) between T1 and T2, and a slow one (100–1000 ms) between T2 and T3. In the presence of spermine the fast transition shows a negative temperature coefficient indicating the existence of a preequilibrium with a negative reaction enthalpy. Spermine shifts the distribution of states towards T3, as does Mg2+, but the final ratio T2]T1] obtained with spermine is higher than with Mg2+, which we tentatively interpret to mean that spermine stabilizes one particular conformation of the anticodon loop.
Keywords:Conformation transition  Anticodon loop  Spermine  Fluorescence  (Yeast)
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