Effect of propan-2-ol on enzymic and structural properties of elongation factor G
- 1 August 1989
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 261 (3) , 725-731
- https://doi.org/10.1042/bj2610725
Abstract
Elongation factor G (EF-G) can support a GTPase activity in vitro even in the absence of ribosomes when propan-2-ol is present [GTPasep; De Vendittis, Masullo and Boccini (1986) J. Biol. Chem. 261, 4445-4450]. In the present work the GTPasep activity of EF-G was further studied by investigating (i) the effect of ionic environment on GTPasep and (ii) the influence of propan-2-ol on the molecular structure of EF-G as determined by fluoresence and c.d. measurements. In the presence of 1-300 mM univalent cations (M+) alone, no detectable GTPasep activity was measured; however, in the presence of 1 mM-Mg2+ a considerable stimulation was observed at 40 mM-Li+ or 75 mM-NH4+. Among bivalent cations (M2+), 1 mM-Sr2+, 2-5 mM-Ca2+ and 1 mM-Ba2+ were the most effective, but, in the presence of 75 mM-NH4+, Mg2+ and Mn2+ became the most efficient, whereas the stimulation by other M2+ species was considerably decreased. C.d. measurements showed that the alcohol increased the mean molar residue ellipticity of EF-G at 285 nm, but not at 220 nm. As estimated from fluorescence measurements, in the presence of 20% (v/v) propan-2-ol the value of the dissociation constant of the complex formed between EF-G and 8-anilino-1-napththalene-sulphonate decreased from 8 to 5 .mu.M: similarly, the number of binding sites on EF-G for the fluorescent probe decreased from 13 to 6. Finally, the alcohol enhanced the quenching of the intrinsic fluorescence of EF-G caused by either acrylamide or KI. The data support the hypothesis that propan-2-ol induces moderate conformational changes of EF-G that make the catalytic centre accessible to the substrate even in the absence of ribosomes. Kinetics of GTPasep studied at different temperatures did not reveal additional structural changes of EF-G occurring with time or temperature.This publication has 22 references indexed in Scilit:
- Regulation of Turnover GTPase Activity of Elongation Factor G: the 30‐S‐Coupled and 30‐S‐Uncoupled ReactionsEuropean Journal of Biochemistry, 1978
- Exposure of tryptophanyl residues in proteins. Quantitative determination by fluorescence quenching studiesBiochemistry, 1976
- Chemical and physical studies on the structure of Escherichia coli elongation factor G.Journal of Biological Chemistry, 1975
- Comparative study of the 50S ribosomal subunit and several 50S subparticles in EF-T- and EF-G-dependent activitiesBiochemistry, 1975
- Kirromycin, an Inhibitor of Protein Biosynthesis that Acts on Elongation Factor TuProceedings of the National Academy of Sciences, 1974
- Studies on Polypeptide Elongation Factor from E. coliThe Journal of Biochemistry, 1972
- The Effect of Various Nucleotides on the Helical Nature of a Ribosomal Protein(s) from Escherichia coliProceedings of the National Academy of Sciences, 1972
- Solute perturbation of protein fluorescence. Quenching of the tryptophyl fluorescence of model compounds and of lysozyme by iodide ionBiochemistry, 1971
- Studies on translocation. IV. The hydrolysis of a single round of guanosine triphosphate in the presence of fusidic acid.1970
- Evidence for Binding of Rose Bengal and Anilinonaphthalenesulfonates at the Active Site Regions of Liver Alcohol Dehydrogenase*Biochemistry, 1967