The Conformation of the Complex of the Helix Destabilizing Protein GP32 of Bacteriophage T4 and Single Stranded DNA
- 1 February 1985
- journal article
- research article
- Published by Taylor & Francis in Journal of Biomolecular Structure and Dynamics
- Vol. 2 (4) , 821-829
- https://doi.org/10.1080/07391102.1985.10506326
Abstract
The conformation of single stranded polynucleotides is changed specifically upon binding of the helix destabilizing protein of bacteriophage T4 (GP32). On the basis of circular dichroism (CD) and absorption experiments it is shown that denaturing conditions and the binding of oligopeptides can not induce the altered conformation. On the contrary, according to the current CD and absorption theory, the optical properties of the complex can be explained by a specific, regular conformation, characterized by an appreciable tilt of the bases (≲—10°) and either a small rotation per base or a small helix diameter. This conformation agrees nicely with the increase of the base-base distance in the complex as determined in solution by electric field induced birefringence measurements. Our calculations show that also the model proposed by Alma (Ph.D. Thesis Catholic University Nijmegen, The Netherlands (1982)) for the complex of the helix destabilizing protein of bacteriophage fd, in which the helix diameter is large and the bases are almost parallel to the helix axis, would agree with the CD- and absorption spectra of the GP32-complex. For the latter protein this model would have to be modified with regard to the axial increment of the bases which is much larger in the GP32-complexes.This publication has 19 references indexed in Scilit:
- Interactions of bacteriophage T4-coded gene 32 protein with nucleic acidsJournal of Molecular Biology, 1981
- Interactions of bacteriophage T4-coded gene 32 protein with nucleic acidsJournal of Molecular Biology, 1981
- Kinetic analysis of deoxyribonuclease I cleavages in the nucleosome core: Evidence for a DNA superhelixJournal of Molecular Biology, 1978
- Circular dichroism study of the interaction between T4 gene 32 protein and polynucleotidesBiochemistry, 1978
- Different families of double‐stranded conformations of DNA as revealed by computer calculationsBiopolymers, 1978
- A structural model for the polyadenylic acid single helixJournal of Molecular Biology, 1975
- Interactions of aromatic residues of proteins with nucleic acids. Fluorescence studies of the binding of oligopeptides containing tryptophan and tyrosine residues to polynucleotidesBiochemistry, 1975
- Origins of the differences between the circular dichroism of DNA and RNA: Theoretical calculationsBiopolymers, 1973
- Characterization by electron microscopy of the complex formed between T4 bacteriophage gene 32-protein and DNAJournal of Molecular Biology, 1972
- Adenylate oligomers in single- and double-strand conformationJournal of Molecular Biology, 1966