The gene 5 protein of filamentous bacteriophage fd is a single-stranded DNA-binding protein that binds non-specifically to all single-stranded nucleic acid sequences, but in addition is capable of specific binding to the sequence d(GT5G4CT4C) and the RNA equivalent r(GU5G4CU4C), the latter interaction being important for translational repression. We show that this sequence preference arises from the formation of a tetraplex structure held together by a central block of G-quartets, the structure of which persists in the complex with gene 5 protein. Binding of gene 5 protein to the tetraplex leads to formation of a 170 kDa nucleoprotein complex consisting of four oligonucleotide strands and eight gene 5 protein dimers, with a radius of gyrati...
Complexes of the gene 5 protein from bacteriophage fd with a variety of oligodeoxynucleotides, rangi...
AbstractConjugative plasmid transfer between bacteria disseminates antibiotic resistance and diversi...
The relations between the protein coats and DNAs of the four filamentous bacteriophages fd, Xf, Pf1,...
The single-stranded DNA sequence d(GT5G4CT4C) occurs close to the origin of replication within the i...
AbstractThe Ff gene 5 protein (g5p) is considered to be a nonspecific single-stranded DNA binding pr...
In order to demonstrate that the nucleic acid-binding activities of vimentin are dictated by its Arg...
The structure of the gene 5 DNA unwinding protein from bacteriophage fd has been solved to 2.3 A res...
The structure of the gene 5 DNA unwinding protein from bacteriophage fd has been determined by X-ray...
SIGLEAvailable from British Library Document Supply Centre-DSC:DXN013904 / BLDSC - British Library D...
1H nuclear magnetic resonance (NMR) spectra at 270 MHz of gene 5 protein from bacteriophage fd and i...
Three DNA binding proteins from Escherichia coli cells have been complexed with single-stranded phag...
Gene 5 protein of bacteriophage fd was purified from phage infected bacteria. The protein binds to s...
Bacteriophage T4 gene 32 protein, a model for singlestrand specific nucleic acid-binding proteins, c...
In order to demonstrate that the nucleic acid−binding activities of vimentin are dictated by its Arg...
There is a distinct class of proteins which in the process of functioning bind to double-helical nuc...
Complexes of the gene 5 protein from bacteriophage fd with a variety of oligodeoxynucleotides, rangi...
AbstractConjugative plasmid transfer between bacteria disseminates antibiotic resistance and diversi...
The relations between the protein coats and DNAs of the four filamentous bacteriophages fd, Xf, Pf1,...
The single-stranded DNA sequence d(GT5G4CT4C) occurs close to the origin of replication within the i...
AbstractThe Ff gene 5 protein (g5p) is considered to be a nonspecific single-stranded DNA binding pr...
In order to demonstrate that the nucleic acid-binding activities of vimentin are dictated by its Arg...
The structure of the gene 5 DNA unwinding protein from bacteriophage fd has been solved to 2.3 A res...
The structure of the gene 5 DNA unwinding protein from bacteriophage fd has been determined by X-ray...
SIGLEAvailable from British Library Document Supply Centre-DSC:DXN013904 / BLDSC - British Library D...
1H nuclear magnetic resonance (NMR) spectra at 270 MHz of gene 5 protein from bacteriophage fd and i...
Three DNA binding proteins from Escherichia coli cells have been complexed with single-stranded phag...
Gene 5 protein of bacteriophage fd was purified from phage infected bacteria. The protein binds to s...
Bacteriophage T4 gene 32 protein, a model for singlestrand specific nucleic acid-binding proteins, c...
In order to demonstrate that the nucleic acid−binding activities of vimentin are dictated by its Arg...
There is a distinct class of proteins which in the process of functioning bind to double-helical nuc...
Complexes of the gene 5 protein from bacteriophage fd with a variety of oligodeoxynucleotides, rangi...
AbstractConjugative plasmid transfer between bacteria disseminates antibiotic resistance and diversi...
The relations between the protein coats and DNAs of the four filamentous bacteriophages fd, Xf, Pf1,...