Determinants of affinity and mode of DNA binding at the carboxy terminus of the bacteriophage SPO1-encoded type II DNA-binding protein, TF1

Author:

Andera L1,Geiduschek E P1

Affiliation:

1. Department of Biology, University of California, San Diego, La Jolla 92093-0634.

Abstract

The role of the carboxy-terminal amino acids of the bacteriophage SPO1-encoded type II DNA-binding protein, TF1, in DNA binding was analyzed. Chain-terminating mutations truncating the normally 99-amino-acid TF1 at amino acids 96, 97, and 98 were constructed, as were missense mutations substituting cysteine, arginine, and serine for phenylalanine at amino acid 97 and tryptophan for lysine at amino acid 99. The binding of the resulting proteins to a synthetic 44-bp binding site in 5-(hydroxymethyl)uracil DNA, to binding sites in larger SPO1 [5-(hydroxymethyl)uracil-containing] DNA fragments, and to thymine-containing homologous DNA was analyzed by gel retardation and also by DNase I and hydroxy radical footprinting. We conclude that the C tail up to and including phenylalanine at amino acid 97 is essential for DNA binding and that the two C-terminal amino acids, 98 and 99, are involved in protein-protein interactions between TF1 dimers bound to DNA.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference37 articles.

1. Andera L. C. Spangler A. Galeone L. Mayol and E. P. Geiduschek. Interrelations of secondary structure stability and DNAbinding affinity in the bacteriophage SPOl-encoded type II DNAbinding protein TF1. J. Mol. Biol. in press.

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