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PMID: 7926725 Published · ppublish English Journal Article

Specificity determinants for the interaction of lambda repressor and P22 repressor dimers.

Genes & development ·Vol. 8 ·No. 10 ·1994-05-15 ·Pages 1212-23

Whipple FW, Kuldell NH, Cheatham LA, Hochschild A

Abstract

The related phage lambda and phage P22 repressors each bind cooperatively to adjacent and separated operator sites, an interaction that involves a pair of repressor dimers. The specificities of these interactions differ: Each dimer interacts with its own type but not with dimers of the heterologous repressor. The two repressors exhibit significant amino acid sequence homology in their carboxy-terminal domains, which are responsible for both dimer formation and the dimer-dimer interaction. Here, we identify a collection of amino acid substitutions that disrupt the protein-protein interaction of DNA-bound lambda repressor dimers and show that several of these substitutions have the same effect when introduced at the corresponding positions of P22 repressor. We use this information to construct a variant of the lambda repressor bearing only six non-wild-type amino acids that has a switched specificity; that is, it binds cooperatively with P22 repressor, but not with wild-type lambda repressor. These results identify a series of residues that determine the specificities of the two interactions.

MeSH Terms
Amino Acid Sequence Base Sequence Conserved Sequence DNA, Viral/metabolism DNA-Binding Proteins Gene Expression Regulation, Viral/physiology Models, Genetic Molecular Sequence Data Operator Regions, Genetic/genetics,physiology Point Mutation/physiology Protein Conformation Recombinant Fusion Proteins/metabolism Repressor Proteins/chemistry,metabolism Transcription, Genetic/physiology Viral Proteins Viral Regulatory and Accessory Proteins
Chemicals
DNA, Viral DNA-Binding Proteins P22 repressor protein, Enterobacteria phage P22 Recombinant Fusion Proteins Repressor Proteins Viral Proteins Viral Regulatory and Accessory Proteins phage repressor proteins
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Whipple F W
Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, Massachusetts 02115.
Kuldell N H
Cheatham L A
Hochschild A
Article Info
Journal
Genes & development
Abbr.
Genes Dev
ISSN
0890-9369
Published
1994-05-15
Pages
1212-23
Language
English
Region
United States
NLM ID
8711660
Subset
IM
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