Structural Basis for Phosphotyrosine Peptide Recognition by Protein Tyrosine Phosphatase 1B

Zongchao Jia(University of Oxford), David Barford(University of Oxford), Andrew Flint(Cold Spring Harbor Laboratory), Nicholas K. Tonks(Cold Spring Harbor Laboratory)
Science
June 23, 1995
Cited by 585

Abstract

The crystal structures of a cysteine-215-->serine mutant of protein tyrosine phosphatase 1B complexed with high-affinity peptide substrates corresponding to an autophosphorylation site of the epidermal growth factor receptor were determined. Peptide binding to the protein phosphatase was accompanied by a conformational change of a surface loop that created a phosphotyrosine recognition pocket and induced a catalytically competent form of the enzyme. The phosphotyrosine side chain is buried within the period and anchors the peptide substrate to its binding site. Hydrogen bonds between peptide main-chain atoms and the protein contribute to binding affinity, and specific interactions of acidic residues of the peptide with basic residues on the surface of the enzyme confer sequence specificity.


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