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Predicted calmodulin-binding sequence in the gamma subunit of phosphorylase b kinase.

作者信息

DeGrado W F, Erickson-Viitanen S, Wolfe H R, O'Neil K T

机构信息

Central Research and Development Department, E.I. du Pont de Nemours and Company, Wilmington, Delaware 19898.

出版信息

Proteins. 1987;2(1):20-33. doi: 10.1002/prot.340020104.

Abstract

A basic, amphiphilic alpha helix is a structural feature common to a variety of inhibitors of calmodulin and to the calmodulin-binding domains of myosin light chain kinases. To aid in recognizing this structural feature in sequences of peptides and proteins we have developed a computer algorithm which searches for sequences of appropriate length, hydrophobicity, helical hydrophobic moment, and charge to be considered as potential calmodulin-binding sequences. Such sequences occurred infrequently in proteins of known crystal structure. This algorithm was used to find the most likely site in the catalytic (gamma) subunit of phosphorylase b kinase for interaction with calmodulin (the delta subunit). A peptide corresponding to this site (residues 341-361 of the gamma subunit) was synthesized and found to bind calmodulin with approximately an 11 nM dissociation constant. A variant of this peptide in which an aspartic acid at position 7 in its sequence (347 of the gamma subunit) was replaced with an asparagine was found to bind calmodulin with approximately a 3 nM dissociation constant.

摘要

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