Title of article
Midpoint reduction potentials and heme binding stoichiometries of de novo proteins from designed combinatorial libraries Original Research Article
Author/Authors
David A. Moffet، نويسنده , , Jennifer Foley، نويسنده , , Michael H. Hecht، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
9
From page
231
To page
239
Abstract
We previously reported the de novo design of combinatorial libraries of proteins targeted to fold into four-helix bundles. The sequences of these proteins were designed using a binary code strategy in which each position in the linear sequence is designated as either polar or nonpolar, but the exact identity of the amino acid at each position is varied combinatorially. We subsequently reported that approximately half of these binary coded proteins were capable of binding heme. These de novo heme-binding proteins showed CO binding characteristics similar to natural heme proteins, and several were active as peroxidases. Here we analyze the midpoint reduction potentials and heme binding stoichiometries of several of these de novo heme proteins. All the proteins bound heme with a 1:1 stoichiometry. The reduction potentials ranged from −112 to −176 mV. We suggest that this represents an estimate of the default range of potentials for heme proteins that have neither been prejudiced by rational design nor selected by evolution.
Keywords
Heme proteins , De novo proteins , Protein reduction potential , Binary patterning , protein design
Journal title
Biophysical Chemistry
Serial Year
2003
Journal title
Biophysical Chemistry
Record number
1113313
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