Engineering of the hydrophobic core of an alpha-helical coiled coil.

T Kiyokawa, K Kanaori, K Tajima, T Tanaka
Author Information
  1. T Kiyokawa: Department of Applied Biology, Kyoto Institute of Technology, Matugasaki, Sakyou-ku, Kyoto 606-8585, Japan.

Abstract

The amino acid sequence that forms the alpha-helical coiled coil structure has a representative heptad repeat denoted by defgabc, according to their positions. Although the a and d positions are usually occupied by hydrophobic residues, hydrophilic residues at these positions sometimes play important roles in natural proteins. We have manipulated a few amino acids at the a and d positions of a de novo designed trimeric coiled coil to confer new functions to the peptides. The IZ peptide, which has four heptad repeats and forms a parallel triple-stranded coiled coil, has Ile at all of the a and d positions. We show three examples: (1) the substitution of one Ile at either the a or d position with Glu caused the peptide to become pH sensitive; (2) the metal ion induced alpha-helical bundles were formed by substitutions with two His residues at the d and a positions for a medium metal ion, and with one Cys residue at the a position for a soft metal ion; and (3) the AAB-type heterotrimeric alpha-helical bundle formation was accomplished by a combination of Ala and Trp residues at the a positions of different peptide chains. Furthermore, we applied these procedures to prepare an ABC-type heterotrimeric alpha-helical bundle and a metal ion-induced heterotrimeric alpha-helical bundle.

MeSH Term

Amino Acid Sequence
Amino Acid Substitution
Cations
DNA-Binding Proteins
Fungal Proteins
Hydrogen-Ion Concentration
Models, Molecular
Peptides
Protein Engineering
Protein Kinases
Protein Structure, Secondary
Protein Structure, Tertiary
Repetitive Sequences, Amino Acid
Saccharomyces cerevisiae Proteins
Spectrum Analysis
Temperature

Chemicals

Cations
DNA-Binding Proteins
Fungal Proteins
Peptides
Saccharomyces cerevisiae Proteins
Protein Kinases

Word Cloud

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