Article
Alanine substitutions of noncysteine residues in the cysteine-stabilized αβ motif
Article first published online: 20 MAY 2009
DOI: 10.1002/pro.164
Copyright © 2009 The Protein Society
Additional Information
How to Cite
Yang, Y.-F., Cheng, K.-C., Tsai, P.-H., Liu, C.-C., Lee, T.-R. and Ping-Chiang Lyu (2009), Alanine substitutions of noncysteine residues in the cysteine-stabilized αβ motif. Protein Science, 18: 1498–1506. doi: 10.1002/pro.164
Publication History
- Issue published online: 23 JUN 2009
- Article first published online: 20 MAY 2009
- Accepted manuscript online: 20 MAY 2009 12:00AM EST
- Manuscript Accepted: 5 MAY 2009
- Manuscript Revised: 4 MAY 2009
- Manuscript Received: 1 APR 2009
Funded by
- National Science Council. Grant Number: NSC 97-2113-M-007-015
Keywords:
- plant defensin;
- α-amylase;
- alanine scan;
- circular dichroism spectroscopy;
- fluorescence spectroscopy;
- protein engineering
Abstract
The protein scaffold is a peptide framework with a high tolerance of residue modifications. The cysteine-stabilized αβ motif (CSαβ) consists of an α-helix and an antiparallel triple-stranded β-sheet connected by two disulfide bridges. Proteins containing this motif share low sequence identity but high structural similarity and has been suggested as a good scaffold for protein engineering. The Vigna radiate defensin 1 (VrD1), a plant defensin, serves here as a model protein to probe the amino acid tolerance of CSαβ motif. A systematic alanine substitution is performed on the VrD1. The key residues governing the inhibitory function and structure stability are monitored. Thirty-two of 46 residue positions of VrD1 are altered by site-directed mutagenesis techniques. The circular dichroism spectrum, intrinsic fluorescence spectrum, and chemical denaturation are used to analyze the conformation and structural stability of proteins. The secondary structures were highly tolerant to the amino acid substitutions; however, the protein stabilities were varied for each mutant. Many mutants, although they maintained their conformations, altered their inhibitory function significantly. In this study, we reported the first alanine scan on the plant defensin containing the CSαβ motif. The information is valuable to the scaffold with the CSαβ motif and protein engineering.

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