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Design and synthesis of peptides that bind α-bungarotoxin with high affinity and mimic the three-dimensional structure of the binding-site of acetylcholine receptor

Authors :
Roni Kasher
Mati Fridkin
Michal Harel
Moshe Balass
Sara Fuchs
Ephraim Katchalski-Katzir
Joel L. Sussman
Tali Scherf
Source :
Biophysical Chemistry. 100:293-305
Publication Year :
2002
Publisher :
Elsevier BV, 2002.

Abstract

a-Bungarotoxin (a-BTX) is a highly toxic snake neurotoxin that binds to acetylcholine receptor (AChR) at the neuromuscular junction, and is a potent inhibitor of this receptor. In the following we review multi-phase research of the design, synthesis and structure analysis of peptides that bind a-BTX and inhibit its binding to AChR. Structure- based design concomitant with biological information of the a-BTXyAChR system yielded 13-mer peptides that bind to a-BTX with high affinity and are potent inhibitors of a-BTX binding to AChR (IC of 2 nM). X-Ray and NMR 50 spectroscopy reveal that the high-affinity peptides fold into an anti-parallel b-hairpin structure when bound to a- BTX. The structures of the bound peptides and the homologous loop of acetylcholine binding protein, a soluble analog of AChR, are remarkably similar. Their superposition indicates that the toxin wraps around the binding-site loop, and in addition, binds tightly at the interface of two of the receptor subunits and blocks access of acetylcholine to its binding site. The procedure described in this article may serve as a paradigm for obtaining high-affinity peptides in biochemical systems that contain a ligand and a receptor molecule. 2002 Elsevier Science B.V. All rights reserved.

Details

ISSN :
03014622
Volume :
100
Database :
OpenAIRE
Journal :
Biophysical Chemistry
Accession number :
edsair.doi.dedup.....d5e845e860d5c25be7c1c81e92afb1f2