4.8 Article

Crystal structure of a Cbtx-AChBP complex reveals essential interactions between snake α-neurotoxins and nicotinic receptors

Journal

EMBO JOURNAL
Volume 24, Issue 8, Pages 1512-1522

Publisher

WILEY
DOI: 10.1038/sj.emboj.7600620

Keywords

acetylcholine-binding protein; crystal structure; high-affinity toxin-receptor complex; nicotinic acetylcholine receptor; snake three-fingered alpha-neurotoxin

Funding

  1. NIGMS NIH HHS [R37-GM18360, R37 GM018360] Funding Source: Medline
  2. NINDS NIH HHS [F32 NS043063-01, F32 NS043063] Funding Source: Medline

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The crystal structure of the snake long alpha-neurotoxin, alpha-cobratoxin, bound to the pentameric acetylcholine-binding protein ( AChBP) from Lymnaea stagnalis, was solved from good quality density maps despite a 4.2 angstrom overall resolution. The structure unambiguously reveals the positions and orientations of all five three-fingered toxin molecules inserted at the AChBP subunit interfaces and the conformational changes associated with toxin binding. AChBP loops C and F that border the ligand-binding pocket move markedly from their original positions to wrap around the tips of the toxin first and second fingers and part of its C-terminus, while rearrangements also occur in the toxin fingers. At the interface of the complex, major interactions involve aromatic and aliphatic side chains within the AChBP binding pocket and, at the buried tip of the toxin second finger, conserved Phe and Arg residues that partially mimic a bound agonist molecule. Hence this structure, in revealing a distinctive and unpredicted conformation of the toxin-bound AChBP molecule, provides a lead template resembling a resting state conformation of the nicotinic receptor and for understanding selectivity of curaremimetic alpha-neurotoxins for the various receptor species.

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