Solution structure and mutational analysis of pituitary adenylate cyclase-activating polypeptide binding to the extracellular domain of PAC1-R S
Растворная структура и мутационный анализ связывания полипептида, активирующего аденилатциклазу гипофиза, с внеклеточным доменом PAC1-R(S)
2007-04-30
SCID: 54.1/dn4y5zsv
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Extracellular domainMutagenesisNMR solution structurePAC1 receptorPACAP peptide
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Abstract (AI)
The pituitary adenylate cyclase-activating polypeptide (PACAP) receptor is a class II G protein-coupled receptor that contributes to many different cellular functions including neurotransmission, neuronal survival, and synaptic plasticity. The solution structure of the potent antagonist PACAP (residues 6'-38') complexed to the N-terminal extracellular (EC) domain of the human splice variant hPAC1-R-short (hPAC1-R(S)) was determined by NMR. The PACAP peptide adopts a helical conformation when bound to hPAC1-R(S) with a bend at residue A18' and makes extensive hydrophobic and electrostatic interactions along the exposed beta-sheet and interconnecting loops of the N-terminal EC domain. Mutagenesis data on both the peptide and the receptor delineate the critical interactions between the C terminus of the peptide and the C terminus of the EC domain that define the high affinity and specificity of hormone binding to hPAC1-R(S). These results present a structural basis for hPAC1-R(S) selectivity for PACAP versus the vasoactive intestinal peptide and also differentiate PACAP residues involved in binding to the N-terminal extracellular domain versus other parts of the full-length hPAC1-R(S) receptor. The structural, mutational, and binding data are consistent with a model for peptide binding in which the C terminus of the peptide hormone interacts almost exclusively with the N-terminal EC domain, whereas the central region makes contacts to both the N-terminal and other extracellular parts of the receptor, ultimately positioning the N terminus of the peptide to contact the transmembrane region and result in receptor activation.
Key Findings
1
Bound PACAP adopts a helical conformation with a bend at A18′ and forms extensive hydrophobic and electrostatic contacts with the receptor’s beta-sheet and connecting loops.
2
NMR determined the solution structure of PACAP residues 6′–38′ bound to the N-terminal extracellular domain of human hPAC1-R-short.
3
Peptide and receptor mutagenesis identified critical C-terminal interactions that determine high-affinity and specific PACAP binding to hPAC1-R(S).
4
The data support a binding model in which the peptide C terminus primarily binds the N-terminal extracellular domain, while its central and N-terminal regions engage additional extracellular and transmembrane receptor sites to promote activation.
5
The structure explains hPAC1-R(S) selectivity for PACAP over vasoactive intestinal peptide and distinguishes peptide residues contacting the extracellular domain from those engaging other receptor regions.
Research Object
PACAP (residues 6′–38′) bound to the N-terminal extracellular domain of the human splice variant hPAC1-R(S)
Research Subject
The structural basis, critical molecular interactions, binding specificity, and receptor-activation positioning of PACAP at hPAC1-R(S)
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2007-04-30
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