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)
Chaohong Sun, Danying Song, Rachel Davis‐Taber, Leo W. Barrett, Victoria Scott, Paul L. Richardson, Ana Pereda‐Lopez, Marie E. Uchic, Larry R. Solomon, Marc Lake, Karl A. Walter, Philip J. Hajduk, Edward T. Olejniczak
2007-04-30

Extracellular domainMutagenesisNMR solution structurePAC1 receptorPACAP peptide
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.
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.

PACAP (residues 6′–38′) bound to the N-terminal extracellular domain of the human splice variant hPAC1-R(S)

The structural basis, critical molecular interactions, binding specificity, and receptor-activation positioning of PACAP at hPAC1-R(S)

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Publication Date
2007-04-30
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Chaohong Sun
Danying Song
Rachel Davis‐Taber
Leo W. Barrett
Victoria Scott
Paul L. Richardson
Ana Pereda‐Lopez
Marie E. Uchic
Larry R. Solomon
Marc Lake
Karl A. Walter
Philip J. Hajduk
Edward T. Olejniczak
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