Turn structures in CGRP C-terminal analogues promote stable arrangements of key residue side chains

Citation
Ka. Carpenter et al., Turn structures in CGRP C-terminal analogues promote stable arrangements of key residue side chains, BIOCHEM, 40(28), 2001, pp. 8317-8325
Citations number
28
Categorie Soggetti
Biochemistry & Biophysics
Journal title
BIOCHEMISTRY
ISSN journal
00062960 → ACNP
Volume
40
Issue
28
Year of publication
2001
Pages
8317 - 8325
Database
ISI
SICI code
0006-2960(20010717)40:28<8317:TSICCA>2.0.ZU;2-D
Abstract
The 37-amino acid calcitonin gene-related peptide (CGRP) is a potent endoge nous vasodilator thought to be implicated in the genesis of migraine attack . CGRP antagonists may thus have therapeutic value for the treatment of mig raine. The CGRP C-terminally derived peptide [D-31,P-34,F-35]CGRP(27-37)-NH 2 was recently identified as a high-affinity hCGRP(1) receptor selective an tagonist. Reasonable CGRP(1) affinity has also been demonstrated for severa l related analogues, including [D-31,A(34),F-35]CGRP(27-37)-NH2. In the stu dy presented here, conformational and structural features in CGRP(27-37)-NH 2 analogues that are important for hCGRP(1) receptor binding were explored. Structure-activity studies carried out on [D-31,P-34,F-35]CGRP(27-37)-NH2 resulted in [D-31,P-34,F-35]CGRP(30-37)-NH2, the shortest reported CGRP C-t erminal peptide analogue exhibiting reasonable hCGRP(1) receptor affinity ( K-i = 29.6 nM). Further removal of T-30 from the peptide's N-terminus great ly reduced receptor affinity from the nanomolar to micromolar range. Additi onal residues deemed critical for hCGRP(1) receptor binding were identified from an alanine scan of [A(34),F-35]CGRP(28-37)-NH2 and included V-32 and F-37. Replacement of the C-terminal amide in this same peptide with a carbo xyl, furthermore, resulted in a greater than 50-fold reduction in hCGRP(1) affinity, thus suggesting a direct role for the amide moiety in receptor bi nding. The conformational properties of two classes of CGRP(27-37)-NH2 pept ides, [D-31,X-34,F-35]CGRP(27-37)-NH2 (X is A or P), were examined by NMR s pectroscopy and molecular modeling. A beta -turn centered on P-29 was a not able feature consistently observed among active peptides in both series. Th is turn led to exposure of the critical T-30 residue to the surrounding env ironment. Peptides in the A(34) series were additionally characterized by a stable C-terminal helical turn that resulted in the three important residu es (T-30, V-32, and F-37) adopting consistent interspatial positions with r espect to one another. Peptides in the P-34 series were comparatively more flexible at the C-terminus, although a large proportion of the [D-31,P-34,F -35]CGRP(27-37)-NH2 calculated conformers contained a gamma -turn centered on P-34. These results collectively suggest that turn structures at both th e C-terminus and N-terminus of CGRP(27-37)-NH2 analogues may help to approp riately orient critical residues (T-30, V-32, and F-37) for hCGRP(1) recept or binding.