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Conformational studies on synthetic peptides reproducing the dibasic processing site of pro‐ocytocin–neurophysin
Author(s) -
Di Bello Carlo,
Simonetti Mario,
Dettin Monica,
Paolillo Livio,
D'Auria Gabriella,
Falcigno Lucia,
Saviano Michele,
Scatturin Angelo,
Vertuani Gianni,
Cohen Paul
Publication year - 1995
Publication title -
journal of peptide science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.475
H-Index - 66
eISSN - 1099-1387
pISSN - 1075-2617
DOI - 10.1002/psc.310010406
Subject(s) - chemistry , dibasic acid , stereochemistry , peptide , cleavage (geology) , turn (biochemistry) , circular dichroism , crystallography , biochemistry , biology , organic chemistry , paleontology , fracture (geology)
Synthetic peptides reproducing the proteolytic processing site of pro‐ocytocin were studied by different spectroscopic techniques, including circular dichroism, Fourier tranform infrared absorption, and mono and bidimensional nuclear magnetic resonance, in order to ascertain the possible role of three‐dimensional structure in the recognition process by maturation enzymes. Experimental results were compared with energy minimization calculations and suggest that: (i) the region situated on the N‐terminus of the Lys‐Arg doublet may form a β‐turn; (ii) the sequential organization of the residues participating in the β‐turn determines the privileged relative orientation of the basic amino acid sidechains and the subtype of turn; and (iii) the peptide segment situated on the C‐terminal side of the dibasic doublet may assume a helix arrangement. These findings, in spite of the limitations connected to the flexibility of linear peptides, seem to substantiate the hypothesis that structural motifs around the cleavage site could be important for recognition and processing. However, a straightforward correlation between details of the secondary structure and the in vitro reactivity toward a putative convertase is not yet possible.