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Biomedical subjects

C Toniolo

Publications and source records attributed to C Toniolo.

At least 109 records · Page 6Linked to original sources

Structure, solubility and reactivity of peptides. A conformational study of two protected key intermediates from a large-scale synthesis of thymosin alpha 1.

A conformational study of two protected peptide segments, (1-10 and 11-28), spanning the entire sequence of thymosin alpha 1, in solvents of different polarity and capability of forming hydrogen bonds, is reported. By using infrared absorption and circular dichroism techniques the occurrence of the random coil conformation, the self-associated beta-structure, and the alpha-helix (the latter adopted only by the longer peptide) was established. The self-associated species of the two peptide segments were disrupted either by adding increasing amounts of hexamethylphosphoramide or by dilution. This structural transition was monitored by the disappearance of the amide-I C = O stretching band of strongly intermolecularly hydrogen-bonded molecules (near 1630 cm-1) in the infrared absorption spectra. The tendency of these peptides to aggregate is paralleled by a decrease in their solubility. The conformational findings are discussed in terms of the solvent-dependent product yields obtained in the reaction of segment (1-10) with the N alpha-deprotected (11-28) segment to give the fully protected thymosin alpha 1.

Circular Dichroism↗

Retro-all-D and retro isomers of a formyl-methionyl peptide chemoattractant: an insight into the mode of binding at the receptor on rabbit neutrophils.

The retro-all-D analog and retro isomer of the formyl-methionyl-carboxamide-tripeptide chemoattractant, CHO-L-Met-L-Leu-L-Phe-NH2, namely CHO-D-Phe-D-Leu-D-Met-NH2 and CHO-L-Phe-L-Leu-L-Met-NH2, respectively, have been synthesized in solution by classical methods and fully characterized. The tetrapeptide CHO-L-Phe-Gly-L-Leu-L-Met-NH2, representing the C-terminal portion of the tachykinin, Substance P, and resembling the sequence of the retro isomer, has also been synthesized and characterized. The three N alpha-formylated tripeptide amides, prepared in order to obtain a deeper insight into the model of binding at the formyl peptide chemotactic receptor on rabbit neutrophils, have been tested for their ability to induce granule enzyme secretion from rabbit peritoneal neutrophils. The retro isomer, CHO-L-Phe-L-Leu-L-Met-NH2 is approximately 100-fold less active, the retro-all-D analog, CHO-D-Phe-D-Leu-D-Met-NH2 approximately 10,000-fold less active and the Substance P analog CHO-L-Phe-Gly-L-Leu-L-Met-NH2 1000-fold less active than the parent formyl peptide chemoattractant, CHO-L-Met-L-Leu-L-Phe-NH2. We interpret these results to indicate that a precise alignment of amino acid side chains as well as backbone amide bonds is an important factor involved in the receptor recognition of the formyl tripeptide chemoattractant.

Animals↗

Nuclear magnetic resonance of protamines. A 1H-NMR study of the interaction of clupeine fractions with mononucleotides.

The interaction of the three clupeine fractions, YI, YII, Z, and salmine fraction AI with mononucleotides has been examined by means of 1H nuclear magnetic resonance. The results obtained are interpreted in terms of electrostatic interactions between positive arginine guanidinyl groups and negative nucleotide phosphates. In addition, clupeine fraction YI and salmine fraction AI exhibit with guanine and adenine nucleotides a more specific interaction that leads to the formation of large aggregates in solution. The experimental data presented in this work demonstrate that the strength of interaction between clupeine YI and salmine AI with mononucleotides follows the order: 5'-dTMP approximately equal to 5'-dCMP much less than 5'-dAMP less than 5'-dGMP approximately equal to 5'-GMP.

Adamantane↗

Long polypeptide 3(10)-helices at atomic resolution.

The crystal-state preferred conformation of the terminally blocked homooctapeptide from the C(alpha,alpha)-dimethylated alpha-aminoisobutyric acid (Aib) residue, pBrBz-(Aib)(8)-OBu(t), in which pBrBz is para-bromobenzoyl and OBu(t) is tert-butoxy, determined by x-ray diffraction analysis using direct methods, was found to be a 3(10)-helix stabilized by six consecutive intramolecular N-H....O=C hydrogen bonds of the C(10)-III (or III') type. This is the first observation at atomic resolution of a regular 3(10)-helix longer than two complete turns. The solid-state structural analysis was extended to the terminally blocked, alpha-aminoisobutyric acid-rich octapeptide corresponding to the 2-9 sequence of the peptaibol antibiotics emerimicins III and IV, pBrBz-Aib(3)-L-Val-Gly-L-Leu-Aib(2)-OMe. Again, this peptide adopts a (right-handed) 3(10)-helical structure, although slightly distorted at the level of the L-leucine residue. The role of specific amino acid sequence and peptide main-chain length in stabilizing either the 3(10)- or the alpha-helical conformation and their possible implications on the nature of the channel formed by peptaibol antibiotics in the membrane are also briefly discussed.

Journal Article↗

Solid state and solution conformation of Boc-L-Met-Aib-L-Phe-OMe. Beta-turn conformation of a sequence related to an active chemotactic peptide analog.

The conformation of the peptide Boc-L-Met-Aib-L-Phe-OMe has been studied in the solid state and solution by X-ray diffraction and 1H n.m.r., respectively. The peptide differs only in the N-terminal protecting group from the biologically active chemotactic peptide analog formyl-L-Met-Aib-L-Phe-OMe. The molecules adopt a type-II beta-turn in the solid state with Met and Aib as the corner residues (phi Met = -51.8 degrees, psi Met = 139.5 degrees, phi Aib = 58.1 degrees, psi Aib = 37.0 degrees). A single, weak 4----1 intramolecular hydrogen bond is observed between the Boc CO and Phe NH groups (N---O 3.25 A, N-H---O 128.4 degrees). 1H n.m.r. studies, using solvent and temperature dependencies of NH chemical shifts and paramagnetic radical induced line broadening of NH resonances, suggest that the Phe NH is solvent shielded in CDCl3 and (CD3)2SO. Nuclear Overhauser effects observed between Met C alpha H and Aib NH protons provide evidence of the occurrence of Met-Aib type-II beta-turns in these solvents.

Crystallization↗

Molecular structure of peptaibol antibiotics: solution conformation and crystal structure of the octapeptide corresponding to the 2-9 sequence of emerimicins III and IV.

The infrared absorption and 1H nuclear magnetic resonance analyses of chloroform solutions of the terminally-blocked segment corresponding to the 2-9 sequence of emerimicins III and IV, -(Aib)3-L-Val-Gly-L-Leu-(Aib)2-, are consistent with the presence of a 3(10)-helical structure of high thermal stability. The crystal structure of the octapeptide, obtained by X-ray diffraction indicates the formation of a right-handed 3(10)-helix, stabilized by six consecutive intramolecular N-H....O:C H-bonds, slightly distorted at the level of the L-Leu residue.

Amino Acid Sequence↗

Synthetic homo-oligomethionine chemoattractants. Conformation-activity study.

Using solution methods, we have synthesized several series of L-methionine homo-oligopeptides from the dipeptide to the hexapeptide with either a free alpha-carboxyl function or different C-blocking groups (methoxy, benzyloxy, benzylamino) and with N-blocking groups of either the amide type (formyl, pivaloyl) or the urethane type (tert.-butyloxycarbonyl). Compounds were compared to determine the combined effect of main-chain length and presence and nature of N- and C-blocking groups on conformation-activity relationship. Each peptide was tested for its ability to induce rabbit peritoneal polymorphonuclear leukocytes in the presence of cytochalasin B to secrete granule enzymes. In parallel, a conformational analysis was carried out in the solid state and in solution, using infrared absorption and circular dichroism. The biological and conformational data are discussed in relation to a recently proposed model of the chemotactic peptide receptor of rabbit neutrophils.

Animals↗

Self-association and solubility of peptides. Solvent-titration study of protected C-terminal segments of porcine secretin.

Self-association of peptides (related to the C-terminal sequence of porcine secretin) in methylene chloride was disrupted by adding dimethylsulfoxide in increasing amounts. This structural transition was monitored by the disappearance of the amide-I C = O stretching band of strongly intermolecularly hydrogen-bonded molecules (1625-1630 cm-1) in the infrared absorption spectra. The effects induced by main-chain length and sequence, type of N alpha-protection, and concentration were assessed. Hexamethylphosphortriamide was compared for its structure-disrupting properties to dimethylsulfoxide. The increasing propensity to aggregate displayed by these peptides is paralleled by a decrease in their solubility. The impact of these results on the planning of peptide syntheses is briefly discussed.

Animals↗

Structural requirements for formyl homooligopeptide chemoattractants.

Using solution peptide synthesis, we have made three series of N alpha-formylated homooligopeptides, from the dipeptide to the heptapeptide, derived from L-methionine, L-norleucine, and S-methyl-L-cysteine and related to the chemotactic peptide N alpha-formylmethionylleucylphenylalanine. Compounds were prepared to determine the combined effects of the main-chain length and the presence of a sulfur atom in side-chain gamma- and delta-positions. Each peptide was tested for its ability to induce rabbit peritoneal polymorphonuclear leukocytes in the presence of cytochalasin B to secrete granule enzymes. In parallel, a conformational analysis was carried out in the solid state and in solution, using infrared absorption and circular dichroism. We examined these peptides in solvents of widely different polarities, i.e., chloroform, 2,2,2-trifluoroethanol, 1,1,1,3,3,3-hexafluoropropan-2-ol, and mixed organic-aqueous media. The tendencies to form antiparallel-chain beta-associated and folded structures were determined. The biological and conformational data are described in terms of a model of the chemotactic peptide receptor of rabbit neutrophils recently proposed by Freer et al. (1982) [Freer, R.J., Day, A.R., Muthukumarswamy, N., Pinon, D., Wu, A., Showell, H.J., & Becker, E.L. (1982) Biochemistry 21, 257-263]. In the three N alpha-formylated C-methoxy homooligopeptide series tested, the highest level of activity attained is at the tetrapeptide or pentapeptide stage, confirming the suggestion that the formylpeptide receptor is large enough to accommodate a peptide with at least four amino acid residues.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Chain-length dependence for secondary structure formation of homo-oligopeptides from epsilon-tert.-butyloxycarbonyl-L-lysine with a lipophilic C-terminal group.

A solid-state and solution analysis of the homo-oligopeptides from epsilon-tert.-butyloxycarbonyl-L-lysine with p-oxymethylbenzylcholestan-3 beta-yl succinate as C-terminal group, using infrared absorption and circular dichroism, is described. The occurrence of intermolecular beta-structure is seen in the solid state and in solvents of low polarity, e.g. methylene chloride, for peptides of intermediate size (from pentamer to decamer). Conversely, the eicosapeptide exhibits a high percentage of alpha-helical structure both in the solid state and in 2,2,2-trifluoroethanol. The influence of the C-terminal group on the conformational preferences of the epsilon-blocked homo-oligolysines in the solid state and in organic solvents appears negligible.

Chromatography, Thin Layer↗

Structure of N-tert-butyloxycarbonyl-D-leucyl-L-phenylalanylethanolamide. An N alpha-protected analogue of the COOH-terminal dipeptide of linear gramicidins.

Solid state conformational analysis of N-tert-butyloxycarbonyl-D-leucyl-L-phenylalanylethanolamide (t-Boc-D-Leu-L-Phe-EA), an N alpha-protected analogue of the COOH-terminal dipeptide of linear gramicidins, carried out by x-ray diffraction, has indicated that the molecules are characterized by an N-H...O = C intramolecularly hydrogen-bonded chain reversal of the beta-turn II' type. One of the two independent molecules in the asymmetric unit shows an additional intramolecular hydrogen bond of the O-H...O = C type, linking the hydroxyl function of the COOH-terminal ethanolamide moiety to the carbonyl oxygen of the urethane N-protecting group. This is the first experimental evidence for a beta-turn conformation fused with the oxy analogue of an alpha-turn. The results of an investigation in a solvent of low polarity (deuteriochloroform), using infrared absorption and 1' nuclear magnetic resonance, strongly support the view that an intramolecularly hydrogen-bonded beta-turn conformation is the most populated conformation of t-Boc-D-Leu-L-Phe-EA molecules at high dilution. In the self-association process, taking place at high concentration, the urethane and peptide NH groups are involved as hydrogen-bonding donors.

Amino Acid Sequence↗

First observation of a beta-turn conformation fused with the oxy-analogue of an alpha-turn: the molecular structure of a model peptide of the C-terminal part of gramicidin A.

The molecular structure of N-tert-butyloxycarbonyl-D-leucyl-L-phenylalanyl ethanolamide (t-Boc-D-Leu-L-Phe-EA), a protected analogue of the C-terminal dipeptide of the membrane-active linear antibiotic gramicidin A, has been determined by X-ray diffraction. One of the two independent molecules in the asymmetric unit is characterized by a chain reversal stabilized by an intramolecular, three-centre, double hydrogen bonding. It represents the first experimental evidence for a beta-turn conformation fused with the oxy-analogue of an alpha-turn.

Chemical Phenomena↗

Protected 1-3 segment of the peptaibol antibiotics alamethicin and hypelcin. Solid-state and solution study of a stereochemically constrained linear peptide.

A study of the modes of folding and self-association of Z-Aib-L-Pro-Aib-OMe (the protected 1-3 segment of the peptaibol antibiotics alamethicin and hypelcin) in the solid state was performed using i.r. absorption and X-ray diffraction. The stereochemically constrained tripeptide molecules adopt a 4 leads to 1 intramolecularly H-bonded form (beta-turn), where the single intramolecular H-bond is found between the peptide N-H group of the Aib3 residue and the urethane C = O group of the N-blocking benzyloxycarbonyl moiety. This folded structure is stabilized by an intermolecular H-bond between the urethane N-H group of the Aib1 residue and the peptide C = O group of the Pro2 residue of a symmetry related molecule. According to the i.r. absorption data, in CH2Cl2 and TMP solutions the same intramolecularly H-bonded form occurs as that found in solid state. Compared to the situation in the solid state, in CH2Cl2 and TMP solvation of the urethane N-H group replaces self-association (through the same N-H group). The results are also discussed in relation to those obtained for other protected -Aib-X-Aib- (X = Aib, L-Ala, L-Val) tripeptide segments of peptaibol antibiotics.

Alamethicin↗

Bioorganic stereochemistry. A study of the peptide oxazolones from Z-(Aib)n-OH (n = 2-4) in the solid state.

An investigation of the preferred conformations and modes of self-association of the peptide oxazolones from Z(-Aib-)n-OH (n = 2-4) in the solid state has been performed by infrared absorption. More detailed information on the peptide oxazolone from Z(-Aib-)3OH(2) has been obtained using X-ray diffraction. In this compound the conformations of the first two Aib residues differ substantially, only the N-terminal one being found in the usual 3(10)-(or alpha-) helical region of the Ramachandran map. The C = N-bond of the oxazolone group is not conjugated with the lactone moiety. A very weak intermolecular interaction occurs between the urethane N-H and the carbonyl group of the oxazolone ring.

Aminoisobutyric Acids↗