Search PubMed⌕ Search

Biomedical subjects

C Toniolo

Publications and source records attributed to C Toniolo.

At least 127 records · Page 7Linked to original sources

Preferred conformation of the benzyloxycarbonyl-amino group in peptides.

Structural parameters, derived from X-ray crystallographic data, have been compiled for 35 derivatives of amino acids, peptides, and related compounds, which contain the N-terminal benzyloxycarbonyl (Z) group. The geometry of the urethane moiety of this end group is closely similar to that of the tert-butoxycarbonyl (Boc) group, except for a relaxation of some bond angles because the Z group is sterically less crowded than the Boc group. For the same reason, the Z group has greater conformational flexibility. As a result, packing forces in the crystal may cause greater deformations of bond angles, resulting in larger variations of observed bond lengths and bond angles than in Boc-peptide crystals. The aromatic rings of the Z end groups tend to stack in crystals. Conformational energy calculations indicate that most conformations of Z-amino acid-N'-methylamides and of corresponding Boc derivatives have similar dihedral angles and relative energies, i.e. the nature of the N-terminal end group has little effect on the conformational preferences of the residue next to it. In particular, the computed fraction of molecules with a cis urethane (C-N) bond is similar for the two derivatives: 0.51 and 0.42 in Boc-Pro-NHCH3 and Z-Pro-NHCH3, respectively, and 0.02 in the two Ala derivatives. There exist several computed conformations of Z-Ala-NHCH3 and Z-Pro-NHCH3 in which the phenyl ring and the C-terminal methylamide group are close to each other. Because of favorable nonbonded interactions, such conformations are of low energy.

Amino Acids↗

Conformational characteristics of homo-oligopeptides of O-benzyl-L-tyrosine.

Conformational studies of X[-L-Tyr(Bzl)-]n-series bound to polyethyleneglycol (X = H2, Nps; n = 3-8) in the solid state and in solvents of different polarities and capabilities of forming hydrogen bonds are reported. By using i.r. absorption, the occurrence of the beta-structure in the higher oligomers in the solid state was established. By means of i.r. absorption and CD the onset of that ordered conformation in solution was assessed as a function of chain length. The effects induced by the presence of the N-protecting group and added base, and by changing the nature of solvent on the conformational preferences of the [-L-Tyr(Bzl)-]n homo-peptides were also examined. The 2-nitrophenylsulphenyl chromophoric derivative of the alpha-amino group is proposed as a circular dichroism sensor for beta-structure in peptides.

Chemical Phenomena↗

Peptaibol antibiotics: a study on the helical structure of the 2-9 sequence of emerimicins III and IV.

Solution conformations of the protected 2-9 segment of the peptaibol antibiotics emerimicins III and IV [alpha-aminoisobutyric acid (Aib)]3-L-Val-Gly-L-Leu-(Aib)2 and the related short sequences benzyloxy-(Aib)3-L-Val-OMe and benzyloxy-(Aib)3-L-Val-Gly-OMe have been investigated by circular dichroism studies. For the latter two compounds the structural preferences in the solid state have been assayed by x-ray diffraction analyses. The experimental data described here, along with those previously reported, support the view that the shortest Aib-containing segments (from tri- through pentapeptides) adopt the 3(10)-helical structure both in solution and in the solid state. In contrast, the octapeptide appears to adopt the alpha-helical structure in solution. The role of peptide chain length and specific amino acid sequences in stabilizing either of the two helical structures and hence their possible implications on the nature of the channel formed by peptaibol antibiotics in the membrane are also briefly outlined.

Alkylation↗

Nuclear magnetic resonance of protamines. A 13C relaxation study of the three main fractions of clupeine.

The three main fractions of clupeine, the protamine extracted from herring sperm, have been investigated by 13C nuclear magnetic resonance techniques. The dynamic behaviour, examined through the evaluation of the spin lattice relaxation times (T1) of individual carbon resonances assigned to both backbone and side chains, reveals interesting features. The relaxation times of backbone alpha-carbons, interpreted on the basis of an axially symmetric ellipsoid, point to the clupeine fractions as being essentially extended in aqueous solution. These times remain constant along the polypeptide chain and are of the order of 0.16 +/- 0.02 s. Conversely, the side chains show different flexibilities in the presence of monophosphate counterions, thus demonstrating a diverging behaviour which may be biologically relevant. In particular, the side-chain flexibilities of fraction YI decrease, while those of fractions Z and YII are either constant or increase. Comparison of these data with the viscosity measurements helps in explaining the viscosity changes observed in the presence of phosphate.

Amino Acid Sequence↗

Structure of N-acetyl-D-alanyl-D-alanine hydrate. An analogue of the COOH-terminal segment of peptidoglycan of bacterial cell walls.

The solid state conformational analysis of Ac-D-Ala-D-Ala-OH.H2O, carried out by infrared absorption and X-ray diffraction, has indicated that the molecules are not extended in a regular beta conformation, but rather that they are partially folded, the phi, psi torsional angles of the COOH-terminal residue in particular being in the region of the left-handed alpha helix of the Ramachandran map. The acetylamino and peptide groups ar found in the usual trans conformation, the latter, however, exhibiting a deviation from rigid planarity. Only intermolecular hydrogen bonds occur in the crystal state. The solution conformational analysis, performed by infrared absorption and CD, has revealed that the amount of intramolecular N--H ... O==C hydrogen-bonded folded forms, if any, should be extremely small, even in deuteriochloroform at high dilution. In water, solvated, unordered species largely predominate.

Bacteria↗

Preparation and conformational study of clupeine fragments.

Fragments of clupeines, YI, YII, and Z of divergent chain length and different amino acid composition were prepared by digestion with thermolysin and a mixture of carboxypeptidases A and B, and their conformational preferences examined as a function of pH, added salts, presence of a helix-supporting solvent, and temperature. All these highly basic oligopeptides adopt an essentially unordered conformation in aqueous solution. 2-Chloroethanol supports in various amounts the onset of the right-handed alpha-helical form in the carboxy-peptidase fragments.

Amino Acid Sequence↗

Interaction of the three main components of clupeine with glycosaminoglycans.

The interactions between each of the three main components of clupeine (YI, YII and Z) and the glycosaminoglycans chondroitin sulfate, heparin and hyaluronic acid were studied with circular dichroism spectroscopy. The induced dichroism is a measure of relative complex stability, which increases with the number of sulfate groups on the glycosaminoglycan. Measuring the induced dichroism as a function of mole ratio of disaccharide to arginine establishes the stoichiometry of the complexes. For a given glycosaminoglycan, the induced dichroism depends on the clupeine, increasing the order YI less than YII less than Z.

Chondroitin Sulfates↗

Secondary structure prediction of fish protamines.

The secondary structures of thirteen fish protamines have been predicted by the statistical method of Chou and Fasman as well as by two modifications of it. The occurrence of phosphorylatable residues in predicted beta-turns is discussed. The results are compared with available spectroscopic observations.

Amino Acid Sequence↗

Preferred conformation of the tert-butoxycarbonyl-amino group in peptides.

Structural parameters, derived from X-ray crystallographic data, have been compiled for amino acid and linear peptide derivatives which contain the N-terminal tert-butoxycarbonyl (Boc) group or its next higher homolog, the tert-amyloxycarbonyl group. The comparison of the geometry of the urethane group in Boc-derivatives with that of the peptide group shows small differences in bond angles about the trigonal carbon, because of altered interactions when a C alpha H group of a peptide unti is replaced by an ester oxygen. In contrast to the strong preference of the peptide bond for the trans form (except when it precedes proline), the urethane amide bond adopts both the cis and trans conformations in crystals. The cis urethane conformation is preferred in crystals of compounds with a tertiary nitrogen (such as Boc-Pro) or in structures stabilized by strong intermolecular interactions. Conformational energy computations on Boc-amino acid N'-methylamides indicate that the trans and cis conformations of the urethane amide bone have nearly equal energies (even for amino acids other than proline), in contrast to the peptide bond, for which the trans conformation has a much lower energy. The computed increase of the cis content in Boc-amino acid derivatives (as compared with the corresponding N-acetyl derivatives) is consistent with the observed distributions of conformations in crystal structures and with n.m.r. studies in solution. Usually, the substitution of a Boc for an N-acetyl end group does not alter the conformational preferences (as indicated by phi, psi values and relative energies) of the amino acid residue which follows the end group when the amide bond is trans. Particular conformations, however, can be stabilized by strong attractive interactions between some side chains (e.g. that of phenylalanine) the the bulky Boc end group.

Chemical Phenomena↗

Intramolecularly hydrogen-bonded peptide conformations.

Over the past few years the possible occurrence of intramolecularly hydrogen-bonded structures in linear and cyclic peptides has attracted increasing attention. In this review emphasis is given to solid-state studies, particularly by X-ray diffraction and infrared absorption techniques. Conformational energy calculations are also considered. The discussion is focused both on model peptides and biological activity polypeptide molecules. The tetrapeptide system (Formula: see text), examined allows one to discuss the extended C5 structure and the various folded conformations, namely the C7 (gamma-turn), C8, C10 (beta-turn), C11, and C13 conformations. The four latter forms may include cis peptide configurations. The oxy-analogs to the C7, C10, and C13 conformations and structures containing bifurcated hydrogen bonds are also discussed. The last sections describe intramolecularly hydrogen-bonded peptide structures involving: (1) a side-chain group, (2) the N-protecting group (in synthetic model compounds), and (3) a beta-amino acid.

Chemical Phenomena↗

Interaction of alpha-L-aspartyl-D-phenylalanine methyl ester with the receptor site of the bitter taste.

The analysis of the structure-activity relationship previously performed on the sweet L,L isomer of Asp-Phe-OMe was extended to the bitter L,D diastereoisomer. A combination of NMR measurements and of an original method of PEM calculations gives a description of the conformational state of the L,D isomer that can be effectively used to study the interaction with a previously proposed model of the bitter taste receptor site.

Aspartame↗

Protamines. II. Circular dichroism study of the three main components of clupeine.

The three main components YI, YII, and Z of clupeine, a protamine from herring, have been purified and characterized. The conformational preferences of clupeines have been examined as a funciton of pH, temperature, added salts, and presence of structure-disrupting agents and helix-supporting solvents using circular dichroism. It was found that these small basic proteins assume predominantly an unordered conformation in aqueous solution. Addition of counter ions, in particular perchlorate, and 2-chloroethanol induces in various amounts the onset of the right-handed alpha-helical conformation. Urea favors the statistical coil state. It was also demonstrated that in the 0.1--4.0 . 10(-1) M range, in contrast to clupeines YI and Z, the circular dichroic properties of the YII component do not seem to be sensitive to the addition of mono- and diphosphate.

Amino Acids↗

13C Nuclear magnetic resonance of protamines. The three main components of clupeine.

The three main components (called YI, YII and Z) of clupeine a protamine from herring have been isolated and characterized by 13C nuclear magnetic resonance. Resonance belonging to the many different amino acid carbon atoms are observable and assigned. The effect of urea on the clupeine fractions points to the molecules being essentially in extended form in 2H2O solutions. Unusual properties of clupeine fractions can be observed in the presence of phosphate. Two of the fractions, i.e. YI and Z, show that a partial folding occurs in some well-defined whereas fraction YII remains essentially unaltered.

Animals↗

Conformational analysis of N-(tert.-amyloxycarbony-L-proline in the solid state and in solution.

The solid-state conformational analysis of t-AOC-L-Pro-OH has indicated that the molecules are not folded up to form an oxy-C7 peptide conformation, but rather that they are held together through intermolecular O-H .... 0 = C (urethane) hydrogen bonds. The tertiary amide bond is in the cis configuration. In solvents of high polarity strongly solvated species largely predominate. In cyclohexane solution non-associated and associated (involving the carboxyl C = O as the proton acceptor) species are simultaneously present. Obviously, the extent of association increases with increasing solute concentration. The amount of the oxy-C7 form, if any, should be extremely small. It is also demonstrated that CD measurements alone can lead to an incorrect picture of the conformational preferences of amino acid derivatives and small peptides in solution.

Adsorption↗

Protamines. III. Synthesis of the tetradecapeptide corresponding to the C-terminal sequence 52--65 of galline.

The synthesis of peptides containing blocks of arginyl residues is proposed through amidination of the corresponding ornithyl analogs. In order to test this strategy the ornithyl analog of the C-terminal sequence 52--65 of galline was synthesized by the conventional method. The amidination reaction, performed on fragments of different length and ornithyl-residue content, quantitatively converts ornithines into arginines. The strategy proposed may represent a powerful tool for the synthesis of protamines and other basic proteins.

Amidines↗

beta sheet formation by L-methionine oligopeptides.

Monodispersed N- and C-protected linear homo-oligomethionines (n = 2- -7) are studied by measurements of circular dichroism in the vacuum ultraviolet region. In the solid state higher members of the series take up a beta-conformation in which both parallel and antiparallel chain arrangements are present. The strong beta-forming tendency of the methionine residue is demonstrated.

Chemical Phenomena↗