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Biomedical subjects

A M Tamburro

Publications and source records attributed to A M Tamburro.

At least 19 recordsLinked to original sources

Conformational and electrostatic properties of V-G-G-V-G, a typical sequence of the glycine-rich regions of elastin. An ab initio quantum molecular study.

The conformational analysis and electrostatic properties of the monomeric sequence V-G-G-V-G of the glycine-rich regions of elastin is presented with the aim of explaining NMR and CD experimental results. On the basis of the molecular model NH+3-V-G-G-V-G-COO, Gaussian 92 quantum-molecular computations were performed by using principally an ab initio method at the 3-21G level and AM1. The occurrence of local secondary structures and of beta I, beta II, beta II' and VIa turns is discussed. Our results clearly demonstrate that the transconformations beta I-->half turn (which was invoked to explain experimental results) and beta I-->beta II' are theoretically allowed.

Computer Simulation

Conformational study of the Thr-Gly repeat in the Drosophila clock protein, PERIOD.

Recent results with the Drosophila melanogaster period gene suggest that the apparently conserved repetitive motif (Thr-Gly)n encoded by this gene may play an important role in the temperature compensation of the circadian clock. We have therefore initiated both a theoretical and experimental conformational analysis of (Thr-Gly)n peptides. By using a build-up method, it is clear that the hexapeptide (Thr-Gly)3 represents a 'conformational monomer' and generates a stable type II or type III beta-turn. Circular dichroism and nuclear magnetic resonance spectra of synthetic (Thr-Gly)3 and poly(Thr-Gly) peptides revealed that these peptides exhibit flexible conformations, especially in more polar environments and at higher temperatures. We speculate that this flexibility may illuminate our understanding of both the molecular mechanism of temperature compensation and the systematic geographical distribution within Europe of the Thr-Gly length polymorphism in D. melanogaster.

Animals

Fractal aspects of elastin supramolecular organization.

The supramolecular organisation of elastin and its soluble derivative alpha-elastin were studied by scanning and transmission electron microscopy. It was found a variety of different structures including filaments, fibrils, fibres, networks and dendritic, leaf-like forms. Self-similar patterns, extending for at least three orders of magnitude, were revealed, strongly suggesting the presence of fractal objects. The fractal dimension D was determined by using the box counting method.

Animals

Conformational modeling of elastin tetrapeptide Boc-Gly-Leu-Gly-Gly-NMe by molecular dynamics simulations with improvements to the thermalization procedure.

Molecular Dynamics Simulations (MD) at Constant-Temperature or Constant-total Energy for the conformational Global-Minimum (GM) of elastin tetrapeptide Boc-Gly-Leu-Gly-Gly-NMe have been performed. The thermalization problem concerning the initial state of Constant-Temperature MD has been solved developing two effective strategies. In the first one, the run starts from the room-temperature state reached by Molecular Dynamics Simulated Annealing (SA). In the second one, one starts from the annealed-state at low-temperature and performs a long constant-low-temperature run until the initial conformer is perfectly equilibrated. Then, the low-temperature equilibrated-state is used as initial state for MD at room-temperature. heuristic criteria on order to define the onset of steady-state have been established monitoring the hystories of collective parameters (e.g., the total energy, temperature, end-to-end distance, etc.) and their amplitude fluctuations. Moreover, the equilibrium between the system and the heat bath is verified analyzing the total linear momentum conservation by the time evolution of center mass velocity. The slow drift of total energy during Constant-total Energy MD has been corrected using a loose coupling between the system and the heat bath. Moreover, we have verified that the roto-translational motions do not affect significantly the properties of molecular vibrations. The librations of peptide unit inside the type II beta-turn [Gly1]C = 0 ... HN[Gly4], previously detected, were confirmed. Large -Gly-Gly- chain motions were identified and modeled as fluctuations occurring between the tetratepeptide GM and the saddle-point corresponding to the transition state of the conversion toward the extended-chain conformation. All these peptide motions could contribute to the elasticity mechanism of elastin.

Amino Acid Sequence

Migration of monocytes in the presence of elastolytic fragments of elastin and in synthetic derivates. Structure-activity relationships.

YGVG and GLVPG, two new chemokinetic peptides, were identified in elastolytic digests of elastin, besides the known chemoattractant hexapeptide VGVAPG. In order to identify possible sequences responsible for the chemotactic and chemokinetic activities and to obtain structure-activity relationships we synthesized some analogues of these peptides: FGVG (an analogue of YGVG), GVAPG and VGAPG (derived from the hexapeptide by deletion of Val1 or Val3). FGVG has a higher chemotactic activity than YGVG (chemotactic indices of 0.62 and 0.49, respectively, at 10(-11) M) and is both chemotactic and chemokinetic. Checkerboard analysis demonstrated that both peptides derived from the hexapeptide present, in addition to the chemotactic activity, a chemokinetic activity. The chemotactic index of GVAPG is 0.66 at 10(-10) M, while for VGAPG it is 0.86 at 10(-9) M. These results indicate that the deletion of the N-terminal residue of the elastin chemotactic peptides, VGVAPG and GFGVG, gives rise to chemokinetic activity. CD and NMR studies showed that all peptides are largely unordered in aqueous solution.

Amino Acid Sequence

Solid-state studies on synthetic fragments and analogues of elastin.

A series of synthetic fragments and analogues of elastin have been investigated, in the solid state, by means of differential scanning calorimetry and thermally stimulated current. Most of the polypeptides were shown to possess both amorphous regions and segments of long-range order. Water, which interacts preferentially with the amorphous zones, behaves as plasticizer, i.e. facilitates the localized motions of polypeptide chains. The results obtained have been correlated with elastin elasticity, in particular as far as the fundamental destructuring role of water is concerned.

Amino Acid Sequence

An aggregating elastin-like pentapeptide.

Synthetic VGGVG, a "monomeric" unit of the glycine-rich regions of elastin, has been investigated for its molecular and supramolecular properties. In aqueous solution the pentapeptide showed conformational features strongly concentration-dependent. CD and NMR studies suggested a partial unfolding on increasing the concentration. Electron microscopy, on the other hand, evidenced extensive aggregation of the pentapeptide yielding elastin-like supramolecular structures constituted either by twisted ropes or by banded fibrils.

Amino Acid Sequence

Molecular dynamics study of the conformational behavior of a representative elastin building block: Boc-Gly-Val-Gly-Gly-Leu-OMe.

The conformational behavior of the synthetic peptide, Boc-Gly-Val-Gly-Gly-Leu-OMe, containing the X-Gly-Gly and Gly-Gly-X (X = Val or Leu) repeating sequences and constituting a fragment of elastin was investigated by molecular mechanics and molecular dynamics (MD) simulation. The results suggest that, irrespective of the approximations used, the molecule shows a manifold of low energy conformations characterized by gamma-turns and type II beta-turns. Furthermore, MD simulations point out a conformational floppiness due to very low barriers between different conformations. Experimental CD measurements in a virtually apolar medium (dioxane--epsilon = 2.209), which better mimics the vacuum conditions of the simulation, support the theoretical results. The general emerging picture, indicating the molecule as characterized by a combination of flexibility with conformational preferences, is in agreement with previous experimental findings and enriches of new aspects the description of the microscopic behavior of this molecule suggesting more detailed interpretation of previous data.

Amino Acid Sequence

Phase transitions and chain dynamics, in the solid state, of a pentapeptide sequence of elastins.

Differential scanning calorimetry (d.s.c.) and thermally stimulated current (t.s.c.) have been applied to the study of thermal transitions and dielectric relaxations of a pentapeptide sequence: Gly-Leu-Gly-Gly-Val of elastin. The manifestation of the glass transition has been observed by both techniques. The analysis of the fine structure of t.s.c. spectra reveals the existence of local order in the amorphous phase upon physical ageing. In the 'true' amorphous phase, cooperative motions of sequences of various length are observed. The corresponding activation parameters are characteristic of the 'structure' of the amorphous phase and might be used as reference for further studies.

Amino Acid Sequence

Synthesis and structural studies of a pentapeptide sequence of elastin. Poly (Val-Gly-Gly-Leu-Gly).

Poly (Val-Gly-Gly-Leu-Gly), a polypeptide mimicking the physico-chemical properties of the glycine-rich regions of elastin, has been synthesized and studied both in solution and in the aggregated state. By comparison, also the conformation of different "monomeric" units has been investigated. The polymer showed increased disorder with respect to the "monomers", the molecular conformation being accounted for by a more or less random collection of isolated beta-turns. Nevertheless, in the solid state the polymer is able to adopt supramolecular structures reminiscent of those found for elastin.

Amino Acid Sequence

Polypeptide models of elastin: CD and NMR studies on synthetic poly(X-Gly-Gly).

Poly(X-Gly-Gly), simple structural models for the hydrophobic, proline-devoid, regions of elastin, have been synthesized and studied by circular dichroism and NMR spectroscopies. The results gave evidence of type II beta-turns as the only ordered structure present in the polymers. The stability of the turns has been shown to decrease on hydration and to increase in the series Leu less than Ala less than Val less than Ile.

Circular Dichroism

Spectroscopic studies on elastin-like synthetic polypeptides.

Spectroscopic studies on synthetic polypeptides containing the unit-X-G-G (X=V or L) are reported. The sequences, constituting either fragments or model of elastin, were shown to adopt type II beta-turns together with an ensemble of unordered conformations. Furthermore, it was found that the stability of the beta-turns was depending on the nature of the X residue, on the hydration of the chain and, in the case of the sequence G-V-G-G-L, was decreasing by increasing the length of the chain.

Amino Acid Sequence

Electron microscopic evidence for elastin-like supramolecular organization in synthetic polytripeptides.

Electron microscope studies have been carried out on polytripeptides comprising the sequences -Pro-X-Gly- and -X-Pro-Gly- (X = Val, Ile, Met). These polymers have previously been shown to either contain or lack secondary structure. The formation of aligned filaments and also, in some cases, of banded fibers has been demonstrated. Independent of predicted solution conformation the supramolecular structures appeared to be very similar to those previously demonstrated for elastin and its soluble derivatives. The possibility that supramolecular organization is not a necessary consequence of molecular ordered structures is put forward and discussed. With respect to the molecular structure of elastin, the results suggest caution in the interpretation of electron microscope observation at the molecular scale.

Amino Acid Sequence

Conformational studies on polypeptide models of collagen. Poly(Gly-Pro-Val), poly(Gly-Pro-Met), poly(Gly-Val-Pro) and poly(Gly-Met-Pro).

The title polytripeptides were synthesized and studied experimentally, by circular dichroism, and theoretically, by quantum mechanical methods. With the exception of poly(Gly-Pro-Val), which was found to be essentially structureless in solution, the other polymers adopt folded conformations, most probably of type II beta-bends. Conclusions from theoretical studies were generally in agreement with the experimental results. In particular, it is noteworthy that the optimized (phi, psi) maps for poly(Gly-Pro-Met) showed the absolute minimum (phi = 60 degree, psi = 0 degrees) located inside the beta II bend space.

Circular Dichroism

Experimental and theoretical conformational studies on polypeptide models of collagen. Poly(Gly-Pro-Ile) and poly(Gly-Ile-Pro).

The synthetic polytripeptides poly(Gly-Pro-Ile) and poly(Gly-Ile-Pro) were studied both experimentally (mainly by circular dichroism spectroscopy) and theoretically by quantum mechanical methods. Poly(Gly-Ile-Pro) adopts a collagen-like structure under favourable conditions while the isomeric poly(Gly-Pro-Ile) does not. Theoretical studies emphasize severe intrastrand interactions which limit the main chain conformations in the case of poly(Gly-Ile-Pro). On the other hand, both the side cahin and the backbone in poly(Gly-Pro-Ile) can take up many different local conformations. Therefore, it seems that the conformational behaviour of synthetic polytripeptides can be at least partially explained in terms of local interactions.

Amino Acid Sequence

Interactions of human and bovine elastins with lipids: their proteolysis by elastase.

The elastase-catalyzed hydrolysis of elastin extracted from young and old human aortas was compared with that of elastin from a bovine source. The course of the elastolysis was followed in the presence of sodium taurocholate and some unsaturated fatty acids. The results obtained suggest interesting correlations between the effects of aging on elastin, interaction of elastin with lipids and its susceptibility to proteolysis by elastase.

Adolescent