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Biomedical subjects

R Tomatis

Publications and source records attributed to R Tomatis.

131 records · Page 8Linked to original sources

Reversed-phase HPLC study on the in vitro enzymic degradation of dermorphin.

A high-performance liquid chromatographic (HPLC) method for the separation of the opioid heptapeptide dermorphin and related fragments has been developed. The chromatographic system was applied in the study of the kinetics of degradation of dermorphin (Der) in various tissues. Der was found to be extremely resistant to human and rat plasma (T 1/2 greater than 180 min). Upon incubation with homogenates of rat brains and kidneys, Der was cleaved with a half-life of 20.8 +/- 2.2 min and 2.4 +/- 0.3 min respectively. The catabolite formed was identified, in both tissues, as the N-terminal tetrapeptide H-Tyr-D-Ala-Phe-Gly-OH. The stability to rat kidney and brain of the N-terminal hexa- and pentapeptides and of the [4 psi 5, NHCO] Der analogue was also investigated. The nature of the enzyme systems involved in the in vitro degradations is discussed.

Analgesics, Opioid↗

Interaction of deltorphin with opioid receptors: molecular determinants for affinity and selectivity.

Opioid receptor analyses of deltorphin A (H-Tyr-D-Met-Phe-His-Leu-Met-Asp-NH2) analogues indicated the following: (a) increased negativity differentially affected affinities (Ki) and selectivity (Ki mu/Ki delta); (b) shifted sequence heptapeptides, [Asp5,Leu6,Met-NH2(7)] and [Asp4,His5,Leu6,Met-NH2(7)], reversed selectivity (delta-->mu); (c) substitutions at positions 4, 5, and 6 diminished selectivity, with changes in residue 5 being the most detrimental; (d) C-terminal deletions differentially effected Ki. These are the first data to demonstrate a reversal of delta selectivity in heptapeptides containing a negative charge and indicate that modifications in affinity occur through changes in both anionic and hydrophobic properties of residues at specific positions in the peptide. Deltorphin analogues might also be applied to differentiate between opioid receptor subsites.

Amino Acid Sequence↗

Symmetry-based inhibitors of HIV-1 protease. Design, synthesis and preliminary structure-activity studies of acylated 2,3-diamino-1-hydroxypropanes and 2,4 diamino-1-hydroxybutanes.

Two series of peptidomimetics containing a novel C(2) pseudosymmetrical hydroxyalkyldiamino core structure were prepared from amino acid starting materials and tested for inhibitory activity against the HIV-1 protease (HIV-1 Pr) and the virus in cell culture. In the 2,3-diamino-1-hydroxypropane series, compound 6a, containing P1/P1(I) benzyl and P2/P2(I) Fmoc substituents, displayed modest HIV-1 Pr inhibition (IC(50) = 430 nM). The corresponding 2,4-diamino-1-hydroxybutane derivative (6b) was the best inhibitor of the series (IC(50) = 160 nM). Interestingly, 6a and 6b showed satisfactory inhibition of HIV replication in cell culture (ED(50) = 340 and 110 nM, respectively), a result which suggests good cell membrane penetration by this class of compounds.

Acylation↗

Solution structure of deltorphin I at 265 K: a quantitative NMR study.

Deltorphin I, a delta-selective opioid peptide, has been studied in a DMSOd6/H2O cryoprotective mixture by two-dimensional (2D) NMR spectroscopy in the temperature range 260 K to 305 K. The high viscosity of the solvent at low temperature mimics a distinctive physico-chemical feature of cytoplasm and allows the measurement of a NOESY spectrum rich in intra- and inter-residue effects. Backbone NOEs at 265 K can be calculated with good accuracy in terms of only two limiting conformers: one folded, with a mole fraction of 0.30, and another extended with a mole fraction of 0.70. This calculation is still a rough approximation of the complex conformational equilibria existing in solution but, to the best of our knowledge, is the first one for a flexible peptide, and represents an encouraging starting point for a quantitative evaluation of NMR data of small, flexible peptides in solution. The folded conformer consistent with observed NOEs has a shape surprisingly similar to those of unrelated, rigid, delta-selective opiates.

Amino Acid Sequence↗