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Biomedical subjects

M Delepierre

Publications and source records attributed to M Delepierre.

At least 73 records · Page 4Linked to original sources

Comparison of the bis-intercalating complexes formed between either ditercalinium or a flexible analogue and d(CpGpCpG)2 or d(TpTpCpGpCpGpApA)2 minihelices: 1H- and 31P-NMR analyses.

The 400-MHz 1H- and 162-MHz 31P-nmr have been used to study complexes constituted by (a) the d(TpTpCpGpCpGpApA)2 or the d(CpGpCpG)2 self-complementary oligonucleotides and (b) two bifunctional 7H-pyrido [4,3-c] carbazole dimer drugs, the antitumoral ditercalinium (NSC 366241), a dimer with a rigid bis-piperidine linking chain and its pharmacologically inactive analogue, a dimer with a flexible spermine-like linking chain. Nearly all proton and phosphorus signals have been assigned by two-dimensional (2D) nmr (correlated spectroscopy, homonuclear Hartmann-Hahn, nuclear Overhauser enhancement spectroscopy, 2D 31P (1H) heteronuclear correlated spectroscopy and 31P-31P chemical exchange experiments). Both drugs bis-intercalate into the two CpG sites. The complexes show small differences in the position of the 7H-pyrido [4,3-c] carbazole ring into the intercalation site and possibly in the ribose-phosphate backbone deformation. However, the inactive analogue exhibits a longer residence lifetime in octanucleotide than the ditercalinium does. All these results are discussed in terms of differences in dimer activities.

Base Sequence↗

1H and 31P nuclear magnetic resonance studies of the differences in DNA deformation induced by anti-tumoral 7H-pyrido[4,3-c]carbazole dimers.

Ditercalinium (2,2'-[( 4,4'-bipiperidine]-1,1'-diyldi-2,1-ethane-diyl) bis-[10-methoxy-7H pyrido[4,3-c]carbazolium)tetramethane sulfonate (NSC 366241], a DNA bis-intercalating compound, is a potent anti-tumoral rigid dimer. Previous studies have shown that a reduced flexibility of the linking chain of such a dimer is essential for its biological activity. In order to understand, at the molecular level, the mechanism of action and the structure-activity relationships of this series of DNA intercalators, new dimers with additional methylene groups between the two piperidine rings have been synthesized. Addition of one methylene group in the chain preserved the activity, whereas addition of two methylene groups reduced the cytotoxicity, which finally disappeared when three methylene groups were inserted. Therefore, the study of the interaction of dimers bearing no (202), two (222) and three (232) methylene groups with the self-complementary hexanucleotide d(CGATCG)2 have been investigated by 1H and 31P nuclear magnetic resonance studies. The results reported here indicate that all dimers bis-intercalate into the minihelix. The intermolecular nuclear Overhauser effects (NOEs) between the dimers and the nucleotide lead to the conclusion that the three dimers intercalate with their rigid bis-ethyl bipiperidine chain fitting the major groove of the helix. Inter-residue nuclear Overhauser effects at the DNA level, as well as induced shifts, are discussed in relation to the conformational changes induced in DNA upon intercalation and to the different activity of the dimers.

Antineoplastic Agents↗

Preliminary assignments of the aromatic and some methyl group resonances of the 1H-NMR spectrum of the oxidized form of uteroglobin. Application to the interaction of oxidized uteroglobin with progesterone.

Two-dimensional NMR methods have been used to assign aromatic and methyl group resonances in the 1H-NMR spectrum of oxidized uteroglobin. Assignments to specific amino acids are based on X-ray-determined structures of two crystal forms (C222(1) and P2(1] and on an energy-minimized X-ray structure of the C222(1) form of uteroglobin. These preliminary assignments are sufficient to probe the interaction of oxidized uteroglobin with progesterone in solution. The protein global structure is unmodified but some direct or indirect conformational changes are induced in the H1H4(H1'H4') pockets and close to Phe28 by progesterone.

Binding Sites↗

1H-NMR studies of a monointercalating drug into a d(CpGpApTpCpG)2 minihelix.

The structure of the complex formed between the 7H-pyridocarbazole monomer [[(2-piperidyl)-2,1-ethane-yl] [10-methoxy-7H-pyrido[4,3-c]carbazolium] dimethane sulfonate] and the autocomplementary hexanucleotide d(CpGpApTpCpG)2 in aqueous solution is analyzed by 270- and 400-MHz 1H-nmr. The large upfield shifts observed for both the drug and the self-complementary hexanucleotide protons provide evidence for intercalated complexes. The observation of intermolecular nuclear Overhauser effects between drug and the hexanucleotide protons gives a privileged orientation of the drug in the intercalation site with the quaternarizing ethyl piperidine chain protruding in the major groove. Moreover, the data suggest an intercalation based on the neighbor exclusion site principle in the three alternating sequences.

Base Sequence↗

Bisintercalation of ditercalinium into a d(CpGpApTpCpG)2 minihelix: a 1H- and 31P-NMR study.

The structure of the complex formed in aqueous solution between ditercalinium, a bisintercalating drug, and the self-complementary hexanucleotide d(CpGpApTpCpG)2 is investigated by 400-MHz 1H-nmr and 162-MHz 31P-nmr. Whatever the drug to helix ratio, ditercalinium occurred in the bound form, whereas free and complexed hexanucleotide are in slow exchange. This allows unambiguous resonance assignment through two-dimensional chemical exchange experiments. The strong upfield shifts measured on most aromatic protons on both drug and bases as well as on DNA imino protons are consistent with bisintercalation of the dimer. Nuclear Overhauser effects observed between drug and nucleotide protons give a defined geometry for complexation, and suggest a DNA conformational change upon drug binding.

Base Sequence↗

Reassessment of structural characteristics of the d(CGCG)2:actinomycin D complex from complete 1H and 31P NMR.

Complexes formed between Actinomycin D (ActD) and the tetranucleotides d(AGCT)2 and d(CGCG)2 were studied in detail by one and two-dimensional 1H and 31P NMR. The 31P two dimensional chemical exchange experiment, at room temperature on saturated complexes (1:1), showed unambiguously that the asymmetrical phenoxazone ring binds to the unique GC site under the two possible orientations in the d(AGCT)2 tetranucleotide but adopts a single orientation in the d(CGCG)2 tetranucleotide. For the d(CGCG)2:Act D saturated complex, complete assignments of all protons and phosphorus signals of the two-nucleotide strands, as well as of the two cyclic pentapeptide chains has allowed us to study in details the conformational features of the complex from NOE and coupling constants analysis. The tetranucleotide remains in a right-handed duplex, but the sugar puckers are modified for residues at the intercalation site. A uniform C2' endo pucker is observed for residues on the strand facing the quinoid side of the phenoxazone ring while a C2' endo-C3-endo equilibrium about 60% of C2' endo is proposed for the two residues on the strand facing the benzenoid side of the phenoxazone ring. In contrast to previous studies on ActD-DNA interactions, we have been able to measure the 3J phosphorus-proton coupling constants at the intercalation site but also adjacent to it, showing that 31P chemical shifts are not simply related to the backbone conformation. Molecular mechanics calculations, using empirical distances deduced from NOE effects as restrained distances during minimizations, led to a model differing mainly from those previously published by orientation of the N methyl groups of both N-Methyl-Valines.

Base Sequence↗

Intercalative binding of ditercalinium to d(CpGpCpG)2: a theoretical study.

The structure of the complex formed between ditercalinium, 2,2'-[4,4'-bipiperidine-1,1'-bis-(ethane-1,2-diyl)]bis(10-me thoxy-7H- pyrido[4,3-c]carbazolium) tetramethane sulfonate (NSC 366241), and the self-complementary tetranucleotide duplex d(CpGpCpG)2 has been investigated by means of a novel theoretical approach for modelling the conformational flexibility of nucleic acids. The methodology used is the JUMNA procedure, a molecular mechanics systematics capable of evaluating the internal energy and the interaction energy of a complex formed from a large number of fragments. In the best energy-minimized structures, the piperidinium chains of ditercalinium are located in the major groove of the right-handed oligonucleotide. Calculations show a distortion of the base-paired d(CpGpCpG)2 minihelix consisting of lateral dislocation of one base pair with respect to another along an axis parallel to the long axis; strong propeller twist and tilt of the end base pairs; a collective motion of all base pairs with respect to the helical axis towards the drug; and an overwinding at the exclusion site. The proposed structure of the complex is in good agreement with reported proton NMR data, supporting the feasibility of such model.

Carbazoles↗

Correlation between total and free magnesium levels in human red blood cells. Influence of HLA antigens.

Total and free magnesium contents were determined by atomic absorption spectrophotometry and 31P nuclear magnetic resonance on red blood cells of healthy blood donors of known HLA groups. A statistically significant correlation was found between free and total magnesium contents (r = 0.67, P less than 0.02). The previously described low total magnesium contents in HLA-B35+ subjects were associated with low free Mg2+ contents. Therefore, total and free magnesium and HLA-associated genetic factors are closely related.

Erythrocytes↗

Chromomycin A3 binds to left-handed poly(dG-m5dC).

The interaction of chromomycin A3 (an antitumor antibiotic) with right-handed and left-handed polynucleotides has been studied by absorbance, fluorescence, circular dichroism, 31P-NMR and 1H-NMR techniques. Binding to either the B form of poly(dG-dC) or the Z form of poly(dG-m5dC) shifts the absorbance maximum to higher wavelength and enhances the fluorescence of the drug. Circular dichroic spectra of solutions containing various concentrations of chromomycin A3 and fixed concentrations of either B or Z polynucleotides show well defined isoelliptic points at similar wavelengths. At the isoelliptic point, the drug complex with B DNA exhibits positive ellipticity while with Z DNA it exhibits negative ellipticity. 31P-NMR spectra of the chromomycin A3 complex with the Z form of poly(dG-m5dC) demonstrate that the Z conformation is retained in the drug complex up to one molecule drug/four base pairs. At Mg2+ concentrations lower than that necessary to stabilize the left-handed conformation of poly(dG-m5dC) alone, 31P analysis shows that chromomycin A3 can bind simultaneously to both the B and Z conformations of poly(dG-m5dC), with no effect on the B-Z equilibrium. These data demonstrate that chromomycin A3 binds to left-handed poly(dG-m5dC) with retention of the left-handed conformation up to saturating drug concentrations.

Binding Sites↗

A general procedure for assigning the 31P spectra of drug-oligonucleotide complexes.

Taking advantage of the slow exchange at the NMR time scale occurring in drug oligonucleotides complexes the 31P signals in the bound forms are assigned by using 31P NMR two dimensional chemical exchange. This technique was applied to complexes between Actinomycin D and d[CpGpCpG] or d[m5CpGpm5CpG]. As compared to the labelled 17O, 18O this method proved to be a powerful and unique way to assign 31P in broad spectrum or with long oligonucleotides.

Chemical Phenomena↗

NMR studies of tris-intercalation: solution structure and interaction of d(CTTCGCGCGAAG) with an acridine trimer.

Tris-intercalation of an acridine trimer into the self-complementary dodecanucleotide d(CTTCGCGCGAAG) has been studied, in solution, by means of 1H and 31P nuclear magnetic resonance. In a first step all the non-exchangeable protons (except H5', H5"), the imino protons and seven of the eleven phosphorus have been assigned. The dodecanucleotide is shown to adopt a double helical B-type structure. Most of the sugar puckers are in the O1'endo range, those of the internal guanosines being closer to C2'endo. Deviations from the canonical B structure are observed in the base stacking and the phosphodiester torsional angles at the 3T4C5G stretch. The addition of an acridine trimer to the base-paired dodecanucleotide leads to the conclusion that the trimer, which is in slow exchange at the NMR time scale, tris-intercalates into the three C(3'-5')G sites of the central core, according to the excluded site model. This is evidenced by the large (1.4 ppm) upfield shift experienced by the imino protons of the three internal guanines and the shielding undergone by the acridine ring protons. Tris-intercalation is also supported by the downfield shift experienced by 6 out of the 22 phosphorus. Two of them are shifted by nearly 2 ppm, a shift range reported for oligonucleotides complexed to actinomycin D; this suggests that the structure of the backbone of the dodecanucleotide is altered.

Acridines↗

Electrostatic effects and hydrogen exchange behaviour in proteins. The pH dependence of exchange rates in lysozyme.

The pH dependence of the exchange rates for a number of tryptophan and amide hydrogen atoms in hen egg-white lysozyme has been determined at temperatures well below the thermal denaturation temperature. The pH behaviour of each hydrogen is unique and can differ markedly from that of simple compounds. A model for electrostatic effects in proteins is described and used to explain a number of the features of the pH dependence of the exchange rates of certain hydrogens. The results indicate that exchange takes place from a conformation of the protein closely similar to that of the native protein, with local fluctuations providing the mechanism for exchange. For the more-buried hydrogens at low pH values there is a general increase in the exchange rates caused by the decreasing stability of the protein as calculated from the electrostatic model. The analysis shows how evidence from hydrogen exchange studies can be used to provide information about electrostatic interactions in localized regions of proteins. A description of the electrostatic model and some applications are given in the Appendix.

Amino Acid Sequence↗

Geometry of the antitumor drug ditercalinium bisintercalated into d(CpGpCpG)2 by 1H NMR.

Rigid 7H-pyrido[4,3-c]carbazole dimers, such as Ditercalinium, are DNA bisintercalators that display high DNA affinity and strong antitumor properties. This activity appears crucially dependent on the geometry of their complexes with DNA. Therefore, structures of the complexes formed by the self-complementary tetranucleotide d(CpGpCpG) with Ditercalinium and with a related monomer were investigated in 0.1 M [2H]acetate buffer (pH 5.5) by using 400-MHz 1H NMR. In both cases, d(CpGpCpG) retained a right-handed duplex structure as shown by exchangeable-proton analysis and intramolecular nuclear Overhauser effect measurements. According to the large upfield shifts measured on the base protons (including the imino proton) and on the aromatic protons of the pyridocarbazole rings, the monomer appears to monointercalate and the dimer to bisintercalate into the tetranucleotide duplex. Ditercalinium dissociates from its complex about 100-1000 times slower than does the monomer. The negative intermolecular nuclear Overhauser effects observed on protons corresponding to the convex edge of the pyridocarbazole rings when the sugar protons are saturated suggest that both ligands intercalate with their chain oriented to the wide groove side of the helix, a situation mimicking that encountered with repressors. Antitumor activity of 7H-pyridocarbazole derivatives is discussed in terms of geometry of the intercalated complexes.

Antineoplastic Agents↗

Conformational analysis of pepstatin and related renin inhibitors by 400 MHz 1H n.m.r. spectroscopy.

The conformational behaviour of pepstatin (Iva-Val-Val-Sta-Ala-Sta) and of two derived renin inhibitors, Boc-Phe-Nle-Sta-Ala-Sta-OMe, 1, and Boc-Phe-Nle-X-Ala-Sta-OMe, 2 (X = -NH-CH(iPr)-CHOH-CH2-CO-) was assessed in DMSO-d6 at various temperatures and in deuteriopyridine at -35 degrees. Complete assignment of almost all proton signals was achieved by 2D COSY, 2D NOESY and selective NOE experiments. The three compounds show similar extended conformations in both solvents, with the hydrophobic lateral chains extending away from the peptide backbone. In the case of pepstatin the solvated conformation is closely related to the structure found in the crystal of the pepstatin-Rhizopus chinensis complex. Strong NOE effects and precise determination of vicinal coupling constants show the lack of large structural differences between 1 and 2 at the level of the internal Sta or X residues, which are assumed to interact with the aspartyl residues of the renin active-site. This suggests that the 100-fold lower inhibitory potency of 2 is mainly due to unfavorable close contacts of the beta-branched residue X with constituent amino acids of the enzyme.

Dimethyl Sulfoxide↗