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Theoretical studies of the selective binding to DNA of two non-intercalating ligands: netropsin and SN 18071.

A theoretical study of the binding to DNA of netropsin and a bisquaternary ammonium heterocycle, SN 18071, is undertaken with an energy minimizing program based on empirical potential functions. The positioning of the ligand is achieved by force and torque calculations and its internal flexibility is taken into account. The binding preference of both drugs studied for the AT minor groove of B-DNA is shown to depend on both the electrostatic potential generated by the base sequence and the quality of the steric fit of the ligand in the groove. Ligand-DNA hydrogen bonds are shown to aid binding, but not to be essential in establishing binding preferences.

Amino Acid Sequence↗

Influence of nucleotide sequence on dA.dT-specific binding of Netropsin to double stranded DNA.

Using CD measurements the complex formation of Netropsin (Nt) with poly(dA-dC).poly(dT-dG) and its stability against high salt concentrations is compared with that of poly(dA).poly(dT) and poly(dA-dT).POLY(DT-dA). It is experimentally shown that the insertion of a dG.dC pair in dA.dT sequences strongly reduces the specific interaction of Nt with DNA duplexes. The specificity of the interaction is strongly increased by two or more consecutive thymine residues as present in thymine isostichs of double stranded DNA's.

Base Sequence↗

Counterion dependent variation of DNA secondary structure in (A . T) clusters: evidence by use of netropsin as a structural probe.

The interaction of the oligopeptide antibiotic netropsin (Nt) with (A . T) regions of DNA is characterized by a spectrum of discrete modes. This has been revealed by viscometric analysis, at 20 degrees C and 0.2 M "counterions", for NaDNA in a preceding and for NH4DNA in this paper. The increase of DNA contour length as induced by one Nt molecule was found to depend on the special mode only, while the respective stiffening is generally higher for NH4DNA. The latter property is interpreted in terms of an enhanced flexibility, relative to that of NaDNA, of the (A . T) cluster segments before complex formation. For some of the interaction modes of the DNA-Nt systems a difference in the number of corresponding binding sites has been observed. This phenomenon is understood by assuming an influence of the counterion species upon existing equilibria between different forms of the (A . T) cluster secondary structure. Not less than 5 to 10% of the total DNA are effected in this manner. Upper limits for the local differences in the axial rise per base pair are 0.04 nm and 0.02 nm.

Animals↗

Temperature mediated variation of DNA secondary structure in (A.T) clusters; evidence by use of the oligopeptide netropsin as a structural probe.

The titration viscometric investigation of the multi-mode interaction of netropsin (Nt) with (A.T) clusters of NaDNA12 and NH4DNA10 has been extended to different temperatures. The position of two boundaries on the r-scale (r= [Nt]bound/[DNA-P]) with increasing temperature steadily (rI/II) or more abruptly (rO/I) shifts to lower values. For the most (A.T) rich Nt-binding sites of modes (O), (I) and (II) this observation suggests the existence of an equilibrium between different DNA secondary structures with a different translation per base pair. The mode specific changes delta L1Nt of DNA contour length as induced by one Nt molecule proved to be almost independent of temperature. Concomitant stiffening effects increase with decreasing temperature, contrary to initial expectation. Conformational variability of (A.T) clusters may represent an essential feature in specific or selective DNA-protein interaction.

Chemical Phenomena↗

Synthesis and DNA-binding of acridine-netropsin hybrid molecules.

We have designed and synthesized acridine-netropsin hybrid molecules. Spectroscopic (absorption, CD, flow dichroism and fluorescence) measurements reveal that hybrid molecules interact with DNA by both intercalation and minor-groove binding and shows enhanced preference for AT-rich sites.

Acridines↗

Netropsin interactions in the minor groove of d(GGCCAATTGG) studied by a combination of resolution enhancement and ab initio calculations.

The structure of the complex between the minor groove binder netropsin and d(GGCCAATTGG) was determined via single-crystal X-ray techniques. The structure was refined to completion using refmac5.1.24, resulting in a residual R-factor of 20.0% (including 68 water molecules). Using crystal engineering and cryocooling techniques, the resolution could be enhanced to 1.75 A, resulting in an unambiguous determination of the drug conformation and orientation. As previously noticed, bifurcated hydrogen bonds are formed between the amide nitrogen atoms of the drug and the N3 and O2 atoms of A and T base pairs, respectively, clearly cataloging the structure to class I. As the bulky NH2 group on guanine was believed to prevent binding of the drug in the minor groove, the detailed nature of several of the amidinium and guanidinium end contacts were further investigated by ab initio quantum chemical methods.

Base Sequence↗

The minor-groove binding DNA-ligands netropsin, distamycin A and berenil cause polyploidisation via impairment of the G2 phase of the cell cycle.

Distamycin A, netropsin and berenil are known to cause undercondensation of heterochromatic regions of metaphase chromosomes. These ligands interfere with DNA curvature by binding to the minor groove of the DNA. Whereas the effects of these ligands upon chromatin structure are well established, little is known about their possible interference with cell cycle progression. We show that the presence of these DNA-ligands causes protracted cell growth consisting of a prolongation of the G1 phase of the cell cycle along with arrest in the G2 compartment. Concomitant with these cell kinetic disturbances the DNA ligands cause increased polyploidisation. These observations suggest that the DNA-minor groove may play an important role in progression through the G2 phase and proper mitotic transit.

Amidines↗

Molecular modelling, synthesis and antitumour activity of carbocyclic analogues of netropsin and distamycin--new carriers of alkylating elements.

A series of netropsin and distamycin analogues was synthesised and investigated by molecular modelling. The lowest-energy conformations of four carbocyclic lexitropsins, potential carriers of alkylating elements, were obtained using the HyperChem 4.0 program, and compared with the DNA-lexitropsin crystal structures from the Brookhaven National Laboratory Protein Data Bank. A method for synthesis of carbocyclic lexitropsins was elaborated, with the use of a nitro group or azobenzene as precursors for the aromatic amino group. The influence of methoxy group in ortho position with respect to amide groups on the activity of the new compounds was investigated. All of the compounds tested showed high antitumour activity in the standard cell line of mammalian tumour MCF-7.

Alkylating Agents↗

[Kinetics of the lactone-carboxylate transition of hybrid camptothecin-netropsin molecules].

The kinetics of the hydrolysis of the lactone ring of a hybrid molecule containing the molecules of the antitumor drug camptothecin and a derivative of the antibiotic netropsines, which is highly affine and specific to the DNA A-T sequences was investigated. It was shown that intramolecular interaction significantly slows down the rate of hydrolysis but does not change the equilibrium ratio of concentrations of the lactone and carboxylate forms of the camptothecin fragment of the hybrid molecule, which corresponds to the pH value. The use of intramolecular interaction for controlling the kinetics of the lactone/carboxylate transition makes it possible to create the drugs of the camptothecin family, which preserve the biologically active lactone form under the physiological conditions for a longer time and, therefore, are more effective as anticancer agents.

Camptothecin↗

Camptothecin conjugated with DNA minor-groove binder netropsin: enhanced lactone stability, inhibition of human DNA topoisomerase I and antiproliferative activity.

BACKGROUND: The conjugates of camptothecin (CPT) with ligands possessing different DNA selectivity could be promising agents in cancer therapy affecting expression of specific genes by trapping DNA topoisomerase I (top I)-DNA complexes in a sequence-selective manner. Our recent data show that minor-groove binder netropsin (Nt) and its derivatives modulate the CPT-induced pattern of top I-mediated DNA cleavage. In an effort to develop a new molecule with good biological activity we have linked CPT with Nt and report here the first results of in vitro examination of the new compound. MATERIALS AND METHODS: CPT-Nt conjugate linked with flexible spacer through position 7 of CPT chromophore was synthesized and analyzed for lactone stability, the ability to modulate a top I-mediated DNA cleavage and antiproliferative activity within a panel of six tumor cell lines. RESULTS: CPT-Nt conjugate demonstrates enhanced lactone stability and concentration-dependent top I poisoning or suppression in vitro. The rate of conjugate hydrolysis in a water solution displays a 20-fold enhancement of stability compared with CPT. The cytotoxicity of the conjugate against acute promyelocytic leukaemia (HL60), chronic myelogenous leukaemia (K562), breast adenocarcinoma (MCF7), colorectal adenocarcinoma (HT29), lung carcinoma(A549) and ovarian adenocarcinoma (CaOV3) tumor cell lines was evaluated. The lowest IC50 value (0.08 microM) indicated its selective toxicity towards the ovarian adenocarcinoma cell line. CONCLUSION: The enhanced stability of CPT-Nt conjugate and its selective toxicity against the CaOV3 cell line may indicate its utility as an antitumor agent against ovarian adenocarcinoma.

Antineoplastic Agents↗

[Detection of soluble fibrin monomer complexes by the netropsin precipitation test in childhood meningitis].

During a period of two years children with abacterial meningitis as well as bacterial meningitis were examined before treatment and later during disease. The new Netropsin praecipitation test according to Funke and coworkers was used to detect soluble fibrin monomer complexes. Only in a few cases of abacterial meningitis, but in the majority of cases with bacterial meningitis, a positive result had been shown. Excessive increase had been found in Waterhouse-Friderichsen syndrome. According to our results of coagulation tests we conclude 1. the ethanol gelation test is out-of-date, 2. the heparin treatment in bacterial meningitis is further indicated.

Child↗

[Attachment of trivaline changes the specificity of binding of netropsin analogs with DNA].

In the present communication, synthesis and DNA binding activities of three analogs of the antibiotic netropsin are reported. Each analog contains two N-propylpyrrolecarboxamide units linked covalently to either Dns-Gly-Val-Val-Val-Gly-Gly- (I), Val-Val-Val-Gly-Gly (II) or Gly-Gly (III). It is shown that analogs I and II can self-associate in aqueous solution and methanol as revealed from the fact that UV absorbance and circular dichroism spectra obtained for these analogs are concentration-dependent. By contrast, analogs III exists as a monomer, even at concentration levels of the order of 1.10(-3) M. Determination of the apparent sizes of intramolecular aggregates by gel-filtration shows that analog I in aqueous solution at concentration levels of the order of 1.10(-3) M forms a series of aggregates containing from 2 to 12 monomers. Analog II exhibits a lower tendency to form intermolecular aggregates as compared with that of analog I. Dimerization constants are determined for analogs I and II in aqueous solution and methanol. The binding of N-propylpyrrolecarboxamide units and peptide fragments of analog I to DNA can be independently monitored by circular dichroism and fluorescence methods. If self-associated species of analog I (or II) are present in solution, the ligand exhibits a markedly different order of base pair sequence preferencies as compared with that of analog III. The results obtained are consistent with the inference that analogs I and II in a beta-associated form recognizes base pair sequences containing two runs of 3 AT pairs separated by two GC pairs.

Base Sequence↗

Structural transitions of chromatin induced by netropsin.

Structural changes of chromatin induced by interaction of netropsin (Nt) with DNA has been examined by analysis of CD and electromicroscopic measurements. The results demonstrate the existence of a transition from the condensed globular state of chromatin into nucleosomal fibres generated by extremely low Nt concentration up to 1 mole Nt per 200 nucleotides. A second transition occurs at high Nt ratio per DNA phosphate (v' = 0.3). involving disorganization of nucleosomal particles. The interference of the Nt binding with chromatin proteins maintaining the sub- and superstructure will be discussed.

Animals↗

Design, synthesis, DNA sequence preferential alkylation and biological evaluation of N-mustard derivatives of distamycin and netropsin analogues.

The design and synthesis of certain oligopeptides structurally related to distamycin and netropsin, but bearing mixed heterocyclic moieties capable of recognizing alternative base sites and nitrogen mustard moieties capable of covalent binding to DNA, are described. The binding and thermally induced DNA cleavage, covalent interstrand cross-linking, DNA preferential alkylation and anticancer cytotoxicities of the new agents are described. In contrast to the mustard derivative derived directly from distamycin, the new agents give evidence of extensive DNA alkylation and interstrand cross-linking. In general, strong alkylation is observed at A residues for this class of agents, while the G residues that are alkylated appear to be more characteristic of individual compounds. Densitometric analysis of the frequency of bases adjacent to the alkylation sites (-3 to +3) revealed that the preferred bases are exclusively A/T with little preference shown for G bases and none for C sites. Further insight into the DNA alkylation processes afforded by the drugs was provided by an independent assay whereby heating the drug-DNA adduct with 10% aqueous piperidine only yielded strand breaks specifically at G-N7 sites in the major groove.

Alkylation↗

Molecular and cellular pharmacology of novel photoactive psoralen and coumarin conjugates of pyrrole- and imidazole-containing analogues of netropsin.

The molecular and cellular pharmacology of novel sequence-directed photoactive agents, in which either psoralen or coumarin is conjugated to minor groove-binding AT-selective pyrrole-, or more GC-selective imidazole-containing analogues of netropsin, is described. The compounds were relatively non-toxic in the dark and showed marked photoinduced cytotoxicities when irradiated at 366 nm UV. The psoralen-containing pyrrole (1) and imidazole (2) compounds gave the largest photoinduced effect, were more active than 8-methoxypsoralen (8-MP) itself by 333- and 22-fold, respectively, and were more potent than the corresponding coumarin-containing analogues 3 and 4. Following irradiation, 1 and 2 were > 300- and > 10-fold more efficient at producing interstrand cross-links in naked DNA, respectively, than 8-MP. 1 was at least 10-fold more efficient at producing cross-links in cells than 2, reflecting the difference in their IC50 values. No cross-links were observed with the coumarin analogues, but these compounds were more potent than 8-MP. AT and GC sequence recognition was confirmed by DNA footprinting, and sites of covalent modification mapped by a polymerase stop assay. All compounds produced blocks at thymine base sites following irradiation. 1 was more efficient than 8-MP and produced a different pattern of covalent modification, whereas 2 was more selective than either 1 or 8-MP. A 1H-NMR study on a 1:1 complex of 2 with the hexamer (5'-dA1T2G3C4A5T6-3')2 indicated that the imidazole carboxamide moieties of 2 reside in the minor groove of the sequence 5'-GCAT-3' of the hexamer with the C-terminus located on the 3'-TA site, and the psoralen group intercalated between the 5'-A1T2-3' base pairs.

Base Sequence↗

Synthetic analogues of netropsin and distamycin. I. Pyridine-containing analogues of distamycin--a molecular modelling study.

We have investigated new series of pyridine-containing analogues III-XXII of distamycin A. Molecular mechanics technique revealed evident structural similarities between III-VI and pyridine-2-carboxamide-netropsin, suggesting possible interactions of compounds III-VI with DNA. Molecular modelling to the B-DNA d(CGCAGCTTTGCG) duplex shows that III fits tightly into the minor groove. The pattern of hydrogen bonds in the computed complex covers C6.G19, T7.A18, T8.A17, and T9.A16. The most striking feature of III.DNA (1:1) complex is the recognition of the guanine amino group (G19) by the pyridine nitrogen of III.

Antiviral Agents↗