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1.
Nucleic Acids Res ; 51(14): 7174-7183, 2023 08 11.
Artigo em Inglês | MEDLINE | ID: mdl-37351627

RESUMO

DNA three-way junctions (3WJ) represent one of the simplest supramolecular DNA structures arising as intermediates in homologous recombination in the absence of replication. They are also formed transiently during DNA replication. Here we examine the ability of Fe(II)-based metallohelices to act as DNA 3WJ binders and induce DNA damage in cells. We investigated the interaction of eight pairs of enantiomerically pure Fe(II) metallohelices with four different DNA junctions using biophysical and molecular biology methods. The results show that the metallohelices stabilize all types of tested DNA junctions, with the highest selectivity for the Y-shaped 3WJ and minimal selectivity for the 4WJ. The potential of the best stabilizer of DNA junctions and, at the same time, the most selective 3WJ binder investigated in this work to induce DNA damage was determined in human colon cancer HCT116 cells. These metallohelices proved to be efficient in killing cancer cells and triggering DNA damage that could yield therapeutic benefits.


Assuntos
DNA , Neoplasias , Humanos , DNA/química , Dano ao DNA , Compostos Ferrosos , Conformação de Ácido Nucleico , Neoplasias/genética
2.
Nucleic Acids Res ; 50(2): 674-683, 2022 01 25.
Artigo em Inglês | MEDLINE | ID: mdl-35018455

RESUMO

The design of efficient and safe gene delivery vehicles remains a major challenge for the application of gene therapy. Of the many reported gene delivery systems, metal complexes with high affinity for nucleic acids are emerging as an attractive option. We have discovered that certain metallohelices-optically pure, self-assembling triple-stranded arrays of fully encapsulated Fe-act as nonviral DNA delivery vectors capable of mediating efficient gene transfection. They induce formation of globular DNA particles which protect the DNA from degradation by various restriction endonucleases, are of suitable size and electrostatic potential for efficient membrane transport and are successfully processed by cells. The activity is highly structure-dependent-compact and shorter metallohelix enantiomers are far less efficient than less compact and longer enantiomers.


Assuntos
Cátions/química , DNA/química , Técnicas de Transferência de Genes , Vetores Genéticos , Nanopartículas Metálicas/química , Linhagem Celular , Sobrevivência Celular , DNA/ultraestrutura , Compostos Ferrosos/química , Citometria de Fluxo , Imunofluorescência , Expressão Gênica , Genes Reporter , Vetores Genéticos/química , Vetores Genéticos/ultraestrutura , Humanos , Nanopartículas Metálicas/ultraestrutura , Microscopia de Força Atômica/métodos , Estrutura Molecular , Transfecção
3.
J Enzyme Inhib Med Chem ; 38(1): 2198678, 2023 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-37019444

RESUMO

Some metallo-supramolecular helical assemblies with size, shape, charge and amphipathic architectures similar to short cationic α-helical peptides have been shown to target and stabilise DNA G-quadruplexes (G4s) in vitro and downregulate the expression of G4-regulated genes in human cells. To expand the library of metallohelical structures that can act as efficient DNA G4 binders and downregulate genes containing G4-forming sequences in their promoter regions, we investigated the interaction of the two enantiomeric pairs of asymmetric Fe(II) triplex metallohelices with a series of five different DNA G4s formed by the human telomeric sequence (hTelo) and in the promoter regions of c-MYC, c-KIT, and k-RAS oncogenes. The metallohelices display preferential binding to G4s over duplex DNA in all investigated G4-forming sequences and induced arrest of DNA polymerase on template strands containing G4-forming sequences. Moreover, the investigated metallohelices suppressed the expression of c-MYC and k-RAS genes at mRNA and protein levels in HCT116 human cancer cells, as revealed by RT-qPCR analysis and western blotting.


Assuntos
Quadruplex G , Neoplasias , Humanos , Oncogenes , Regiões Promotoras Genéticas , DNA/química
4.
Chemistry ; 27(45): 11682-11692, 2021 Aug 11.
Artigo em Inglês | MEDLINE | ID: mdl-34048082

RESUMO

DNA G-quadruplexes (G4s) have been identified within the promoter regions of many proto-oncogenes. Thus, G4s represent attractive targets for cancer therapy, and the design and development of new drugs as G4 binders is a very active field of medicinal chemistry. Here, molecular biophysics and biology methods were employed to investigate the interaction of chiral metallohelices with a series of four DNA G4s (hTelo, c-myc, c-kit1, c-kit2) that are formed by the human telomeric sequence (hTelo) and in the promoter regions of c-MYC and c-KIT proto-oncogenes. We show that the investigated water-compatible, optically pure metallohelices, which are made by self-assembly of simple nonpeptidic organic components around FeII ions and exhibit bioactivity emulating the natural systems, bind with high affinity to G4 DNA and much lower affinity to duplex DNA. Notably, both enantiomers of a metallohelix containing a m-xylenyl bridge (5 b) were found to effectively inhibit primer elongation catalyzed by Taq DNA polymerase by stabilizing G4 structures formed in the template strands containing c-myc and c-kit2 G4-forming sequences. Moreover, both enantiomers of 5 b downregulated the expression of c-MYC and c-KIT oncogenes in human embryonic kidney cells at mRNA and protein levels. As metallohelices also bind alternative nucleic acid structures, they hold promise as potential multitargeted drugs.


Assuntos
Quadruplex G , Proteínas Proto-Oncogênicas c-kit , Proteínas Proto-Oncogênicas c-myc , DNA , Compostos Ferrosos , Humanos , Proteínas Proto-Oncogênicas c-kit/genética , Proteínas Proto-Oncogênicas c-myc/genética , Telômero
5.
Angew Chem Int Ed Engl ; 60(31): 17123-17130, 2021 07 26.
Artigo em Inglês | MEDLINE | ID: mdl-34105220

RESUMO

Werner's Complex, as a cationic coordination complex (CCC), has hitherto unappreciated biological properties derived from its binding affinity to highly anionic biomolecules such as glycosaminoglycans (GAGs) and nucleic acids. Competitive inhibitor and spectroscopic assays confirm the high affinity to GAGs heparin, heparan sulfate (HS), and its pentasaccharide mimetic Fondaparinux (FPX). Functional consequences of this affinity include inhibition of FPX cleavage by bacterial heparinase and mammalian heparanase enzymes with inhibition of cellular invasion and migration. Werner's Complex is a very efficient condensing agent for DNA and tRNA. In proof-of-principle for translational implications, it is demonstrated to display antiviral activity against human cytomegalovirus (HCMV) at micromolar concentrations with promising selectivity. Exploitation of non-covalent hydrogen-bonding and electrostatic interactions has motivated the unprecedented discovery of these properties, opening new avenues of research for this iconic compound.


Assuntos
Antivirais/farmacologia , Complexos de Coordenação/farmacologia , Citomegalovirus/efeitos dos fármacos , Fondaparinux/antagonistas & inibidores , Glicosaminoglicanos/farmacologia , Antivirais/química , Complexos de Coordenação/química , Glicosaminoglicanos/química , Humanos , Testes de Sensibilidade Microbiana
6.
Chemistry ; 26(38): 8435-8442, 2020 Jul 08.
Artigo em Inglês | MEDLINE | ID: mdl-32329091

RESUMO

RNA bulges represent one of the most common motifs in the RNA secondary structure and serve in a variety of biological functions. Compounds stabilizing RNA bulges are important for probing RNA structure and function and for therapy of some diseases. Here, the ability of a series of enantiomeric pairs of optically pure bimetallic metallohelices with different flexible linkers to target various RNA bulges is investigated. The results show that binding affinities of the metallohelices to bulged RNA differ and strongly depend on the size of the bulge and the base composition of the bulge loop. Notably, the shorter, more compact, and less flexible metallohelices bind to RNA bulges most efficiently and selectively. Interestingly, the ability of the metallohelices to bind to RNA bulges correlates with their previously reported antimicrobial activity, which suggests that the selective recognition of bulged regions in RNA by the metallohelices might also contribute to their biological activity.


Assuntos
Peptidomiméticos/química , RNA/química , Sequência de Bases , Conformação de Ácido Nucleico
7.
Chemistry ; 26(69): 16554-16562, 2020 Dec 09.
Artigo em Inglês | MEDLINE | ID: mdl-33026666

RESUMO

Bulges are essential structural elements in nucleic acids. The detection and targeting of bulged DNA sequences are highly important. Small molecules capable of targeting DNA bulges have attracted considerable attention because they cannot only be used as reagents for bulge recognition, but also as potential therapeutic drugs. Herein, the interactions of DNA duplexes, containing bulges of various sizes and base compositions, with a series of FeII triplex-forming metallohelices are reported. The results obtained, with the aid of molecular biophysics methods, show that the investigated metallohelices prefer to bind to bulged DNA, rather than double-stranded DNA, and that their binding affinities towards bulges differ among individual metallohelices. Moreover, their binding affinities towards bulges strongly depend on the bulge size and the base composition of the bulge loop. The investigated metallohelices can enter eukaryotic cells and accumulate in the cell nucleus, allowing them to interact with nucleic acids. Hence, it is reasonable to suggest that the interaction of metallohelices with nucleic acid bulges might contribute to the mechanism of their biological activity.


Assuntos
Antineoplásicos , DNA , Compostos Ferrosos/química , Sequência de Bases
8.
Inorg Chem ; 59(20): 15135-15143, 2020 Oct 19.
Artigo em Inglês | MEDLINE | ID: mdl-32988198

RESUMO

RNA triplexes are significant tertiary structure motifs that are found in many functional RNAs. Hence, small molecules capable of recognition, binding, and stabilization of the triple-helical RNA structures are emerging as attractive potential molecular biology tools and therapeutic agents. Here, we utilize methods of molecular biology and biophysics to study the interactions of a series of antitumor substitution-inert polynuclear platinum complexes (SI-PPCs) with triple-helical RNA structures. We show that SI-PPCs recognize and stabilize RNA triplexes and inhibit reverse transcription preferentially in the RNA template prone to the triplex formation. These so far unexplored properties of SI-PPCs suggest that the targeting of triple-stranded regions in RNA might contribute to the biological effects of SI-PPCs.


Assuntos
Antineoplásicos/química , Complexos de Coordenação/química , RNA/química , Transcrição Reversa/efeitos dos fármacos , Sequência de Bases , Conformação de Ácido Nucleico , Platina/química
9.
Inorg Chem ; 59(5): 3304-3311, 2020 Mar 02.
Artigo em Inglês | MEDLINE | ID: mdl-32064865

RESUMO

The water-compatible optically pure metallohelices made by self-assembly of simple nonpeptidic organic components around Fe(II) ions are now recognized as a distinct subclass of helicates that exhibit similar architecture to some natural cationic antimicrobial peptides. Notably, a new series of metallohelices was recently shown to exhibit biological activity, displaying high, structure-dependent activity against bacteria. It is also important that, thanks to their properties, such metallohelices can exhibit specific interactions with biomacromolecules. Here, following our prior report on the metallohelices that have high, structure-dependent activity against bacteria, we investigated the interactions of the series of iron(II) metallohelices with DNA, which is a potential pharmacological target of this class of coordination compounds. The results obtained with the aid of biophysical and molecular biology methods show that the investigated metallohelices accumulate in eukaryotic cells and that a significant fraction of the metallohelices accumulates in the cell nucleus, allowing them to interact also with nuclear DNA. Additionally, we have demonstrated that some metallohelices have a high affinity to DNA and are able to condense/aggregate DNA molecules more efficiently than conventional DNA-condensing agents, such as polyamines. Moreover, this capability of the metallohelices correlates with their efficiency to inhibit DNA-related enzymatic activities, such as those connected with DNA transcription, catalysis of DNA relaxation by DNA topoisomerase I, and cleavage by restriction enzymes.


Assuntos
Núcleo Celular/química , DNA Topoisomerases Tipo I/metabolismo , DNA/antagonistas & inibidores , Compostos Ferrosos/farmacologia , Inibidores da Topoisomerase I/farmacologia , Núcleo Celular/metabolismo , DNA/genética , DNA/metabolismo , Compostos Ferrosos/síntese química , Compostos Ferrosos/química , Células HCT116 , Humanos , Estrutura Molecular , Fenômenos Ópticos , Inibidores da Topoisomerase I/síntese química , Inibidores da Topoisomerase I/química
10.
Chemistry ; 25(12): 2995-2999, 2019 Feb 26.
Artigo em Inglês | MEDLINE | ID: mdl-30565774

RESUMO

Compounds condensing DNA and RNA molecules can essentially affect important biological processes including DNA replication and transcription. Here, this work shows with the aid of total intensity light scattering, gel electrophoresis, and atomic force microscopy (AFM) that the substitution-inert polynuclear platinum complexes (SI-PPCs), particularly [{trans-Pt(NH3 )2 (NH2 (CH2 )6 - NH3 + )}2 -µ-{trans-Pt(NH3 )2 (NH2 (CH2 )6 NH2 )2 }]8+ (Triplatin NC), exhibit an unprecedented high potency to condense/aggregate fragments of DNA and RNA as short as 20 base pairs. SI-PPCs condensates are distinctive from those generated by the naturally occurring polyamines (commonly used DNA compacting/condensing agents). Collectively, the results further confirm that SI-PPCs are very efficient inducers of condensation of DNA and RNA, including their short fragments that might have potential in gene therapy, biotechnology, and bionanotechnology. Moreover, the data confirm the structural advantages of the phosphate clamp, with a well-defined rigid DNA recognition motif in initiating condensation and aggregation phenomena on oligonucleotides.


Assuntos
DNA de Cadeia Simples/química , DNA/química , Oligonucleotídeos/química , Compostos Organoplatínicos/química , RNA/química , Sequência de Bases , Catálise , Dimerização , Microscopia de Força Atômica , Platina/química
11.
Inorg Chem ; 58(10): 6804-6810, 2019 May 20.
Artigo em Inglês | MEDLINE | ID: mdl-31046253

RESUMO

The substitution-inert polynuclear platinum complexes (SI-PPCs) are now recognized as a distinct subclass of platinum anticancer drugs with high DNA binding affinity. Here, we investigate the effects of SI-PPCs containing dangling amine groups in place of NH3 as ligands to increase the length of the molecule and therefore overall charge and its distribution. The results obtained with the aid of biophysical techniques, such as total intensity light scattering, gel electrophoresis, and atomic force microscopy, show that addition of dangling amine groups considerably augments the ability of SI-PPCs to condense/aggregate nucleic acids. Moreover, this enhanced capability of SI-PPCs correlates with their heightened efficiency to inhibit DNA-related enzymatic activities, such as those connected with DNA transcription, catalysis of DNA relaxation by DNA topoisomerase I, and DNA synthesis catalyzed by Taq DNA polymerase. Thus, the addition of the dangling amine groups resulting in structures of SI-PPCs, which differ so markedly from the derivatives of cisplatin used in the clinic, appears to contribute to the overall biological activity of these molecules.


Assuntos
Aminas/química , Complexos de Coordenação/química , DNA Topoisomerases Tipo I/efeitos dos fármacos , DNA/química , Compostos de Platina/química , RNA/química , Taq Polimerase/antagonistas & inibidores , Antineoplásicos/química , Microscopia de Força Atômica , Inibidores da Topoisomerase I
12.
Inorg Chem ; 57(9): 5004-5012, 2018 May 07.
Artigo em Inglês | MEDLINE | ID: mdl-29683319

RESUMO

Many drugs that are applied in anticancer therapy such as the anthracycline doxorubicin contain DNA-intercalating 9,10-anthraquinone (AQ) moieties. When Cu(II) cyclen complexes were functionalized with up to three (2-anthraquinonyl)methyl substituents, they efficiently inhibited DNA and RNA synthesis resulting in high cytotoxicity (selective for cancer cells) accompanied by DNA condensation/aggregation phenomena. Molecular modeling suggests an unusual bisintercalation mode with only one base pair between the two AQ moieties and the metal complex as a linker. A regioisomer, in which the AQ moieties point in directions unfavorable for such an interaction, had a much weaker biological activity. The ligands alone and corresponding Zn(II) complexes (used as redox inert control compounds) also exhibited lower activity.


Assuntos
Complexos de Coordenação/química , Complexos de Coordenação/farmacologia , Cobre/química , Replicação do DNA/efeitos dos fármacos , DNA/biossíntese , RNA/biossíntese , Linhagem Celular , Sobrevivência Celular/efeitos dos fármacos , Complexos de Coordenação/síntese química , Cristalografia por Raios X , DNA/química , Relação Dose-Resposta a Droga , Humanos , Modelos Moleculares , Estrutura Molecular , Plasmídeos , RNA/química , Relação Estrutura-Atividade
13.
Angew Chem Int Ed Engl ; 57(28): 8535-8539, 2018 07 09.
Artigo em Inglês | MEDLINE | ID: mdl-29766623

RESUMO

The formation of triple-helical DNA is implicated in the regulation of gene expression. The triplexes are, however, unstable under physiological conditions so that effective stabilizers for the triplex formation are needed. Herein, we describe a new strategy for the stabilization of such triplexes that is based on antitumor substitution-inert polynuclear platinum complexes (SI-PPCs). These compounds were previously shown to bind to DNA through the phosphate clamp-a discrete mode of DNA-ligand recognition distinct from the canonical intercalation and minor-groove binding. We have found that SI-PPCs efficiently inhibit DNA synthesis by DNA polymerase in sequences prone to the formation of pyrimidine- and purine-motif triplex DNAs. Moreover, the results suggest that SI-PPCs are able to induce the formation of triple-helical DNA between duplexes and strands that are not completely complementary to each other. Collectively, these data provide evidence that SI-PPCs are very efficient stabilizers of triple-stranded DNA that might exert their action by stabilizing higher-order structures such as triple-helical DNA.


Assuntos
DNA Polimerase Dirigida por DNA/metabolismo , DNA/efeitos dos fármacos , DNA/genética , Inibidores da Síntese de Ácido Nucleico/farmacologia , Compostos Organoplatínicos/farmacologia , Polímeros/farmacologia , Estrutura Molecular , Compostos Organoplatínicos/síntese química , Compostos Organoplatínicos/química , Polímeros/síntese química , Polímeros/química
14.
Nucleic Acids Res ; 43(11): 5297-306, 2015 Jun 23.
Artigo em Inglês | MEDLINE | ID: mdl-25940617

RESUMO

Loss of a base in DNA leading to creation of an abasic (AP) site leaving a deoxyribose residue in the strand, is a frequent lesion that may occur spontaneously or under the action of various physical and chemical agents. Progress in the understanding of the chemistry and enzymology of abasic DNA largely relies upon the study of AP sites in synthetic duplexes. We report here on interactions of diastereomerically pure metallo-helical 'flexicate' complexes, bimetallic triple-stranded ferro-helicates [Fe2(NN-NN)3](4+) incorporating the common NN-NN bis(bidentate) helicand, with short DNA duplexes containing AP sites in different sequence contexts. The results show that the flexicates bind to AP sites in DNA duplexes in a shape-selective manner. They preferentially bind to AP sites flanked by purines on both sides and their binding is enhanced when a pyrimidine is placed in opposite orientation to the lesion. Notably, the Λ-enantiomer binds to all tested AP sites with higher affinity than the Δ-enantiomer. In addition, the binding of the flexicates to AP sites inhibits the activity of human AP endonuclease 1, which is as a valid anticancer drug target. Hence, this finding indicates the potential of utilizing well-defined metallo-helical complexes for cancer chemotherapy.


Assuntos
Antineoplásicos/química , Dano ao DNA , DNA Liase (Sítios Apurínicos ou Apirimidínicos)/antagonistas & inibidores , Inibidores Enzimáticos/química , Compostos Ferrosos/química , 2-Aminopurina/análise , Amilorida/análise , Sítios de Ligação , Calorimetria , DNA/química , Pegada de DNA , Desnaturação de Ácido Nucleico
15.
Chemistry ; 21(31): 11189-95, 2015 Jul 27.
Artigo em Inglês | MEDLINE | ID: mdl-26103944

RESUMO

The dinuclear iron(II) supramolecular helicates [Fe2 L3 ]Cl4 (L=C25 H20 N4 ) bind to DNA through noncovalent (i.e., hydrogen-bonding, electrostatic) interactions and exhibit antimicrobial and anticancer effects. In this study, we show that the helicates condense plasmid DNA with a much higher potency than conventional DNA-condensing agents. Notably, molecules of DNA in the presence of the M enantiomer of [Fe2 L3 ]Cl4 do not form intermolecular aggregates typically formed by other condensing agents, such as spermidine or spermine. The helicates inhibit the activity of several DNA-processing enzymes, such as RNA polymerase, DNA topoisomerase I, deoxyribonuclease I, and site-specific restriction endonucleases. However, the results also indicate that the DNA condensation induced by the helicates does not play a crucial role in these inhibition reactions. The mechanisms for the inhibitory effects of [Fe2 L3 ]Cl4 helicates on DNA-related enzymatic activities have been proposed.


Assuntos
DNA Circular/metabolismo , Inibidores Enzimáticos/química , Inibidores Enzimáticos/farmacologia , Compostos Ferrosos/química , Compostos Ferrosos/farmacologia , Plasmídeos/metabolismo , Enzimas de Restrição do DNA/antagonistas & inibidores , DNA Topoisomerases Tipo I/metabolismo , DNA Circular/química , DNA Circular/ultraestrutura , RNA Polimerases Dirigidas por DNA/antagonistas & inibidores , Escherichia coli/enzimologia , Modelos Moleculares , Plasmídeos/química , Plasmídeos/ultraestrutura , Inibidores da Topoisomerase I/química , Inibidores da Topoisomerase I/farmacologia
16.
Inorg Chem ; 54(22): 10542-58, 2015 Nov 16.
Artigo em Inglês | MEDLINE | ID: mdl-26503063

RESUMO

The conjugation of redox-active complexes that can function as chemical nucleases to cationic tetrapeptides is pursued in this work in order to explore the expected synergistic effect between these two elements in DNA oxidative cleavage. Coordination complexes of biologically relevant first row metal ions, such as Zn(II) or Cu(II), containing the tetradentate ligands 1,4-dimethyl-7-(2-pyridylmethyl)-1,4,7-triazacyclononane ((Me2)PyTACN) and (2S,2S')-1,1'-bis(pyrid-2-ylmethyl)-2,2'-bipyrrolidine ((S,S')-BPBP) have been linked to a cationic LKKL tetrapeptide sequence. Solid-phase synthesis of the peptide-tetradentate ligand conjugates has been developed, and the preparation and characterization of the corresponding metallotetrapeptides is described. The DNA cleavage activity of Cu and Zn metallopeptides has been evaluated and compared to their metal binding conjugates as well as to the parent complexes and ligands. Very interestingly, the oxidative Cu metallopeptides 1Cu and 2Cu show an enhanced activity compared to the parent complexes, [Cu(PyTACN)](2+) and [Cu(BPBP)](2+), respectively. Under optimized conditions, 1Cu displays an apparent pseudo first-order rate constant (kobs) of ∼0.16 min(-1) with a supercoiled DNA half-life time (t1/2) of ∼4.3 min. On the other hand, kobs for 2Cu has been found to be ∼0.11 min(-1) with t1/2 ≈ 6.4 min. Hence, these results point out that the DNA cleavage activities promoted by the metallopeptides 1Cu and 2Cu render ∼4-fold and ∼23 rate accelerations in comparison with their parent Cu complexes. Additional binding assays and mechanistic studies demonstrate that the enhanced cleavage activities are explained by the presence of the cationic LKKL tetrapeptide sequence, which induces an improved binding affinity to the DNA, thus bringing the metal ion, which is responsible for cleavage, in close proximity.


Assuntos
Compostos Aza/farmacologia , Complexos de Coordenação/farmacologia , Clivagem do DNA/efeitos dos fármacos , DNA Super-Helicoidal/metabolismo , Oligopeptídeos/farmacologia , Piridinas/farmacologia , Compostos Aza/síntese química , Compostos Aza/química , Complexos de Coordenação/síntese química , Complexos de Coordenação/química , Cobre , DNA Super-Helicoidal/química , Humanos , Cinética , Ligantes , Células MCF-7 , Oligopeptídeos/síntese química , Oligopeptídeos/química , Plasmídeos , Piridinas/síntese química , Piridinas/química , Zinco
17.
Chemistry ; 20(25): 7566-70, 2014 Jun 16.
Artigo em Inglês | MEDLINE | ID: mdl-24863756

RESUMO

Loss of a base in DNA and the creation of an abasic (apurinic/apyrimidinic, AP) site is a frequent lesion that may occur spontaneously, or as a consequence of the action of DNA-damaging agents. The AP lesion is mutagenic or lethal if not repaired. We report a systematic thermodynamic investigation by differential scanning calorimetry on the evolution, during primer extension, of a model AP site in chemically simulated DNA translesion synthesis. Incorporation of dAMP (deoxyadenosine monophosphate), as well as dTMP (deoxythymidine monophosphate), opposite an AP site is enthalpically unfavorable, although incorporation of dTMP is more enthalpically unfavorable than that of dAMP. This finding is in a good agreement with experimental data showing that AP sites block various DNA polymerases of eukaryotic and prokaryotic origin and that, if bypassed, dAMP is preferentially inserted, whereas insertion of dTMP is less likely. The results emphasize the importance of thermodynamic contributions to the insertion of nucleotides opposite an AP site by DNA polymerases.


Assuntos
DNA/química , Termodinâmica , Dano ao DNA , Modelos Moleculares
18.
Inorg Chem ; 53(3): 1662-71, 2014 Feb 03.
Artigo em Inglês | MEDLINE | ID: mdl-24428232

RESUMO

The noncovalent analogues of antitumor polynuclear platinum complexes represent a structurally discrete class of platinum drugs. Their chemical and biological properties differ significantly from those of most platinum chemotherapeutics, which bind to DNA in a covalent manner by formation of Pt-DNA adducts. In spite of the fact that these noncovalent polynuclear platinum complexes contain no leaving groups, they have been shown to bind to DNA with high affinity. We report here on the DNA condensation properties of a series of noncovalent analogues of antitumor polynuclear platinum complexes described by biophysical and biochemical methods. The results demonstrate that these polynuclear platinum compounds are capable of inducing DNA condensation at more than 1 order of magnitude lower concentrations than conventional spermine. Atomic force microscopy studies of DNA condensation confined to a mica substrate have revealed that the DNA morphologies become more compact with increasing concentration of the platinum complexes. Moreover, we also found that the noncovalent polynuclear platinum complex [{Pt(NH3)3}2-µ-{trans-Pt(NH3)2(NH2(CH2)6NH2)2}](6+) (TriplatinNC-A) binds to DNA in a sequence-dependent manner, namely, to A/T-rich sequences and A-tract regions, and that noncovalent polynuclear platinum complexes protect DNA from enzymatic cleavage by DNase I. The results suggest that mechanisms of antitumor and cytotoxic activities of these complexes may be associated with their unique ability to condense DNA along with their sequence-specific DNA binding. Owing to their high cellular accumulation, it is also reasonable to suggest that their mechanism of action is based on the competition with naturally occurring DNA condensing agents, such as polyamines spermine, spermidine, and putrescine, for intracellular binding sites, resulting in the disturbance of the correct binding of regulatory proteins initiating the onset of apoptosis.


Assuntos
Antineoplásicos/química , Antineoplásicos/farmacologia , DNA/metabolismo , Compostos Organoplatínicos/química , Compostos Organoplatínicos/farmacologia , Sequência de Bases , DNA/química , Humanos , Neoplasias/tratamento farmacológico
19.
Angew Chem Int Ed Engl ; 53(47): 12812-6, 2014 Nov 17.
Artigo em Inglês | MEDLINE | ID: mdl-25256921

RESUMO

The trinuclear platinum complexes (TriplatinNC-A [{Pt(NH3 )3 }2 -µ-{trans-Pt(NH3 )2 (NH2 (CH2 )6 NH2 )2 }](6+) , and TriplatinNC [{trans-Pt(NH3 )2 (NH2 (CH2 )6 NH3 (+) )}2 -µ-{trans-Pt(NH3 )2 (NH2 (CH2 )6 NH2 )2 }](8+) ) are biologically active agents that bind to DNA through noncovalent (hydrogen bonding, electrostatic) interactions. Herein, we show that TriplatinNC condenses DNA with a much higher potency than conventional DNA condensing agents. Both complexes induce aggregation of small transfer RNA molecules, and TriplatinNC in particular completely inhibits DNA transcription at lower concentrations than naturally occurring spermine. Topoisomerase I-mediated relaxation of supercoiled DNA was inhibited by TriplatinNC-A and TriplatinNC at concentrations which were 60 times and 250 times lower than that of spermine. The mechanisms for the biological activity of TriplatinNC-A and TriplatinNC may be associated with their ability to condense/aggregate nucleic acids with consequent inhibitory effects on crucial enzymatic activities.


Assuntos
DNA Topoisomerases Tipo I/metabolismo , DNA/química , DNA/efeitos dos fármacos , Compostos Organoplatínicos/farmacologia , Inibidores da Topoisomerase I/farmacologia , Estrutura Molecular , Compostos Organoplatínicos/química , Plasmídeos , Relação Estrutura-Atividade , Inibidores da Topoisomerase I/química
20.
Chem Biol Interact ; 395: 111031, 2024 May 25.
Artigo em Inglês | MEDLINE | ID: mdl-38703805

RESUMO

Alternative DNA structures play critical roles in fundamental biological processes linked to human diseases. Thus, targeting and stabilizing these structures by specific ligands could affect the progression of cancer and other diseases. Here, we describe, using methods of molecular biophysics, the interactions of two oxidatively locked [Co2L3]6+ cylinders, rac-2 and meso-1, with diverse alternative DNA structures, such as junctions, G quadruplexes, and bulges. This study was motivated by earlier results demonstrating that both Co(III) cylinders exhibit potent and selective activity against cancer cells, accumulate in the nucleus of cancer cells, and prove to be efficient DNA binders. The results show that the bigger cylinder rac-2 stabilizes all DNA structures, while the smaller cylinder meso-1 stabilizes just the Y-shaped three-way junctions. Collectively, the results of this study suggest that the stabilization of alternative DNA structures by Co(III) cylinders investigated in this work might contribute to the mechanism of their biological activity.


Assuntos
Cobalto , DNA , DNA/química , DNA/metabolismo , Cobalto/química , Humanos , Complexos de Coordenação/química , Complexos de Coordenação/farmacologia , Conformação de Ácido Nucleico , Quadruplex G
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