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1.
Nucleic Acids Res ; 44(5): 2007-19, 2016 Mar 18.
Artículo en Inglés | MEDLINE | ID: mdl-26857548

RESUMEN

Targeting and invading double-stranded DNA with synthetic oligonucleotides under physiological conditions remain a challenge. Bis-locked nucleic acids (bisLNAs) are clamp-forming oligonucleotides able to invade into supercoiled DNA via combined Hoogsteen and Watson-Crick binding. To improve the bisLNA design, we investigated its mechanism of binding. Our results suggest that bisLNAs bind via Hoogsteen-arm first, followed by Watson-Crick arm invasion, initiated at the tail. Based on this proposed hybridization mechanism, we designed next-generation bisLNAs with a novel linker able to stack to adjacent nucleobases, a new strategy previously not applied for any type of clamp-constructs. Although the Hoogsteen-arm limits the invasion, upon incorporation of the stacking linker, bisLNA invasion is significantly more efficient than for non-clamp, or nucleotide-linker containing LNA-constructs. Further improvements were obtained by substituting LNA with 2'-glycylamino-LNA, contributing a positive charge. For regular bisLNAs a 14-nt tail significantly enhances invasion. However, when two stacking linkers were incorporated, tail-less bisLNAs were able to efficiently invade. Finally, successful targeting of plasmids inside bacteria clearly demonstrates that strand invasion can take place in a biologically relevant context.


Asunto(s)
ADN Bacteriano/metabolismo , ADN Superhelicoidal/metabolismo , Glicina/análogos & derivados , Oligonucleótidos Antisentido/metabolismo , Oligonucleótidos/metabolismo , Secuencia de Bases , Sitios de Unión , ADN Bacteriano/antagonistas & inhibidores , ADN Bacteriano/química , ADN Superhelicoidal/química , Escherichia coli/genética , Escherichia coli/metabolismo , Modelos Moleculares , Datos de Secuencia Molecular , Hibridación de Ácido Nucleico , Oligonucleótidos/síntesis química , Oligonucleótidos Antisentido/síntesis química , Plásmidos/química , Plásmidos/metabolismo , Técnicas de Síntesis en Fase Sólida , Electricidad Estática , Relación Estructura-Actividad
2.
Chem Commun (Camb) ; 51(99): 17552-5, 2015 Dec 25.
Artículo en Inglés | MEDLINE | ID: mdl-26477302

RESUMEN

Several GCN4 bZIP TF models have previously been designed and synthesized. However, the synthetic routes towards these constructs are typically tedious and difficult. We here describe the substitution of the Leucine zipper domain of the protein by a deoxycholic acid derivative appending the two GCN4 binding region peptides through an optimized double azide-alkyne cycloaddition click reaction. In addition to achieving sequence specific dsDNA binding, we have investigated the potential of these compounds to enter cells. Confocal microscopy and flow cytometry show the beneficial influence of the steroid on cell uptake. This unique synthetic model of the bZIP TF thus combines sequence specific dsDNA binding properties with enhanced cell-uptake. Given the unique properties of deoxycholic acid and the convergent nature of the synthesis, we believe this work represents a key achievement in the field of TF mimicry.


Asunto(s)
ADN/química , Péptidos/química , Esteroides/química , ADN/metabolismo
3.
Org Biomol Chem ; 13(18): 5273-8, 2015 May 14.
Artículo en Inglés | MEDLINE | ID: mdl-25857557

RESUMEN

Synthetic models of bZIP transcription factors have been developed with the capability of specific DNA recognition. Our design is based on the CuAAC mediated conjugation of basic region Leucine Zipper peptides to different derivatives of α, ß and γ-cyclodextrins equipped with azide functionalities. Thorough optimization of reaction conditions allowed convergent and simultaneous conjugation of two long unprotected cationic peptides to cyclodextrin-bis azide derivatives. The resulting constructs were shown to specifically recognize their cognate DNA sequence with nM affinities. In comparison with previously developed TF models, the derivatives described here combine the enhanced DNA binding capabilities with an easy and convergent synthetic route.


Asunto(s)
Ciclodextrinas/química , ADN/química , Péptidos/química
4.
Nucleic Acids Res ; 41(5): 3257-73, 2013 Mar 01.
Artículo en Inglés | MEDLINE | ID: mdl-23345620

RESUMEN

In spite of the many developments in synthetic oligonucleotide (ON) chemistry and design, invasion into double-stranded DNA (DSI) under physiological salt and pH conditions remains a challenge. In this work, we provide a new ON tool based on locked nucleic acids (LNAs), designed for strand invasion into duplex DNA (DSI). We thus report on the development of a clamp type of LNA ON-bisLNA-with capacity to bind and invade into supercoiled double-stranded DNA. The bisLNA links a triplex-forming, Hoogsteen-binding, targeting arm with a strand-invading Watson-Crick binding arm. Optimization was carried out by varying the number and location of LNA nucleotides and the length of the triplex-forming versus strand-invading arms. Single-strand regions in target duplex DNA were mapped using chemical probing. By combining design and increase in LNA content, it was possible to achieve a 100-fold increase in potency with 30% DSI at 450 nM using a bisLNA to plasmid ratio of only 21:1. Although this first conceptual report does not address the utility of bisLNA for the targeting of DNA in a chromosomal context, it shows bisLNA as a promising candidate for interfering also with cellular genes.


Asunto(s)
ADN Superhelicoidal/química , Oligonucleótidos/química , Emparejamiento Base , Secuencia de Bases , Sitios de Unión , Tampones (Química) , ADN/química , División del ADN , Enzimas de Restricción del ADN/química , Concentración de Iones de Hidrógeno , Datos de Secuencia Molecular , Oligonucleótidos/síntesis química , Plásmidos/química , Temperatura de Transición
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