Pular para o conteúdo
Merck
  • Interactions of binuclear ruthenium(II) complexes with oligonucleotides in hydrogel matrix: enantioselective threading intercalation into GC context.

Interactions of binuclear ruthenium(II) complexes with oligonucleotides in hydrogel matrix: enantioselective threading intercalation into GC context.

The journal of physical chemistry. B (2013-02-15)
Piotr Hanczyc, Per Lincoln, Bengt Norden
RESUMO

A stretched poly(vinyl alcohol) (PVA) film provides a unique matrix that enables also short DNA oligonucleotide duplex to be oriented and studied by linear dichroism (LD). This matrix further allows controlling DNA secondary structure by proper hydration (A or B form), and such humid films could potentially also mimic the molecular crowding in cellular contexts. However, early attempts to study intercalators and groove binders for probing DNA in PVA failed due to competitive matrix binding. Here we report the successful orientation in PVA of DNA oligonucleotide duplex hairpins with thread-intercalated binuclear complex [μ-(11,11'-bidppz)(phen)4Ru2](4+), and how LD depends on oligonucleotide sequence and metal center chirality. Opposite enantiomers of the ruthenium complex, ΔΔ and ΛΛ, were investigated with respect to enantioselectivity toward GC stretches as long as 22 bp. LD, supported by emission kinetics, reveals that threading intercalation occurs only with ΔΔ whereas ΛΛ remains externally bound, probably in either or both of the grooves of the GC-DNA. Enantioselective binding properties of sterically rigid DNA probes such as the ruthenium complexes could find applications for targeting nucleic acids, e.g., to inhibit transcription in therapeutic context such as treatment of malaria or cancer.

MATERIAIS
Número do produto
Marca
Descrição do produto

Sigma-Aldrich
Álcool polivinílico, Mw 89,000-98,000, 99+% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Mw 9,000-10,000, 80% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Mw 146,000-186,000, 99+% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Mw 13,000-23,000, 87-89% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Mw ~31,000
Sigma-Aldrich
Álcool polivinílico, Mw 31,000-50,000, 98-99% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, 87-90% hydrolyzed, average mol wt 30,000-70,000
Sigma-Aldrich
Álcool polivinílico, Mw 85,000-124,000, 99+% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Fully hydrolyzed
Sigma-Aldrich
Álcool polivinílico, average Mw 31,000-50,000, 87-89% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, average Mw 146,000-186,000, 87-89% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, average Mw 85,000-124,000, 87-89% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Mw ~130,000
Sigma-Aldrich
Álcool polivinílico, average Mw 13,000-23,000, 98% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Mw ~67,000
Sigma-Aldrich
Álcool polivinílico, average Mw 130,000, 99+% hydrolyzed
Sigma-Aldrich
Álcool polivinílico, Mw ~27,000
Sigma-Aldrich
Álcool polivinílico, average Mw ~205,000 g/mol
Sigma-Aldrich
Álcool polivinílico, Mw ~61,000
Sigma-Aldrich
Álcool polivinílico, Mw ~125,000
Sigma-Aldrich
Álcool polivinílico, Mw ~195,000
Sigma-Aldrich
Álcool polivinílico, Mw ~145,000
Sigma-Aldrich
Álcool polivinílico, Mw ~47,000