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DNA-binding and Oxidative Properties of Cationic Phthalocyanines and Their Dimeric Complexes with Anionic Phthalocyanines Covalently Linked to Oligonucleotides
Authors:A A Kuznetsova  E A Lukyanets  L I Solovyeva  D G Knorre  O S Fedorova
Institution:1. Novosibirsk State University , Pirogova St. 2, 630090 , Novosibirsk , Russia;2. Institute of Chemical Biology and Fundamental Medicine, Siberian Division of Russian Academy of Sciences , Lavrentyev Ave. 8, 630090 , Novosibirsk , Russia;3. State Scientific Centre of the Russian Federation ?NIOPIK? , Sadovaya St. 1/4, 103787 , Moscow , Russia;4. Institute of Chemical Biology and Fundamental Medicine, Siberian Division of Russian Academy of Sciences , Lavrentyev Ave. 8, 630090 , Novosibirsk , Russia
Abstract:Abstract

Design of chemically modified oligonucleotides for regulation of gene expression has attracted considerable attention over the past decades. One actively pursued approach involves antisense or antigene oligonucleotide constructs carrying reactive groups, many of these based on transition metal complexes. The complexes of Fe(II) and Co(II) with phthalocyanines are extremely good catalysts of oxidation of organic compounds with molecular oxygen and hydrogen peroxide. The binding of positively charged Fe(II) and Co(II) phthalocyanines with single- and double-stranded DNA was investigated. It was shown that these phthalocyanines interact with nucleic acids through an outside binding mode. The site-directed modification of single-stranded DNA by O2 and H2O2 in the presence of dimeric complexes of negatively and positively charged Fe(II) and Co(II) phthalocyanines was investigated. These complexes were formed directly on single-stranded DNA through interaction between negatively charged phthalocyanine in conjugate and positively charged phthalocyanine in solution. The resulting oppositely charged phthalocyanine complexes showed significant increase of catalytic activity compared with monomeric forms of phthalocyanines Fe(II) and Co(II). These complexes catalyzed the DNA oxidation with high efficacy and led to direct DNA strand cleavage. It was determined that oxidation of DNA by molecular oxygen catalyzed by complex of Fe(II)-phthalocyanines proceeds with higher rate than in the case of Co(II)-phthalocyanines but the latter led to a greater extent of target DNA modification.
Keywords:Reactive oligonucleotide derivatives  Phthalocyanine metal complexes  Oxidative DNA modification
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