Molecular Transformations in DNA under the Influence of UV-radiation

2020 ◽  
Vol 04 ◽  
Author(s):  
Vigen G. Barkhudaryan ◽  
Gayane V. Ananyan ◽  
Nelli H. Karapetyan

Background: The processes of destruction and crosslinking of macromolecules occur simultaneously under the influence of ultraviolet (UV) radiation in synthetic polymers, dry DNA and their concentrated solutions. Objective: The effect of UV radiation on calf thymus DNA in dilute solutions subjected to UV- irradiation was studied in this work. Method: The calf thymus DNA was studied in dilute solutions using viscometry, absorption spectroscopy and electrophoresis. Results: It was shown, that at a low concentration of DNA in the buffer solution ([DNA] = 85 μg / ml) under the influence of UV radiation, the processes of destruction of macromolecules and an increase in their flexibility predominate, which is accompanied by a gradual decrease in the viscosity of their solution. In addition, due to the low concentration of the solution, intramolecular crosslinking of macromolecules predominates, which also reduces their size and, consequently, the viscosity of the solution. Conclusion: It was concluded, that in dilute DNA solutions, due to the predominance of the processes of intramolecular crosslinking of macromolecules over intermolecular, only constant processes of decreasing the sizes of DNA macromolecules occur. As a result, its solubility remains virtually unchanged during UV irradiation. The described comments are also excellently confirmed by the results of absorption spectroscopy and electrophoresis

2017 ◽  
Vol 50 (20) ◽  
pp. 8245-8257 ◽  
Author(s):  
L. Mónica Bravo-Anaya ◽  
E. Rebeca Macías ◽  
J. Humberto Pérez-López ◽  
Hélène Galliard ◽  
Denis C. D. Roux ◽  
...  

2009 ◽  
Vol 13 (12) ◽  
pp. 1255-1261 ◽  
Author(s):  
Wubiao Duan ◽  
Zhenxin Wang ◽  
Michael J. Cook

The phthalocyanine salt [ ZnPc(NMe3)4]I4 was synthesized from 4-nitrophthalonitrile using a three-step procedure. The interaction of [ ZnPc(NMe3)4]4+ with calf thymus DNA (CT DNA) has been investigated by UV-vis and fluorescence spectrometric methods. [ ZnPc(NMe3)4]4+ exists in a non-monomeric form, proposed to be a dimer, in phosphate buffer solution (pH 6.82). Spectral changes show that in the presence of high concentrations of CT DNA added to the solution, [ ZnPc(NMe3)4]4+ is bound in a monomeric state with evidence suggesting it is located in a DNA groove. At lower concentrations of DNA there is evidence of stacking of non-monomeric [ ZnPc(NMe3)4]4+ onto the DNA. Two intrinsic binding constants for the interaction of [ ZnPc(NMe3)4]4+ with CT DNA, 1.33 × 105 and 2.56 × 104 M-1 have been obtained. Electrostatic binding is shown to play an important role in the interaction of [ ZnPc(NMe3)4]4+ with nucleic acids.


Pramana ◽  
2002 ◽  
Vol 58 (4) ◽  
pp. 685-694 ◽  
Author(s):  
Ranjini Bandyopadhyay ◽  
AK Sood

1989 ◽  
Vol 54 (7) ◽  
pp. 2021-2026
Author(s):  
Marie Stiborová ◽  
Befekadu Asfaw ◽  
Pavel Anzenbacher

Ce(IV) ions in acidic medium convert a carcinogenic non-aminoazo dye, 1-phenylazo-2-hydroxy-naphthalene (Sudan I) into an ultimate carcinogen, which binds to calf thymus DNA. The principal product of Sudan I oxidation by the Ce(IV) system is the benzenediazonium ion. A minor product is the dihydroxyderivative of Sudan I, 1-(4-hydroxyphenylazo)-2,6-dihydroxynaphthalene. Other minor coloured products (yellow and brown) were not identified. The principal product (the benzenediazonium ion) is responsible for the carcinogenicity of Sudan I, as it covalently binds to DNA. Ce(IV) ions in acidic medium represent a suitable model system, which imitates the activation route of carcinogenic azo dyes.


MAPAN ◽  
2016 ◽  
Vol 31 (3) ◽  
pp. 169-175 ◽  
Author(s):  
Deepti Chadha ◽  
Shweta Agarwal ◽  
Ranjana Mehrotra

Author(s):  
Cleiton M. da Silva ◽  
Marina M. Silva ◽  
Fabiano S. Reis ◽  
Ana Lúcia T.G. Ruiz ◽  
João E. de Carvalho ◽  
...  

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