Literature DB >> 12643773

Spectroscopic and thermodynamic studies on the binding of sanguinarine and berberine to triple and double helical DNA and RNA structures.

Suman Das1, Gopinatha Suresh Kumar, Arghya Ray, Motilal Maiti.   

Abstract

A comparative study on the interaction of sanguinarine and berberine with DNA and RNA triplexes and their parent duplexes was performed, by using a combination of spectrophotometric, UV thermal melting, circular dichroic and thermodynamic techniques. Formation of the DNA and RNA triplexes was confirmed from UV-melting and circular dichroic measurements. The interaction process was characterized by increase of thermal melting temperature, perturbation in circular dichroic spectrum and the typical hypochromic and bathochromic effects in the absorption spectrum. Scatchard analysis indicated that both the alkaloids bound to the triplex and duplex structures in a non-cooperative manner and the binding was stronger to triplexes than to parent duplexes. Thermal melting studies further indicated that sanguinarine stabilized the Hoogsteen base paired third strand of both DNA and RNA triplexes more tightly compared to their Watson-Crick strands, while berberine stabilized the third strand only without affecting the Watson-Crick strand. However, sanguinarine stabilized the parent duplexes while no stabilization was observed with berberine under identical conditions. Circular dichroic studies were also consistent with the observation that perturbations of DNA and RNA triplexes were more compared to their parent duplexes in presence of the alkaloids. Thermodynamic data revealed that binding of sanguinarine and berberine to triplexes (T.AxT and U.AxU) and duplexes (A.T and A.U) showed negative enthalpy changes and positive entropy changes but that of sanguinarine to C.GxC(+) triplex and G.C duplex exhibited negative enthalpy and negative entropy changes. Taken together, these results suggest that both sanguinarine and berberine can bind and stabilize the DNA and RNA triplexes more strongly than their respective parent duplexes.

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Year:  2003        PMID: 12643773     DOI: 10.1080/07391102.2003.10506887

Source DB:  PubMed          Journal:  J Biomol Struct Dyn        ISSN: 0739-1102


  16 in total

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3.  Biophysical insights into the interaction of two enantiomers of Ru(II) complex [Ru(bpy)2(7-CH3-dppz)]2+ with the RNA poly(U-A⁎U) triplex.

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6.  Polymorphic nucleic Acid binding of bioactive isoquinoline alkaloids and their role in cancer.

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7.  Binding of novel 9-O-N-aryl/arylalkyl amino carbonyl methyl berberine analogs to poly(U)-poly(A)·poly(U) triplex and comparison to the duplex poly(A)-poly(U).

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Journal:  Mol Biol Rep       Date:  2014-05-30       Impact factor: 2.316

8.  Interaction of 9-O-(ω-amino) alkyl ether berberine analogs with poly(dT)·poly(dA)*poly(dT) triplex and poly(dA)·poly(dT) duplex: a comparative study.

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Journal:  Mol Biol Rep       Date:  2013-05-12       Impact factor: 2.316

9.  Binding properties of Ru(II) polypyridyl complexes with poly(U)·poly(A)*poly(U) triplex: the ancillary ligand effect on third-strand stabilization.

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Journal:  J Biol Inorg Chem       Date:  2012-10-31       Impact factor: 3.358

10.  Genetic evidence for inhibition of bacterial division protein FtsZ by berberine.

Authors:  Jaroslaw M Boberek; Jem Stach; Liam Good
Journal:  PLoS One       Date:  2010-10-29       Impact factor: 3.240

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