DNA-Binding Cytotoxic Alkaloids: Comparative Study of the Energetics of Binding of Berberine, Palmatine, and Coralyne

被引:38
作者
Bhadra, Kakali [1 ]
Maiti, Motilal [1 ]
Kumar, Gopinatha Suresh [1 ]
机构
[1] Indian Inst Chem Biol, Biophys Chem Lab, Council Sci & Ind Res, Kolkata 700032, India
关键词
D O I
10.1089/dna.2008.0779
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Deoxyribonucleic acid is the site of storage and retrieval of genetic information through interaction with proteins and other small molecules. In the present study, the interaction of two natural cytotoxic protoberberine plant alkaloids, berberine and palmatine, and a synthetic derivative, coralyne, with mammalian herring testis DNA was investigated using a combination of isothermal titration calorimetry, differential scanning calorimetry, and optical melting experiments to characterize the energetics of their binding. The binding constants of these alkaloids to DNA under identical conditions were evaluated from the UV melting data, and the enthalpy of binding was elucidated from isothermal titration studies. The binding constants of berberine, palmatine, and coralyne to DNA were found to be 1.15 x 10(4), 2.84 x 10(4), and 3.5 x 10(6) M-1 at 20 degrees C in buffer of 20mM[Na+]. Parsing of the free energy change of the interaction observed into polyelectrolytic and nonpolyelectrolytic components suggested that although these alkaloids are charged, the major contributor of about 75% of the binding free energy arises from the nonpolyelectrolytic forces. The binding in case of palmatine and coralyne was predominantly enthalpy driven with favoring smaller entropy terms, while that of berberine was favored by both negative enthalpy and positive entropy changes. Temperature dependence of the binding enthalpies determined from ITC studies in the range 20-40 degrees C was used to calculate the binding-induced change in heat capacity (Delta C-p(o)) values as -117, -135, and -157 cal/mol K, respectively, for berberine, palmatine, and coralyne. Taken together, the results suggest that the DNA binding of the planar synthetic coralyne is stronger and thermodynamically more favored compared to the buckled natural berberine and palmatine.
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页码:675 / 685
页数:11
相关论文
共 66 条
[1]   Sequence-specific DNA minor groove binders. Design and synthesis of netropsin and distamycin analogues [J].
Bailly, C ;
Chaires, JB .
BIOCONJUGATE CHEMISTRY, 1998, 9 (05) :513-538
[2]   Thermodynamic characterization of the multivalent binding of chartreusin to DNA [J].
Barceló, F ;
Capó, D ;
Portugal, J .
NUCLEIC ACIDS RESEARCH, 2002, 30 (20) :4567-4573
[3]   Entropically-driven binding of mithramycin in the minor groove of C/G-rich DNA sequences [J].
Barcelo, Francisca ;
Scotta, Claudia ;
Ortiz-Lombardia, Miguel ;
Mendez, Carmen ;
Salas, Jose A. ;
Portugal, Jose .
NUCLEIC ACIDS RESEARCH, 2007, 35 (07) :2215-2226
[4]   Molecular recognition of DNA by small molecules: AT base pair specific intercalative binding of cytotoxic plant alkaloid palmatine [J].
Bhadra, Kakah ;
Maiti, Motilal ;
Kumar, Gopinatha Suresh .
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS, 2007, 1770 (07) :1071-1080
[5]   Berberine-DNA complexation: New insights into the cooperative binding and energetic aspects [J].
Bhadra, Kakali ;
Maiti, Motilal ;
Kumar, Gopinatha Suresh .
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS, 2008, 1780 (09) :1054-1061
[6]   Interaction of isoquinoline alkaloid palmatine with deoxyribonucleic acids: Binding heterogeneity, and conformational and thermodynamic aspects [J].
Bhadra, Kakali ;
Maiti, Motilal ;
Kumar, Gopinatha Suresh .
CHEMISTRY & BIODIVERSITY, 2008, 5 (04) :575-590
[7]   Thermodynamics of the binding of cytotoxic protoberberine molecule coralyne to deoxyribonucleic acids [J].
Bhadra, Kakali ;
Maiti, Motilal ;
Kumar, Gopinatha Suresh .
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS, 2008, 1780 (02) :298-306
[8]  
BHAKUNI DS, 1986, ALKALOIDS, V28, P95
[9]   Advances in the analysis of isothermal titration calorimetry data for ligand-DNA interactions [J].
Buurma, Niklaas J. ;
Haq, Ihtshamul .
METHODS, 2007, 42 (02) :162-172
[10]  
Carrasco C, 2001, ANTI-CANCER DRUG DES, V16, P99