Cis‐Platinum Induced Distortions in DNA
Open Access
- 1 August 1983
- journal article
- Published by Wiley in European Journal of Biochemistry
- Vol. 134 (3) , 485-495
- https://doi.org/10.1111/j.1432-1033.1983.tb07593.x
Abstract
Proton NMR studies at 500 MHz in aqueous solution were carried out on the G‐G chelated deoxytrinucleosidediphosphate platinum complex cis‐Pt(NH3)2{d(GpCpG)}, on the uncoordinated trinucleotide d(GpCpG) and on the constituent monomers cis‐Pt(NH3)2{d(Gp)}2, cis‐Pt(NH3)2{d(pG)}2, d(Gp), d(pCp) and d(pG). Complete NMR spectral assignments are given and chemical shifts and coupling constants are analysed to obtain an impression of the detailed structure of d(GpCpG) and the distortion of the structure due to chelation with [cis‐Pt(NH3)2]2+. Platination of the guanosine monophosphates affects the sugar conformational equilibrium to favour the N conformation of the deoxyribose ring. This feature is also apparent in ribose mononucleotides and is possibly caused by an increased anomeric effect. In cis‐Pt(NH3)2{d(pG)}2 the phase angle of pseudorotation of the S‐type sugar ring is 20° higher than in ‘free’ d(pG) which might be an indication for an ionic interaction between the positive platinum and the negatively charged phosphate. It appears that d(GpCpG) reverts from a predominantly random coil to a normal right‐handed B‐DNA‐like single‐helical structure at lower temperatures, whereas the conformational features of cis‐Pt(NH3)2{d(GpCpG)} are largely temperature‐independent. In the latter compound much conformational freedom along the backbone angles is seen. The cytosine protons and deoxyribose protons exhibit almost no shielding effect as should normally be exerted by the guanine bases in stacking positions. This is interpreted in terms of a ‘turning away’ of the cytosine residue from both chelating guanines. Conformational features of cis‐Pt(NH3)2{d(GpCpG)} are compared with the ‘bulge‐out’ of the ribose‐trinucleotide m62ApUpm62A.Keywords
This publication has 42 references indexed in Scilit:
- Specific platinum chelation by the guanines of the deoxyhexanucleotide d(T-G-G-C-C-A) upon reaction with cis-[Pt(NH3)2(H2O)2](NO3)2Biochemical and Biophysical Research Communications, 1982
- Conformational analysis of an RNA triplet in aqueous solution: m62A‐U‐m62A studied by two‐dimensional nuclear magnetic resonance at 500 MHzRecueil des Travaux Chimiques des Pays-Bas, 1982
- Double-resonance experiments at 500 MHz on gene-5 protein and its complex with octadeoxyriboadenylic acidBiochemistry, 1981
- cis-Diamminedichloroplatinum(II) binds in a unique manner to oligo(dG).oligo(dC) sequences in DNA - a new assay using exonuclease IIIJournal of the American Chemical Society, 1981
- Chelation of cis‐Pt(NH3)2Cl2 by the deoxynucleotide d(C-C-G-G)Recueil des Travaux Chimiques des Pays-Bas, 1981
- Data shift accumulation and alternate delay accumulation techniques for overcoming the dynamic range problemJournal of Magnetic Resonance (1969), 1980
- The interactions of cis- and trans-diammineplatinum compounds with 5′-guanosine monophosphate and 5′-deoxyguanosine monophosphate. A proton nmr investigationJournal of Inorganic Biochemistry, 1980
- Structural properties of a nearly stoichiometric diammineplatinum(II) complex with inosine 5'-monophosphateJournal of the American Chemical Society, 1979
- Platinum-DNA crosslinking: platinum antitumor drug interactions with native lambda bacteriophage DNA studied using a restriction endonucleaseBiochimie, 1978
- Conformation of the exocyclic 5′-CH2OH in nucleosides and nucleotides in aqueous solution from specific assignments of the H5′, and H5″ signals in the NMR spectraBiochemical and Biophysical Research Communications, 1972