Three cationic tetrakis(nucleobase) complexes of PtII have been synthesized: [Pt(Hmhyp-N7)4](NO3)2·H2O 1, [Pt(Hegua-N7)4](NO3)2·2KNO3·5H2O 2 and trans-[Pt(Hmcyt-N3)2(Hegua-N7)2](NO3)23
(Hmhyp = 9-methylhypoxanthine, Hegua = 9-ethylguanine, Hmcyt = 1-methylcytosine). The X-ray crystal structure of 1 has been determined. All three cationic compounds rapidly react with HgII, but gel formation prevented an adequate characterization of the products formed. However, a CuII adduct of 1 was isolated in crystalline form and characterized crystallographically. [{(H2O)Cu(Hmhyp)4Pt}2Cu(ClO4)4](ClO4)2(NO3)4·6H2O 4 crystallizes in a centrosymmetric Cu–Pt–Cu–Pt–Cu chain structure with Cu–Pt separations of 2.791(1)
Å
(outside) and 3.8980(9)
Å
(inside). Two of the three CuII ions are bound via exocyclic O6 sites of the Hmhyp nucleobases. At neutral and moderate alkaline pH both 1 and 2 form virtually insoluble precipitates, which redissolve at strongly alkaline pH to give eventually anionic [Pt(L)4]2− species (L = mhyp, egua). Finally, 2 interacts with complementary Hmcyt to give Watson–Crick associates, as demonstrated by 1H NMR spectroscopy in DMSO-d6.
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