Qu Y, Kipping R G, Farrell N P
Department of Chemistry, Virginia Commonwealth University, 1001 W. Main St., Richmond, VA 23284-2006, USA.
Dalton Trans. 2015 Feb 28;44(8):3563-72. doi: 10.1039/c4dt03237c.
The phosphate clamp is a distinct mode of ligand-DNA binding where the molecular recognition is manifested through ("non-covalent") hydrogen-bonding from am(m)ines of polynuclear platinum complexes to the phosphate oxygens on the oligonucleotide backbone. This third mode of DNA binding is unique to the "classical" DNA intercalators and minor groove binding agents and even the closely related covalently binding mononuclear and polynuclear drugs. 2D (1)H NMR studies on the Dickerson-Drew dodecamer (DDD, d(CGCGAATTCGCG)2) showed significant A-T contacts mainly on nucleotides A6, T7 and T8 implying a selective bridging from C9G10 in the 3' direction to C9G10 of the opposite strand. {(1)H, (15)N} HSQC NMR spectroscopy using the fully (15)N-labelled compound {trans-Pt(NH2)3(H2N(CH2)6NH3}2μ-(H2N(CH2)6NH2)2(Pt(NH3)2 (TriplatinNC) showed at pH 6 significant chemical shifts and (1)J((195)Pt-(15)N) coupling constants for the free drug and DDD-TriplatinNC at pH 7 indicative of formation of the phosphate clamp. (31)P NMR results are also reported for the hexamer d(CGTACG)2 showing changes in (31)P NMR chemical shifts indicative of changes around the phosphorus center. The studies confirm the DNA binding modes by substitution-inert (non-covalent) polynuclear platinum complexes and help in further establishing the chemotype as a new class of potential anti-tumour agents in their own right with a distinct profile of biological activity.
磷酸钳是一种独特的配体 - DNA结合模式,其中分子识别通过多核铂配合物的胺与寡核苷酸主链上的磷酸氧形成(“非共价”)氢键来体现。这种第三种DNA结合模式是“经典”DNA嵌入剂、小沟结合剂乃至密切相关的共价结合单核和多核药物所特有的。对Dickerson - Drew十二聚体(DDD,d(CGCGAATTCGCG)2)的二维(1)H NMR研究表明,主要在核苷酸A6、T7和T8上存在显著的A - T接触,这意味着从3'方向的C9G10到相反链的C9G10存在选择性桥连。使用完全(15)N标记的化合物{trans - Pt(NH2)3(H2N(CH2)6NH3}2μ - (H2N(CH2)6NH2)2(Pt(NH3)2(三联铂NC)进行的{(1)H, (15)N} HSQC NMR光谱显示,在pH 6时,游离药物有显著的化学位移,在pH 7时,DDD - 三联铂NC有(1)J((195)Pt - (15)N)耦合常数,表明形成了磷酸钳。还报道了六聚体d(CGTACG)2的(31)P NMR结果,显示(31)P NMR化学位移发生变化,表明磷中心周围发生了变化。这些研究证实了取代惰性(非共价)多核铂配合物的DNA结合模式,并有助于进一步将该化学类型确立为一类具有独特生物活性谱的新型潜在抗肿瘤药物。