LEADER 05198nam 2200637Ia 450 001 9910146146303321 005 20170815113054.0 010 $a1-282-12409-9 010 $a9786612124099 010 $a1-4443-1208-1 010 $a1-4051-9410-3 035 $a(CKB)1000000000719893 035 $a(EBL)428227 035 $a(OCoLC)352868155 035 $a(SSID)ssj0000354452 035 $a(PQKBManifestationID)11275363 035 $a(PQKBTitleCode)TC0000354452 035 $a(PQKBWorkID)10315306 035 $a(PQKB)10823710 035 $a(MiAaPQ)EBC428227 035 $a(PPN)152404201 035 $a(EXLCZ)991000000000719893 100 $a20081126d2009 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$aMetal complex-DNA interactions$b[electronic resource] /$fedited by Nick Hadjiliadis, Einar Sletten 210 $aOxford $cWiley$dc2009 215 $a1 online resource (558 p.) 300 $aDescription based upon print version of record. 311 $a0-470-74346-8 311 $a1-4051-7629-6 327 $aMetal Complex-DNA Interactions; Contents; Preface; List of Contributors; Acknowledgements; Part A: Basic Structural and Kinetic Aspects; 1: Sequence-Selective Binding of Transition Metal Complexes to DNA; 1.1 Introduction; 1.2 Ab initio Calculations and Photo-Cleavage Studies; 1.3 NMR Spectroscopic Studies of Metal Binding to DNA Oligonucleotides; 1.4 Summary of Theoretical and Experimental Evidence for Sequence-Selective Binding to DNA; 1.5 Sequence-Specific Groove Binding; Abbreviations; References; 2: Thermodynamic Models of Metal Ion-DNA Interactions; 2.1 Introduction 327 $a2.2 Interactions of Metal Ions with DNA2.3 Model and Mechanisms of Metal-Induced Formation of Point Defects; 2.4 Conclusions; Acknowledgements; Abbreviations; References; 3: Metal Ion Coordination in G-Quadruplexes; 3.1 Introduction; 3.2 Cation Coordination and Stability of G-Quadruplexes; 3.3 Structure of Sequences Consisting of Human Telomere Repeats; 3.4 G-Quadruplexes Adopted by Promoter Regions; 3.5 Bimolecular G-Quadruplexes of Analogues of the Oxytricha Telomere Repeat; 3.6 Coordination of Cations within d[(TG4T)4]; 3.7 Coordination of Cations within d[(G4T4G4)2] 327 $a3.8 Cation Movement within G-Quadruplexes3.9 Summary; Acknowledgements; References; 4: Supramolecular Chemistry of Metal-Nucleobase Complexes; 4.1 Introduction; 4.2 Discrete Architectures; 4.3 Infinite Architectures; 4.4 Overview of Metal Coordination Sites and Base-Base Hydrogen Bonding; 4.5 M-DNA; 4.6 Conclusion; Acknowledgements; References; Part B: Medical Applications; 5: Platinum Drugs, Nucleotides and DNA: The Role of Interligand Interactions; 5.1 Introduction; 5.2 Internucleotide Interactions; 5.3 Guanine cis Amine Interactions; 5.4 Solid-State Structures of Dynamic Nucleotides 327 $a5.5 Conformer Distribution in Cisplatin Adducts of G Derivatives5.6 Retro Models Applied to Adducts with Tethered Guanine Bases; 5.7 Conclusions and Perspectives; Acknowledgements; References; 6: Role of DNA Repair in Antitumour Effects of Platinum Drugs; 6.1 Introduction; 6.2 Human DNA Repair Systems; 6.3 Specific Binding of Repair Proteins to DNA Modified by Antitumour Platinum Compounds; 6.4 Repair of DNA Damage by Antitumour Platinum Compounds; 6.5 Implications for Design of Antitumour Platinum Compounds; Acknowledgements; References 327 $a7: Telomeres and Telomerase: Potential Targets for Platinum Complexes7.1 Function of Telomeres; 7.2 Structure of Telomeres; 7.3 Telomerase; 7.4 G-Quadruplex Structures and Small Molecules; 7.5 Cisplatin; 7.6 Interaction of Cisplatin and Related Platinum Complexes with G-Quadruplex Structures; 7.7 Interaction of Cisplatin and Related Platinum Complexes with Telomeric DNA Duplexes; 7.8 Interaction of Cisplatin and Related Platinum Complexes with Telomerase; 7.9 Conclusion; Acknowledgements; Abbreviations; References 327 $a8: Towards Photodynamic Therapy of Cancer with Platinum Group Metal Polyazine Complexes 330 $aMetal ions and metal complexes have long been recognized as critically important components of nucleic acid chemistry, both in regulation of gene expression and as promising therapeutic agents. Understanding how metal complexes interact with DNA has become an active research area at the interface between chemistry, molecular biology and medicine. Metal Complex - DNA Interactions provides a comprehensive overview of this increasingly diverse field, presenting recent developments and the latest research with particular emphasis on metal-based drugs and metal ion toxicity. The text is di 606 $aMetals$xPhysiological effect 606 $aDNA-ligand interactions 615 0$aMetals$xPhysiological effect. 615 0$aDNA-ligand interactions. 676 $a572.864 676 $a612.01524 701 $aHadjiliadis$b Nick D$0949554 701 $aSletten$b Einar$0949555 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910146146303321 996 $aMetal complex-DNA interactions$92146254 997 $aUNINA