首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Polycyclic Azoniahetarenes: Assessing the Binding Parameters of Complexes between Unsubstituted Ligands and G‐Quadruplex DNA
Authors:Dipl‐Chem Katharina Jäger  Dr Jan W Bats  Prof Dr Heiko Ihmels  Dr Anton Granzhan  Sandra Uebach  Dr Brian O Patrick
Institution:1. Department Chemie ‐ Biologie, Universit?t Siegen, Adolf‐Reichwein‐Str. 2, 57068 Siegen (Germany);2. Institut für Organische Chemie und Chemische Biologie, Johann‐Wolfgang‐Goethe‐Universit?t Frankfurt, Max‐von‐Laue‐Strasse 7, 60438 Frankfurt am Main (Germany);3. Current address: CNRS UMR176, Institut Curie, Centre de Recherche, 91405 Orsay (France);4. Department of Chemistry, University of British Columbia, Main Mall 2036, Vancouver, BC, V6T?1Z1 (Canada)
Abstract:Polycyclic azoniahetarenes were employed to determine the effect of the structure of unsubstituted polyaromatic ligands on their quadruplex‐DNA binding properties. The interactions of three isomeric diazoniadibenzob,k]chrysenes ( 4 a – c ), diazoniapentaphene ( 5 ), diazoniaanthra1,2‐a]anthracene ( 6 ), and tetraazoniapentapheno6,7‐h]pentaphene ( 3 ) with quadruplex DNA were examined by DNA melting studies (FRET melting) and fluorimetric titrations. In general, penta‐ and hexacyclic azoniahetarenes bind to quadruplex DNA (Kb≈106 M ?1) even in the absence of additional functional side chains. The binding modes of 4 a – c and 3 were studied in more detail by ligand displacement experiments, isothermal titration calorimetry, and CD and NMR spectroscopy. All experimental data indicate that terminal π stacking of the diazoniachrysenes to the quadruplex is the major binding mode; however, because of different electron distributions of the π systems of each isomer, these ligands align differently in the binding site to achieve ideal binding interactions. It is proposed that tetraazonia ligand 3 binds to the quadruplex by terminal stacking with a small portion of its π system, whereas a significant part of the bulky ligand most likely points outside the quadruplex structure, and is thus partially placed in the grooves. Notably, 3 and the known tetracationic porphyrin TMPyP4 exhibit almost the same binding properties towards quadruplex DNA, with 3 being more selective for quadruplex than for duplex DNA. Overall, studies on azonia‐type hetarenes enable understanding of some parameters that govern the quadruplex‐binding properties of parent ligand systems. Since unsubstituted ligands were employed in this study, complementary and cooperative effects of additional substituents, which may interfere with the ligand properties, were eliminated.
Keywords:DNA recognition  G‐quadruplexes  nitrogen heterocycles  polycycles
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号