TY - JOUR A1 - Zhang, Fangyuan A1 - Michail, Evripidis A1 - Saal, Fridolin A1 - Krause, Ana-Maria A1 - Ravat, Prince T1 - Stereospecific Synthesis and Photophysical Properties of Propeller-Shaped C\(_{90}\)H\(_{48}\) PAH JF - Chemistry - A European Journal N2 - Herein, we have synthesized an enantiomerically pure propeller‐shaped PAH, C\(_{90}\)H\(_{48}\), possessing three [7]helicene and three [5]helicene subunits. This compound can be obtained in gram quantities in a straightforward manner. The photophysical and chiroptical properties were investigated using UV/Vis absorption and emission, optical rotation and circular dichroism spectroscopy, supported by DFT calculations. The nonlinear optical properties were investigated by two‐photon absorption measurements using linearly and circularly polarized light. The extremely twisted structure and packing of the homochiral compound were investigated by single‐crystal X‐ray diffraction analysis. KW - chirality KW - enantiomers KW - helicenes KW - polycyclic aromatic hydrocarbons KW - stereospecific sythesis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-208682 VL - 25 IS - 71 ER - TY - JOUR A1 - Hattori, Yohei A1 - Michail, Evripidis A1 - Schmiedel, Alexander A1 - Moos, Michael A1 - Holzapfel, Marco A1 - Krummenacher, Ivo A1 - Braunschweig, Holger A1 - Müller, Ulrich A1 - Pflaum, Jens A1 - Lambert, Christoph T1 - Luminescent Mono-, Di-, and Tri-radicals: Bridging Polychlorinated Triarylmethyl Radicals by Triarylamines and Triarylboranes JF - Chemistry - A European Journal N2 - Up to three polychlorinated pyridyldiphenylmethyl radicals bridged by a triphenylamine carrying electron withdrawing (CN), neutral (Me), or donating (OMe) groups were synthesized and analogous radicals bridged by tris(2,6‐dimethylphenyl)borane were prepared for comparison. All compounds were as stable as common closed‐shell organic compounds and showed significant fluorescence upon excitation. Electronic, magnetic, absorption, and emission properties were examined in detail, and experimental results were interpreted using DFT calculations. Oxidation potentials, absorption and emission energies could be tuned depending on the electron density of the bridges. The triphenylamine bridges mediated intramolecular weak antiferromagnetic interactions between the radical spins, and the energy difference between the high spin and low spin states was determined by temperature dependent ESR spectroscopy and DFT calculations. The fluorescent properties of all radicals were examined in detail and revealed no difference for high and low spin states which facilitates application of these dyes in two‐photon absorption spectroscopy and OLED devices. KW - density functional calculations KW - fluorescence KW - NIR OLED KW - radical KW - two-photon absorption Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-208162 VL - 25 IS - 68 ER - TY - JOUR A1 - Merz, Julia A1 - Dietz, Maximilian A1 - Vonhausen, Yvonne A1 - Wöber, Frederik A1 - Friedrich, Alexandra A1 - Sieh, Daniel A1 - Krummenacher, Ivo A1 - Braunschweig, Holger A1 - Moos, Michael A1 - Holzapfel, Marco A1 - Lambert, Christoph A1 - Marder, Todd B. T1 - Synthesis, Photophysical and Electronic Properties of New Red-to-NIR Emitting Donor-Acceptor Pyrene Derivatives JF - Chemistry - A European Journal N2 - We synthesized new pyrene derivatives with strong bis(para ‐methoxyphenyl)amine donors at the 2,7‐positions and n ‐azaacene acceptors at the K‐region of pyrene. The compounds possess a strong intramolecular charge transfer, leading to unusual properties such as emission in the red to NIR region (700 nm), which has not been reported before for monomeric pyrenes. Detailed photophysical studies reveal very long intrinsic lifetimes of >100 ns for the new compounds, which is typical for 2,7‐substituted pyrenes but not for K‐region substituted pyrenes. The incorporation of strong donors and acceptors leads to very low reduction and oxidation potentials, and spectroelectrochemical studies show that the compounds are on the borderline between localized Robin‐Day class‐II and delocalized Robin‐Day class‐III species. KW - orylation KW - K-region KW - luminescence KW - polycyclic aromatic hydrocarbons KW - redox Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-207486 VL - 26 IS - 2 ER - TY - JOUR A1 - Griesbeck, Stefanie A1 - Michail, Evripidis A1 - Rauch, Florian A1 - Ogasawara, Hiroaki A1 - Wang, Chenguang A1 - Sato, Yoshikatsu A1 - Edkins, Robert M. A1 - Zhang, Zuolun A1 - Taki, Masayasu A1 - Lambert, Christoph A1 - Yamaguchi, Shigehiro A1 - Marder, Todd B. T1 - The Effect of Branching on One- and Two-Photon Absorption, Cell Viability and Localization of Cationic Triarylborane Chromophores with Dipolar versus Octupolar Charge Distributions for Cellular Imaging JF - Chemistry - A European Journal N2 - Two different chromophores, namely a dipolar and an octupolar system, were prepared and their linear and nonlinear optical properties as well as their bioimaging capabilities were compared. Both contain triphenylamine as the donor and a triarylborane as the acceptor, the latter modified with cationic trimethylammonio groups to provide solubility in aqueous media. The octupolar system exhibits a much higher two‐photon brightness, and also better cell viability and enhanced selectivity for lysosomes compared with the dipolar chromophore. Furthermore, both dyes were applied in two‐photon excited fluorescence (TPEF) live‐cell imaging. KW - boranes KW - cell imaging KW - fluerescence KW - lysosome KW - two-photon excited fluorescence Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204829 VL - 25 IS - 57 ER - TY - JOUR A1 - Liaqat, Anam A1 - Stiller, Carina A1 - Michel, Manuela A1 - Sednev, Maksim V. A1 - Höbartner, Claudia T1 - N\(^6\)-Isopentenyladenosine in RNA Determines the Cleavage Site of Endonuclease Deoxyribozymes JF - Angewandte Chemie International Edition N2 - RNA-cleaving deoxyribozymes can serve as selective sensors and catalysts to examine the modification state of RNA. However, site-specific endonuclease deoxyribozymes that selectively cleave posttranscriptionally modified RNA are extremely rare and their specificity over unmodified RNA is low. In this study, we report that the native tRNA modification N\(^6\)-isopentenyladenosine (i\(^6\)A) strongly enhances the specificity and has the power to reconfigure the active site of an RNA-cleaving deoxyribozyme. Using in vitro selection, we identified a DNA enzyme that cleaves i\(^6\)A-modified RNA at least 2500-fold faster than unmodified RNA. Another deoxyribozyme shows unique and unprecedented behaviour by shifting its cleavage site in the presence of the i\(^6\)A RNA modification. Together with deoxyribozymes that are strongly inhibited by i\(^6\)A, these results highlight intricate ways of modulating the catalytic activity of DNA by posttranscriptional RNA modifications. KW - Deoxyribozymes KW - Epitranscriptomics KW - in vitro selection KW - RNA modification KW - site-specific RNA cleavage Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212121 ET - Early View ER - TY - JOUR A1 - Ronald, Micura A1 - Höbartner, Claudia T1 - Fundamental studies of functional nucleic acids: aptamers, riboswitches, ribozymes and DNAzymes JF - Chemical Society Reviews N2 - This review aims at juxtaposing common versus distinct structural and functional strategies that are applied by aptamers, riboswitches, and ribozymes/DNAzymes. Focusing on recently discovered systems, we begin our analysis with small-molecule binding aptamers, with emphasis on in vitro-selected fluorogenic RNA aptamers and their different modes of ligand binding and fluorescence activation. Fundamental insights are much needed to advance RNA imaging probes for detection of exo- and endogenous RNA and for RNA process tracking. Secondly, we discuss the latest gene expression–regulating mRNA riboswitches that respond to the alarmone ppGpp, to PRPP, to NAD+, to adenosine and cytidine diphosphates, and to precursors of thiamine biosynthesis (HMP-PP), and we outline new subclasses of SAM and tetrahydrofolate-binding RNA regulators. Many riboswitches bind protein enzyme cofactors that, in principle, can catalyse a chemical reaction. For RNA, however, only one system (glmS ribozyme) has been identified in Nature thus far that utilizes a small molecule – glucosamine-6-phosphate – to participate directly in reaction catalysis (phosphodiester cleavage). We wonder why that is the case and what is to be done to reveal such likely existing cellular activities that could be more diverse than currently imagined. Thirdly, this brings us to the four latest small nucleolytic ribozymes termed twister, twister-sister, pistol, and hatchet as well as to in vitro selected DNA and RNA enzymes that promote new chemistry, mainly by exploiting their ability for RNA labelling and nucleoside modification recognition. Enormous progress in understanding the strategies of nucleic acids catalysts has been made by providing thorough structural fundaments (e.g. first structure of a DNAzyme, structures of ribozyme transition state mimics) in combination with functional assays and atomic mutagenesis. KW - Functional nucleic acids KW - RNA Enzymes KW - RNA labeling KW - nucleoside modification recognition Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212133 ET - Advance Article ER - TY - JOUR A1 - Pöppler, Ann-Christin A1 - Lübtow, Michael M. A1 - Schlauersbach, Jonas A1 - Wiest, Johannes A1 - Meinel, Lorenz A1 - Luxenhofer, Robert T1 - Loading dependent Structural Model of Polymeric Micelles Encapsulating Curcumin by Solid-State NMR Spectroscopy JF - Angewandte Chemie International Edition N2 - Detailed insight into the internal structure of drug‐loaded polymeric micelles is scarce, but important for developing optimized delivery systems. We observed that an increase in the curcumin loading of triblock copolymers based on poly(2‐oxazolines) and poly(2‐oxazines) results in poorer dissolution properties. Using solid‐state NMR spectroscopy and complementary tools we propose a loading‐dependent structural model on the molecular level that provides an explanation for these pronounced differences. Changes in the chemical shifts and cross‐peaks in 2D NMR experiments give evidence for the involvement of the hydrophobic polymer block in the curcumin coordination at low loadings, while at higher loadings an increase in the interaction with the hydrophilic polymer blocks is observed. The involvement of the hydrophilic compartment may be critical for ultrahigh‐loaded polymer micelles and can help to rationalize specific polymer modifications to improve the performance of similar drug delivery systems. KW - dissolution rates KW - micelles KW - polymers KW - short-range order KW - solid-state NMR spectroscopy Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-206705 VL - 58 IS - 51 ER - TY - JOUR A1 - Farrell, Jeffrey M. A1 - Grande, Vincenzo A1 - Schmidt, David A1 - Würthner, Frank T1 - A Highly Warped Heptagon-Containing sp\(^2\) Carbon Scaffold via Vinylnaphthyl π-Extension JF - Angewandte Chemie International Edition N2 - A new strategy is demonstrated for the synthesis of warped, negatively curved, all‐sp\(^2\)‐carbon π‐scaffolds. Multifold C−C coupling reactions are used to transform a polyaromatic borinic acid into a saddle‐shaped polyaromatic hydrocarbon (2 ) bearing two heptagonal rings. Notably, this Schwarzite substructure is synthesized in only two steps from an unfunctionalized alkene. A highly warped structure of 2 was revealed by X‐ray crystallographic studies and pronounced flexibility of this π‐scaffold was ascertained by experimental and computational studies. Compound 2 exhibits excellent solubility, visible range absorption and fluorescence, and readily undergoes two reversible one‐electron oxidations at mild potentials. KW - arenes KW - carbon KW - C-C coupling KW - curvature KW - polycyclic aromatic hydrocarbons Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-206682 VL - 58 IS - 46 ER - TY - JOUR A1 - Scheitl, Carolin P. M. A1 - Lange, Sandra A1 - Höbartner, Claudia T1 - New deoxyribozymes for the native ligation of RNA JF - Molecules N2 - Deoxyribozymes (DNAzymes) are small, synthetic, single-stranded DNAs capable of catalysing chemical reactions, including RNA ligation. Herein, we report a novel class of RNA ligase deoxyribozymes that utilize 5’-adenylated RNA (5’-AppRNA) as the donor substrate, mimicking the activated intermediates of protein-catalyzed RNA ligation. Four new DNAzymes were identified by in vitro selection from an N40 random DNA library and were shown to catalyze the intermolecular linear RNA-RNA ligation via the formation of a native 3’-5’-phosphodiester linkage. The catalytic activity is distinct from previously described RNA-ligating deoxyribozymes. Kinetic analyses revealed the optimal incubation conditions for high ligation yields and demonstrated a broad RNA substrate scope. Together with the smooth synthetic accessibility of 5’-adenylated RNAs, the new DNA enzymes are promising tools for the protein-free synthesis of long RNAs, for example containing precious modified nucleotides or fluorescent labels for biochemical and biophysical investigations. KW - RNA ligation KW - DNA catalysis KW - in vitro selection KW - Deoxyribozyme Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-210405 VL - 25 IS - 16 ER - TY - THES A1 - Steinmetzger, Christian T1 - Fluorogenic Aptamers and Fluorescent Nucleoside Analogs as Probes for RNA Structure and Function T1 - Fluorogene Aptamere und Fluoreszierende Nukleosid-Analoga als Sonden für RNA-Struktur und -Funktion N2 - RNA plays a key role in numerous cellular processes beyond the central dogma of molecular biology. Observing and understanding this wealth of functions, discovering new ones and engineering them into purpose-built tools requires a sensitive means of observation. Over the past decade, fluorogenic aptamers have emerged to fill this niche. These short oligonucleotides are generated by in vitro selection to specifically interact with small organic fluorophores and can be utilized as genetically encoded tags for RNAs of interest. The most versatile class of fluorogenic aptamers is based on derivatives of hydroxybenzylidene imidazolone (HBI), a conditional fluorophore mimicking the chromophore structure found in green and red fluorescent proteins. The respective aptamers are well-known by the “vegetable” nomenclature, including Spinach, Broccoli and Corn, and have found numerous applications for studying RNA function in vitro and in cells. Their success, however, is somewhat overshadowed by individual shortcomings such as a propensity for misfolding, dependence on unphysiologically high concentrations of magnesium ions or, in the case of Corn, dimerization that might affect the function of the tagged RNA. Moreover, most fluorogenic aptamers exhibit limited ligand promiscuity by design, thereby restricting their potential for spectral tuning to a narrow window of wavelengths. This thesis details the characterization of a new fluorogenic aptamer system nicknamed Chili. Chili is derived from an aptamer that was originally selected to bind 4-hydroxy-3,5-dimethoxy¬hydroxy-benzylidene imidazolone (DMHBI), resulting in a green fluorescent complex. Unlike other aptamers of its kind, Chili engages in a proton transfer cycle with the bound ligand, resulting in a remarkably large Stokes shift of more than 130 nm. By means of an empirical ligand optimization approach, several new DMHBI derivatives were found that bind to Chili with high affinity, furnishing complexes up to 7.5 times brighter compared to the parent ligand. In addition, Chili binds to π-extended DMHBI derivatives that confer fluorescence in the yellow–red region of the visible spectrum. The highest affinity and degree of fluorescence turn-on for both green and red fluorogenic ligands were achieved by the incorporation of a unique, positively charged substituent into the HBI scaffold. Supplemented by NMR spectroscopy, kinetic and thermodynamic studies showed that the binding site of Chili is loosely preorganized in the absence of ligand and likely forms a G-quadruplex upon ligand binding. To showcase future applications, Chili was incorporated into a FRET sensor for monitoring the cleavage of an RNA substrate by a 10-23 DNAzyme. Besides aptamers as macromolecular fluorescent complexes, fluorescent nucleobase analogs are powerful small isomorphic components of RNA suitable for studying structure and folding. Here, the highly emissive nucleobase analog 4-cyanoindole (4CI) was developed into a ribonucleoside (r4CI) for this purpose. A new phosphoramidite building block was synthesized to enable site-specific incorporation of 4CI into RNA. Thermal denaturation experiments confirmed that 4CI behaves as a universal nucleobase, i.e. without bias towards any particular hybridization partner. Photophysical characterization established r4CI as a generally useful fluorescent ribonucleoside analog. In this work, it was employed to gain further insight into the structure of the Chili aptamer. Using several 4CI-modified Chili–HBI complexes, a novel base–ligand FRET assay was established to obtain a set of combined distance and orientation restraints for the tertiary structure of the aptamer. In addition to their utility for interrogating structure and binding, supramolecular FRET pairs comprising a fluorescent nucleobase analog donor and an innately fluorogenic acceptor hold great promise for the construction of color-switchable RNA aptamer sensor devices. N2 - Weit über das zentrale Dogma der Molekularbiologie hinaus ist RNA an einer Vielzahl zellulärer Prozesse beteiligt. Um diese Prozesse aufzuklären, sie umfassend zu verstehen und sich zunutze zu machen bedarf es geeigneter Detektionsmethoden für RNA. Innerhalb des letzten Jahrzehnts wurden fluorogene Aptamere als ideales Werkzeug für diesen Zweck erkannt. Dabei handelt es sich um vergleichsweise kurze Oligonukleotide, die mittels in vitro-Selektion zur spezifischen Bindung bestimmter organischer Fluorophore erzeugt werden. Analog zu fluoreszierenden Proteinen können sie zur Fluoreszenzmarkierung von RNA eingesetzt werden. Die wichtigste Klasse fluorogener Aptamere bindet und aktiviert Derivate des latenten Fluorophors 4-Hydroxybenzylidenimidazolon (HBI), welcher ursprünglich im Kern fluoreszierender Proteine autokatalytisch aus einem Tripeptid-Fragment entsteht und deren spektrale Eigenschaften bestimmt. Vertreter dieser Klasse, namentlich Spinach, Broccoli und Corn, haben sich als alltägliches Werkzeug zur Fluoreszenzmarkierung von RNA etabliert. Diesem Erfolg gegenüber stehen Unzulänglichkeiten, die das Potential einzelner Aptamere begrenzen. Beispielsweise kann es zur Ausbildung inaktiver Faltungszustände der RNA kommen oder die Fluoreszenzaktivierung erfordert eine hohe Magnesiumkonzentration, welche in Zellen nicht frei verfügbar ist. Im Fall des Corn-Aptamers bildet sich ein Homodimer, was unter Umständen die zu untersuchende RNA beeinträchtigen kann. Darüber hinaus ist, aufgrund der spezifischen Fluorophorbindung, jeweils nur geringes Potenzial zur gezielten Beeinflussung spektraler Eigenschaften vorhanden. Kern dieser Arbeit ist die umfassende Charakterisierung des neuen Chili-Systems. Chili ist die optimierte Version eines Aptamers, welches einen grün fluoreszierenden Komplex mit 4-Hydroxy-3,5-dimethoxybenzylidenimidazolon (DMHBI) ausbildet. Im Gegensatz zu anderen HBI-bindenden Aptameren vollzieht Chili einen Protonenaustausch mit seinem Liganden, woraus Fluoreszenz-emission mit einer ungewöhnlich hohen Stokes-Verschiebung von über 130 nm resultiert. Die Struktur des ursprünglichen Liganden wurde im Hinblick auf höhere Affinität und stärkere Fluoreszenzemission optimiert, wobei ein bis zu 7.5-facher Gewinn an Helligkeit erzielt wurde. Als besonders vorteilhaft hat sich dafür die Einführung eines positiv geladenen Substituenten herausgestellt, der in dieser Form ein Alleinstellungsmerkmal von Chili ist. Auch stark modifizierte DMHBI-Derivate, die ein größeres konjugiertes System besitzen, werden von Chili gebunden und fluoreszieren daraufhin im gelben bis roten Bereich des sichtbaren Spektrums. Studien zur Ligandenbindungskinetik und thermischen Denaturierung des Aptamers legen nahe, dass die zunächst strukturarme Bindungstasche durch die Aufnahme des Liganden einen G-Quadruplex ausbildet, was ebenfalls durch NMR-spektroskopische Daten bestätigt wird. Als Beispiel für mögliche Anwendungen wurde das Chili-Aptamer eingesetzt, um die Spaltung eines RNA-Substrats durch ein 10-23 DNA-Enzym zu beobachten, wobei FRET zwischen dem Aptamer und einem Fluoreszenzmarker am Substrat als Reporter ausgenutzt wurde. Neben makromolekularen Aptamer-Komplexen können fluoreszierende Nukleobasenanaloga als isomorphe Einheiten in RNA integriert werden, um deren Faltungszustand zu untersuchen. In dieser Arbeit wurde das fluoreszierende Nukleobasenanalogon 4-Cyanodinol (4CI) in das entsprechende Ribonukleosid (r4CI) umgewandelt und daraus ein neuer Phosphoramiditbaustein zum Einbau des fluoreszierenden von 4CI in RNA synthetisiert. Anhand thermischer Denaturierungs¬experimente wurde gezeigt, dass es sich bei 4CI um eine universelle Base handelt, die ungeachtet des Hybridisierungskontexts toleriert wird. Die photophysikalische Charakterisierung von r4CI zeigte, dass das fluoreszierendes Ribonukleosid-Analogon seine nützlichen Eigenschaften nach dem Einbau in Oligonukleotide beibehält, sodass es zur Strukturanalyse des Chili-Aptamers verwendet werden konnte. Mithilfe 4CI-modifizierter Chili–HBI-Komplexe wurden erstmals intramolekulare FRET-Paare dieser Art erzeugt und zur Bestimmung kombinierter Abstands- und Orientierungsparameter genutzt. Über ihre Verwendung für Struktur- und Bindungsstudien hinaus stellen supramolekulare FRET-Paare aus fluoreszierenden Nukleobasen-Analoga als Donoren und intrinsisch fluorogenen Akzeptoren eine Möglichkeit dar, neue schaltbare Aptamer-basierte Sensoren zu entwickeln, welche auf die Erkennung ihrer Zielspezies mit einem Wechsel der Fluoreszenzemissionswellenlänge reagieren. KW - Aptamer KW - Nucleosidanaloga KW - RNS KW - Fluoreszenz KW - Fluoreszenz-Resonanz-Energie-Transfer KW - RNA KW - FRET KW - Nucleoside KW - Nucleinsäuren Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-207604 ER -