Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we describe the development and thorough characterization of pentacyclic adenine (pA), a versatile base analog with exceptional fluorescence properties. When incorporated into DNA, pA pairs selectively with thymine without perturbing the B-form structure and is among the brightest nucleobase analogs reported so far. Together with the recently established base analog acceptor qAnitro, pA allows accurate distance and orientation determination via Forster resonance energy transfer (FRET) measurements. The high brightness at emission wavelengths above 400 nm also makes it suitable for fluorescence microscopy, as demonstrated by imaging of single li...
Förster resonance energy transfer (FRET) using fluorescent base analogues is a powerful means of obt...
A family of quinazoline-based fluorescent nucleoside analogues is synthesized for photophysical stud...
Forster resonance energy transfer (FRET) using fluorescent base analogues is a powerful means of obt...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Fluorescent-base analogues (FBAs) comprise a group of increasingly important molecules for the inves...
Fluorescence has proven to be a powerful tool for studying structure, dynamics and interactions of b...
This thesis focuses on the design, synthesis and utilization of fluorescent nucleobase analogues (FB...
Fluorescent base analogues comprise a group of increasingly important molecules for the investigatio...
Ever since unravelling the structure of DNA, an expanding research field has emerged with ongoing ef...
Fluorescent base analogues (FBAs) comprise a family of increasingly important molecules for the inve...
To increase the diversity of fluorescent base analogues with improved properties, we here present th...
To increase the diversity of fluorescent base analogues with improved properties, we here present th...
Fluorescent nucleobase analogues (FBAs) are essential tools to study nucleic acid structures and int...
Förster resonance energy transfer (FRET) using fluorescent base analogues is a powerful means of obt...
A family of quinazoline-based fluorescent nucleoside analogues is synthesized for photophysical stud...
Forster resonance energy transfer (FRET) using fluorescent base analogues is a powerful means of obt...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Fluorescent-base analogues (FBAs) comprise a group of increasingly important molecules for the inves...
Fluorescence has proven to be a powerful tool for studying structure, dynamics and interactions of b...
This thesis focuses on the design, synthesis and utilization of fluorescent nucleobase analogues (FB...
Fluorescent base analogues comprise a group of increasingly important molecules for the investigatio...
Ever since unravelling the structure of DNA, an expanding research field has emerged with ongoing ef...
Fluorescent base analogues (FBAs) comprise a family of increasingly important molecules for the inve...
To increase the diversity of fluorescent base analogues with improved properties, we here present th...
To increase the diversity of fluorescent base analogues with improved properties, we here present th...
Fluorescent nucleobase analogues (FBAs) are essential tools to study nucleic acid structures and int...
Förster resonance energy transfer (FRET) using fluorescent base analogues is a powerful means of obt...
A family of quinazoline-based fluorescent nucleoside analogues is synthesized for photophysical stud...
Forster resonance energy transfer (FRET) using fluorescent base analogues is a powerful means of obt...