The small engineered luciferase NanoLuc has rapidly become a powerful tool in the fields of biochemistry, chemical biology, and cell biology due to its exceptional brightness and stability. The continuously expanding NanoLuc toolbox has been employed in applications ranging from biosensors to molecular and cellular imaging, and currently includes split complementation variants, engineering techniques for spectral tuning, and bioluminescence resonance energy transfer-based concepts. In this review, we provide an overview of state-of-the-art NanoLuc-based sensors and switches with a focus on the underlying protein engineering approaches. We discuss the advantages and disadvantages of various strategies with respect to sensor sensitivity, modu...
Cell signaling networks are intricately regulated in time and space to determine the responses and f...
Luminescence imaging has gained attention as a promising bio-imaging modality in situations where fl...
We introduce luciferases whose emission maxima can be tuned to different wavelengths by chemical lab...
The small engineered luciferase NanoLuc has rapidly become a powerful tool in the fields of biochemi...
\u3cp\u3e Bioluminescent sensor proteins pr...
Allostery enables proteins to interconvert different biochemical signals and form complex metabolic ...
Bioluminescent sensor proteins provide attractive tools for applications ranging from in vivo imagin...
Nanoluciferase (NanoLuc) is a newly developed small monomeric luciferase reporter with the brightest...
Bioluminescent sensor proteins have recently gained popularity in both basic research and point-of-c...
Bioluminescence imaging has advantages over fluorescence imaging, such as minimal photobleaching and...
Bioluminescence is a natural phenomenon that occurs in bacteria, insects, fungi and some marine spec...
We introduce a general method to transform antibodies into ratiometric, bioluminescent sensor protei...
Dynamic interactions between proteins comprise a key mechanism for temporal control of cellular func...
FRET-sensors have become important tools for intracellular imaging, but their dependence on external...
none7noRecent advancements in synthetic biology, organic chemistry, and computational models have al...
Cell signaling networks are intricately regulated in time and space to determine the responses and f...
Luminescence imaging has gained attention as a promising bio-imaging modality in situations where fl...
We introduce luciferases whose emission maxima can be tuned to different wavelengths by chemical lab...
The small engineered luciferase NanoLuc has rapidly become a powerful tool in the fields of biochemi...
\u3cp\u3e Bioluminescent sensor proteins pr...
Allostery enables proteins to interconvert different biochemical signals and form complex metabolic ...
Bioluminescent sensor proteins provide attractive tools for applications ranging from in vivo imagin...
Nanoluciferase (NanoLuc) is a newly developed small monomeric luciferase reporter with the brightest...
Bioluminescent sensor proteins have recently gained popularity in both basic research and point-of-c...
Bioluminescence imaging has advantages over fluorescence imaging, such as minimal photobleaching and...
Bioluminescence is a natural phenomenon that occurs in bacteria, insects, fungi and some marine spec...
We introduce a general method to transform antibodies into ratiometric, bioluminescent sensor protei...
Dynamic interactions between proteins comprise a key mechanism for temporal control of cellular func...
FRET-sensors have become important tools for intracellular imaging, but their dependence on external...
none7noRecent advancements in synthetic biology, organic chemistry, and computational models have al...
Cell signaling networks are intricately regulated in time and space to determine the responses and f...
Luminescence imaging has gained attention as a promising bio-imaging modality in situations where fl...
We introduce luciferases whose emission maxima can be tuned to different wavelengths by chemical lab...