The present study demonstrates the creation of artificial luciferases (ALuc) for bioassays, inspired by a sequence alignment of copepod luciferases. Extraction of the consensus amino acids from the alignment enabled us to generate a series of ALucs with unique optical properties and sequential identities that are clearly different from those of any existing copepod luciferase. For example, some ALucs exhibited heat stability, dramatically prolonged optical intensities, broad full width at half-maximum, and strong optical intensities. The practical suitability of the luciferases as an optical readout was examined in diverse bioassays, including mammalian two-hybrid assays, live cell imaging, single-chain probes, bioluminescent capsules, and ...
none5noThe latest advances in molecular biology have made available several biotechnological tools t...
Bioluminescence involves chemical reactions accompanied by light emission that take place in living...
Multi-component bioluminescence imaging requires an expanded collection of luciferase-luciferin pair...
The present study demonstrates the creation of artificial luciferases (ALuc) for bioassays, inspired...
Engineering of luciferases with designed properties and functionalities collects great interest in b...
Bioluminescence is widely used for real-time imaging in living organisms. This technology features a...
Bioluminescence imaging with luciferase-luciferin pairs is widely used in biomedical research. Sever...
Bioluminescence imaging with luciferase-luciferin pairs is commonly used for monitoring biological p...
Optical reporters have revolutionized our ability to visualize biological mechanisms in action. Amon...
Bioluminescence imaging with luciferase-luciferin pairs is routinely used to monitor cellular functi...
Firefly luciferases, which emit visible light in a highly specific ATP-dependent process, have been ...
Bioluminescence methodologies have been extraordinarily useful due to their high sensitivity, broad ...
Bioluminescence imaging with luciferase-luciferin pairs is routinely used to monitor cellular events...
Bioluminescence imaging with luciferase–luciferin pairs is widely used in biomedical research. Sever...
Bioluminescence imaging using luciferase is a widely used technology. However, its scope is hampered...
none5noThe latest advances in molecular biology have made available several biotechnological tools t...
Bioluminescence involves chemical reactions accompanied by light emission that take place in living...
Multi-component bioluminescence imaging requires an expanded collection of luciferase-luciferin pair...
The present study demonstrates the creation of artificial luciferases (ALuc) for bioassays, inspired...
Engineering of luciferases with designed properties and functionalities collects great interest in b...
Bioluminescence is widely used for real-time imaging in living organisms. This technology features a...
Bioluminescence imaging with luciferase-luciferin pairs is widely used in biomedical research. Sever...
Bioluminescence imaging with luciferase-luciferin pairs is commonly used for monitoring biological p...
Optical reporters have revolutionized our ability to visualize biological mechanisms in action. Amon...
Bioluminescence imaging with luciferase-luciferin pairs is routinely used to monitor cellular functi...
Firefly luciferases, which emit visible light in a highly specific ATP-dependent process, have been ...
Bioluminescence methodologies have been extraordinarily useful due to their high sensitivity, broad ...
Bioluminescence imaging with luciferase-luciferin pairs is routinely used to monitor cellular events...
Bioluminescence imaging with luciferase–luciferin pairs is widely used in biomedical research. Sever...
Bioluminescence imaging using luciferase is a widely used technology. However, its scope is hampered...
none5noThe latest advances in molecular biology have made available several biotechnological tools t...
Bioluminescence involves chemical reactions accompanied by light emission that take place in living...
Multi-component bioluminescence imaging requires an expanded collection of luciferase-luciferin pair...