Genetically encoded red photosensitizers with enhanced phototoxicity
Licensee MDPI, Basel, Switzerland. Genetically encoded photosensitizers are increasingly used as optogenetic tools to control cell fate or trigger intracellular processes. A monomeric red fluorescent protein called SuperNova has been recently developed, however, it demonstrates suboptimal characteristics in most phototoxicity‐based applications. Here, we applied directed evolution to this protein and identified SuperNova2, a protein with S10R substitution that results in enhanced brightness, chromophore maturation and phototoxicity in bacterial and mammalian cell cultures.

Список научных проектов, где отмечена публикация
- 075-15-2019-411. . Внебюджетное финансирование.
- MC-A658-5QEA0. . Внебюджетное финансирование.
- NSh-2605.2020.4. . Внебюджетное финансирование.
- ЦКП ИБХ (January 6, 2019 December 31, 2022). . Внебюджетное финансирование.
- Связь структуры и функции в фотоактивных флуоресцентных белках (January 6, 2018 December 31, 2020). . Грант, РФФИ.