Extreme dependence of Chloroflexus aggregans LOV domain thermo- and photostability on the bound flavin species

Photochem Photobiol Sci. 2021 Dec;20(12):1645-1656. doi: 10.1007/s43630-021-00138-3. Epub 2021 Nov 18.

Abstract

Light-oxygen-voltage (LOV) domains are common photosensory modules that found many applications in fluorescence microscopy and optogenetics. Here, we show that the Chloroflexus aggregans LOV domain can bind different flavin species (lumichrome, LC; riboflavin, RF; flavin mononucleotide, FMN; flavin adenine dinucleotide, FAD) during heterologous expression and that its physicochemical properties depend strongly on the nature of the bound flavin. We show that whereas the dissociation constants for different chromophores are similar, the melting temperature of the protein reconstituted with single flavin species varies from ~ 60 °C for LC to ~ 81 °C for FMN, and photobleaching half-times vary almost 100-fold. These observations serve as a caution for future studies of LOV domains in non-native conditions yet raise the possibility of fine-tuning various properties of LOV-based fluorescent probes and optogenetic tools by manipulating the chromophore composition.

Keywords: Chromophore; Flavin mononucleotide; Flavin-based fluorescent protein; LOV domain; Protein–ligand interactions; Riboflavin; Thermal stability.

MeSH terms

  • Chloroflexus*
  • Flavin Mononucleotide
  • Flavin-Adenine Dinucleotide
  • Oxygen*
  • Riboflavin

Substances

  • Flavin-Adenine Dinucleotide
  • Flavin Mononucleotide
  • Oxygen
  • Riboflavin

Supplementary concepts

  • Chloroflexus aggregans