Erythrosin B as a New Photoswitchable Spin Label for Light-Induced Pulsed EPR Dipolar Spectroscopy

Molecules. 2022 Nov 3;27(21):7526. doi: 10.3390/molecules27217526.

Abstract

We present a new photoswitchable spin label for light-induced pulsed electron paramagnetic resonance dipolar spectroscopy (LiPDS), the photoexcited triplet state of erythrosin B (EB), which is ideal for biological applications. With this label, we perform an in-depth study of the orientational effects in dipolar traces acquired using the refocused laser-induced magnetic dipole technique to obtain information on the distance and relative orientation between the EB and nitroxide labels in a rigid model peptide, in good agreement with density functional theory predictions. Additionally, we show that these orientational effects can be averaged to enable an orientation-independent analysis to determine the distance distribution. Furthermore, we demonstrate the feasibility of these experiments above liquid nitrogen temperatures, removing the need for expensive liquid helium or cryogen-free cryostats. The variety of choices in photoswitchable spin labels and the affordability of the experiments are critical for LiPDS to become a widespread methodology in structural biology.

Keywords: distance measurements; electron paramagnetic resonance (EPR); electron spin resonance (ESR); erythrosin B; high temperature; laser-induced magnetic dipole spectroscopy (LaserIMD); orientational effects; photogenerated triplet state; pulsed dipolar spectroscopy (PDS); spin labels.

MeSH terms

  • Electron Spin Resonance Spectroscopy / methods
  • Erythrosine*
  • Spin Labels
  • Temperature

Substances

  • Spin Labels
  • Erythrosine