All Stories

  1. Decoding mEos4b day‐long maturation and engineering fast‐maturing variants
  2. Toolbox for optical spectroscopy in crystals
  3. Decoding mEos4b Day-Long Maturation and Engineering Fast Maturing Variants
  4. Structural Heterogeneity in a Phototransformable Fluorescent Protein Impacts its Photochemical Properties
  5. Photophysical Studies at Cryogenic Temperature Reveal a Novel Photoswitching Mechanism of rsEGFP2
  6. Cover Feature: Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement (ChemPhysChem 19/2022)
  7. Photophysical studies at cryogenic temperature reveal a novel photoswitching mechanism of rsEGFP2
  8. Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement**
  9. Rational control of structural off-state heterogeneity in a photoswitchable fluorescent protein provides switching contrast enhancement
  10. Disentangling Chromophore States in a Reversibly Switchable Green Fluorescent Protein: Mechanistic Insights from NMR Spectroscopy
  11. Supramolecular assembly of the Escherichia coli LdcI upon acid stress
  12. Mechanistic Investigations of Green mEos4b Reveal a Dynamic Long-Lived Dark State
  13. Supramolecular assembly of theE. coliLdcI upon acid stress
  14. Photoswitching mechanism of a fluorescent protein revealed by time-resolved crystallography and transient absorption spectroscopy
  15. NMR Reveals Light-Induced Changes in the Dynamics of a Photoswitchable Fluorescent Protein
  16. Mechanistic investigation of mEos4b reveals a strategy to reduce track interruptions in sptPALM
  17. NMR reveals light-induced changes in the dynamics of a photoswitchable fluorescent protein
  18. Mechanistic investigation of mEos4b reveals a strategy to reduce track interruptions in sptPALM
  19. Chromophore twisting in the excited state of a photoswitchable fluorescent protein captured by time-resolved serial femtosecond crystallography
  20. Photoswitching of Green mEos2 by Intense 561 nm Light Perturbs Efficient Green-to-Red Photoconversion in Localization Microscopy
  21. Serial Femtosecond Crystallography and Ultrafast Absorption Spectroscopy of the Photoswitchable Fluorescent Protein IrisFP
  22. Arginine 66 Controls Dark-State Formation in Green-to-Red Photoconvertible Fluorescent Proteins
  23. Rational design of ultrastable and reversibly photoswitchable fluorescent proteins for super-resolution imaging of the bacterial periplasm
  24. Nanostructure of the S. pneumoniae division ring
  25. Rational design of enhanced photoresistance in a photoswitchable fluorescent protein
  26. In cellulo Evaluation of Phototransformation Quantum Yields in Fluorescent Proteins Used As Markers for Single-Molecule Localization Microscopy
  27. Excited state dynamics of the photoconvertible fluorescent protein Kaede revealed by ultrafast spectroscopy
  28. Phototransformable fluorescent proteins: Future challenges
  29. Phototransformable fluorescent proteins: which one for which application?
  30. Structural Basis of Photoswitching in Fluorescent Proteins
  31. Structural Evidence for a Two-Regime Photobleaching Mechanism in a Reversibly Switchable Fluorescent Protein
  32. Revealing the Excited-State Dynamics of the Fluorescent Protein Dendra2
  33. Photoactivated structural dynamics of fluorescent proteins
  34. Reversible photoswitching in fluorescent proteins: A mechanistic view
  35. The Nature of Transient Dark States in a Photoactivatable Fluorescent Protein
  36. Rational Design of Photoconvertible and Biphotochromic Fluorescent Proteins for Advanced Microscopy Applications
  37. From EosFP to mIrisFP: structure‐based development of advanced photoactivatable marker proteins of the GFP‐family
  38. Data storage based on photochromic and photoconvertible fluorescent proteins
  39. Low-temperature switching by photoinduced protonation in photochromic fluorescent proteins
  40. Fine Tuning the Optical Properties of Green to Red Photoconvertible Fluorescent Proteins
  41. Structural Basis of X-ray-Induced Transient Photobleaching in a Photoactivatable Green Fluorescent Protein
  42. Photoconversion of the Fluorescent Protein EosFP: A Hybrid Potential Simulation Study Reveals Intersystem Crossings
  43. Cryophotolysis of a caged oxygen compound for use in low temperature biological studies
  44. Structural Basis of Enhanced Photoconversion Yield in Green Fluorescent Protein-like Protein Dendra2
  45. Structural characterization of IrisFP, an optical highlighter undergoing multiple photo-induced transformations
  46. Advances in spectroscopic methods for biological crystals. 1. Fluorescence lifetime measurements
  47. Raman-Assisted Crystallography Reveals End-On Peroxide Intermediates in a Nonheme Iron Enzyme
  48. Detoxification of superoxide without production of H 2 O 2 : Antioxidant activity of superoxide reductase complexed with ferrocyanide
  49. The Crystal Structure of Mycobacterium tuberculosis Thymidylate Kinase in Complex with 3‘-Azidodeoxythymidine Monophosphate Suggests a Mechanism for Competitive Inhibition,
  50. Structure of Superoxide Reductase Bound to Ferrocyanide and Active Site Expansion upon X-Ray-Induced Photo-Reduction
  51. A microspectrophotometer for UV–visible absorption and fluorescence studies of protein crystals