Angewandte Chemie · 2020 · 17 citations · 46 references
General StrategyEngineeringViscosity SensitivityMolecular BiologyAnalytical UltracentrifugationSingle Molecule BiophysicsPhosphorescence ImagingFluorescent PlanarTranslational Molecular ImagingBioimagingSingle MoleculePhotophysical PropertyMolecular ImagingBiophysicsMolecular SciencesControl Viscosity SensitivityFluorescence ImagingBiomolecular ScienceSingle-molecule DetectionBiomolecular EngineeringRbf DerivativesNatural SciencesExperimental BiophysicsMolecular Biophysics
Abstract Molecular rotor‐based fluorophores (RBFs) have been widely used in many fields. However, the lack of control of their viscosity sensitivity limits their application. Herein, this problem is resolved by chemically installing extended π‐rich alternating carbon‐carbon linkages between the rotational electron donors and acceptors of RBFs. The data reveal that the length of the linkage strongly influences the viscosity sensitivity, likely resulting from varying height of the energy barriers between the fluorescent planar and the dark twisted configurations. Three RBF derivatives that span a wide range of viscosity sensitivities were designed. These RBFs demonstrated, through a dual‐color imaging strategy, that they can differentiate misfolded protein oligomers and insoluble aggregates, both in test tubes and live cells. Beyond RBFs, it is envisioned that this chemical mechanism might be generally applicable to a wide range of photoisomerizable and aggregation‐induced emission fluorophores.
46
Aggregation of Huntingtin in Neuronal Intranuclear Inclusions and Dystrophic Neurites in Brain
Marian DiFiglia, Ellen Sapp, Kathryn Chase et al. · Science · 1997 · 2.9K citations
A general method to improve fluorophores for live-cell and single-molecule microscopy
Jonathan B. Grimm, Brian P. English, Jiji Chen et al. · Nature Methods · 2015 · 1.6K citations · Full text
Aggregation and Motor Neuron Toxicity of an ALS-Linked SOD1 Mutant Independent from Wild-Type SOD1
Lucie Bruijn, Megan K. Houseweart, Shinsuke Kato et al. · Science · 1998 · 1.2K citations