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High Precision FRET at Single-molecule Level for Biomolecule Structure Determination
Published on: May 13, 2017
Single-Molecule Observations Provide Mechanistic Insights into Bimolecular Knoevenagel Amino Catalysis
Marcelo H Gehlen1, Larissa S Foltran1, Daniel F Kienle2
1Department of Physical Chemistry, Institute of Chemistry of São Carlos, University of São Paulo, 13566-590 São Carlos, SP, Brazil.
Abstract:
While single-molecule (SM) methods have provided new insights to various catalytic processes, bimolecular reactions have been particularly challenging to study. Here, the fluorogenic Knoevenagel condensation of an aromatic aldehyde with methyl cyanoacetate promoted by surface-immobilized piperazine is quantitatively characterized using super-resolution fluorescence imaging and stochastic analysis using hidden Markov modeling (HMM). Notably, the SM results suggest that the reaction follows the iminium intermediate pathway before the formation of a fluorescent product with intramolecular charge-transfer character. Moreover, the overall process is limited by the turnover rate of the catalyst, which is involved in multiple steps along the reaction coordinate.
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