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. 2024 Jun;19(6):800-809.
doi: 10.1038/s41565-024-01617-1. Epub 2024 Feb 26.

Functional analysis of single enzymes combining programmable molecular circuits with droplet-based microfluidics

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Functional analysis of single enzymes combining programmable molecular circuits with droplet-based microfluidics

Guillaume Gines et al. Nat Nanotechnol. 2024 Jun.

Abstract

The analysis of proteins at the single-molecule level reveals heterogeneous behaviours that are masked in ensemble-averaged techniques. The digital quantification of enzymes traditionally involves the observation and counting of single molecules partitioned into microcompartments via the conversion of a profluorescent substrate. This strategy, based on linear signal amplification, is limited to a few enzymes with sufficiently high turnover rate. Here we show that combining the sensitivity of an exponential molecular amplifier with the modularity of DNA-enzyme circuits and droplet readout makes it possible to specifically detect, at the single-molecule level, virtually any D(R)NA-related enzymatic activity. This strategy, denoted digital PUMA (Programmable Ultrasensitive Molecular Amplifier), is validated for more than a dozen different enzymes, including many with slow catalytic rate, and down to the extreme limit of apparent single turnover for Streptococcus pyogenes Cas9. Digital counting uniquely yields absolute molar quantification and reveals a large fraction of inactive catalysts in all tested commercial preparations. By monitoring the amplification reaction from single enzyme molecules in real time, we also extract the distribution of activity among the catalyst population, revealing alternative inactivation pathways under various stresses. Our approach dramatically expands the number of enzymes that can benefit from quantification and functional analysis at single-molecule resolution. We anticipate digital PUMA will serve as a versatile framework for accurate enzyme quantification in diagnosis or biotechnological applications. These digital assays may also be utilized to study the origin of protein functional heterogeneity.

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References

    1. Greenough, L. et al. Adapting capillary gel electrophoresis as a sensitive, high-throughput method to accelerate characterization of nucleic acid metabolic enzymes. Nucleic Acids Res. 44, e15 (2016). - DOI - PubMed
    1. Farag, N. et al. Folding-upon-repair DNA nanoswitches for monitoring the activity of DNA repair enzymes. Angew. Chem. 133, 7359–7365 (2021). - DOI
    1. Luo, X. & Hsing, I.-M. Immobilization-free electrochemical DNA polymerase assay. Electroanalysis 23, 923–926 (2011). - DOI
    1. Boehr, D. D., Nussinov, R. & Wright, P. E. The role of dynamic conformational ensembles in biomolecular recognition. Nat. Chem. Biol. 5, 789–796 (2009). - DOI - PubMed - PMC
    1. Henzler-Wildman, K. & Kern, D. Dynamic personalities of proteins. Nature 450, 964–972 (2007). - DOI - PubMed

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