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Multiplexed single-molecule flow-stretching bead assay for DNA enzymology
( Ryanggeun Lee ) , ( Keunsang Yang ) , ( Jong-bong Lee )
BMB Reports vol. 52 iss. 10 589-594(6pages)
UCI I410-ECN-0102-2021-400-000226677

Single-molecule techniques have been used successfully to visualize real-time enzymatic activities, revealing transient complex properties and heterogeneity of various biological events. Especially, conventional force spectroscopy including optical tweezers and magnetic tweezers has been widely used to monitor change in DNA length by enzymes with high spatiotemporal resolutions of ∼nanometers and ∼milliseconds. However, DNA metabolism results from coordination of a number of components during the processes, requiring efficient monitoring of a complex of proteins catalyzing DNA substrates. In this min-review, we will introduce a simple and multiplexed single-molecule assay to detect DNA substrates catalyzed by enzymes with high-throughput data collection. We conclude with a perspective of possible directions that enhance capability of the assay to reveal complex biological events with higher resolution. [BMB Reports 2019; 52(10): 589-594]

MULTIPLEXED SINGLE-MOLECULE FORCE SPECTROSCOPY
SINGLE-MOLECULE FLOW-STRETCHING BEAD ASSAY (smFS)
THE LENGTH CHANGE BETWEEN dsDNA AND ssDNA
APPLICATIONS IN DNA ENZYMOLOGY
PROSPECTS
ACKNOWLEDGEMENTS
CONFLICTS OF INTEREST
REFERENCES
[자료제공 : 네이버학술정보]
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