Massively parallel analysis of single-molecule dynamics on next-generation sequencing chips

Martin Jínek, Félix Ritort, Christelle Chanez, Michael K. Lindell, Sebastian Deindl, Anton Sabantsev, Guanzhong Mao, Mikhail Panfilov, Javier Aguirre Rivera, Qiqi Hou
2024-08-22

SCID:  54.1/zg5ep55z
Single-molecule techniques are ideally poised to characterize complex dynamics but are typically limited to investigating a small number of different samples. However, a large sequence or chemical space often needs to be explored to derive a comprehensive understanding of complex biological processes. Here we describe multiplexed single-molecule characterization at the library scale (MUSCLE), a method that combines single-molecule fluorescence microscopy with next-generation sequencing to enable highly multiplexed observations of complex dynamics. We comprehensively profiled the sequence dependence of DNA hairpin properties and Cas9-induced target DNA unwinding-rewinding dynamics. The ability to explore a large sequence space for Cas9 allowed us to identify a number of target sequences with unexpected behaviors. We envision that MUSCLE will enable the mechanistic exploration of many fundamental biological processes.
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2024-08-22
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Martin Jínek
Félix Ritort
Christelle Chanez
Michael K. Lindell
Sebastian Deindl
Anton Sabantsev
Guanzhong Mao
Mikhail Panfilov
Javier Aguirre Rivera
Qiqi Hou
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