MINFLUX dissects the unimpeded walking of kinesin-1
Description
Raw MINFLUX data files for single molecule localizations, single molecule stage tracking and kinesin-1 tracking.
Matlab scripts for processing the data and reproducing the results of the publication "MINFLUX dissects the unimpeded walking of kinesin-1" by Wolff and Scheiderer.
Abstract:
We introduce an interferometric MINFLUX microscope that records protein movements with up to 1.7 nm/1 ms spatio-temporal precision. While such precision has so far required attaching disproportionately large beads to the protein, MINFLUX requires the detection of only down to ~20 photons from an ~1-nm-sized fluorophore. Thus, we dissect the stepping of the motor protein kinesin-1 on microtubules at up to physiological ATP concentrations. We uncover rotations of the stalk and the heads of load-free kinesin during stepping; that ATP is taken up with a single head bound to the microtubule; and that ATP hydrolysis occurs when both heads are bound. Our results show that MINFLUX quantifies (sub)millisecond conformational changes of proteins with minimal disturbance.
Files
Repository for MINFLUX dissects the unimpeded walking of kinesin-1.zip
Files
(38.2 MB)
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