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- W4207082149 abstract "Revealing high-resolution structures of microtubule-associated proteins (MAPs) is critical for understanding their fundamental roles in various cellular activities, such as cell motility and intracellular cargo transport. Nevertheless, large molecular motors that dynamically bind and release microtubule networks are challenging for cryo-electron microscopy (cryo-EM). Traditional structure determination of MAPs bound to microtubules needs alignment information from the reconstruction of microtubules, which cannot be readily applied to large MAPs without a fixed binding pattern. Here, we developed a comprehensive approach to estimate the microtubule networks (multicurve fitting), model the tubulin-lattice signals, and remove them (tubulin-lattice subtraction) from the raw cryo-EM micrographs. The approach does not require an ordered binding pattern of MAPs on microtubules, nor does it need a reconstruction of the microtubules. We demonstrated the capability of our approach using the reconstituted outer-arm dynein bound to microtubule doublets. In addition, we applied our multi-curve fitting approach to other biological filaments and achieved accurate estimations. Our work provides a new tool to determine high-resolution structures of large MAPs bound to curved microtubule networks." @default.
- W4207082149 created "2022-01-26" @default.
- W4207082149 creator A5002527737 @default.
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- W4207082149 date "2022-01-23" @default.
- W4207082149 modified "2023-09-29" @default.
- W4207082149 title "Multi-curve fitting and tubulin-lattice signal removal for structure determination of large microtubule-based motors" @default.
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- W4207082149 doi "https://doi.org/10.1101/2022.01.22.477366" @default.
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