4.8 Article

Mechanistic basis of propofol-induced disruption of kinesin processivity

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Summary: In order to explore different length and time-scale processes in biological systems, a combination of experimental, theoretical, and computational methods is essential. Dynein, as an ATP-fueled motor protein, undergoes a wide range of length/time-scale events in its functional mechanism, performing various biological processes like ciliary beating and cell division. Experimental techniques like X-crystallography and cryo-electron microscopy have provided detailed insights into the mechanochemical cycle of dynein, but computational modeling of dynein remains challenging due to its complex architecture. The comprehensive investigation of the mechanochemical cycle of dynein requires a combination of computational methods covering varying length and timescales, similar to experimental approaches.

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