Tuning molecular motor transport through cytoskeletal filament network organization
Author(s) -
Monika Scholz,
Kimberly L. Weirich,
Margaret L. Gardel,
Aaron R. Dinner
Publication year - 2020
Publication title -
soft matter
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 170
eISSN - 1744-6848
pISSN - 1744-683X
DOI - 10.1039/c9sm01904a
Subject(s) - cytoskeleton , protein filament , myosin , molecular motor , motor protein , biophysics , intermediate filament , chemistry , neuroscience , microbiology and biotechnology , microtubule , biology , cell , biochemistry
Within cells, crosslinking proteins organize cytoskeletal filaments both temporally and spatially to create dynamic and structurally diverse networks. Molecular motors move on these networks for both force generation and transport processes. How the transport statistics depend on the network architecture remains poorly characterized. Using cross-linking proteins (α-actinin, fimbrin, fascin, or filamin) and purified actin, we create cytoskeletal networks with diverse microscopic architectures. We track the motion of myosin II motor proteins moving on these networks and calculate transport statistics. We observe that motor dynamics change predictably based on the bundling of filaments within the underlying networks and discuss implications for network function.
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