| Literature DB >> 33020904 |
Jinho Park1,2, Myeongsang Lee1, Briana Lee1, Nicholas Castaneda1,3, Laurene Tetard1,4, Ellen Hyeran Kang1,2,4.
Abstract
Fascin and α-actinin form higher-ordered actin bundles that mediate numerous cellular processes including cell morphogenesis and movement. While it is understood crosslinked bundle formation occurs in crowded cytoplasm, how crowding affects the bundling activities of the two crosslinking proteins is not known. Here, we demonstrate how solution crowding modulates the organization and mechanical properties of fascin- and α-actinin-induced bundles, utilizing total internal reflection fluorescence and atomic force microscopy imaging. Molecular dynamics simulations support the inference that crowding reduces binding interaction between actin filaments and fascin or the calponin homology 1 domain of α-actinin evidenced by interaction energy and hydrogen bonding analysis. Based on our findings, we suggest a mechanism of crosslinked actin bundle assembly and mechanics in crowded intracellular environments.Entities:
Keywords: actin-crosslinking proteins; bending stiffness; binding interaction; bundle organization; macromolecular crowding
Mesh:
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Year: 2020 PMID: 33020904 PMCID: PMC8204220 DOI: 10.1002/1873-3468.13949
Source DB: PubMed Journal: FEBS Lett ISSN: 0014-5793 Impact factor: 4.124