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Structural basis for tunable control of actin dynamics by myosin-15 in mechanosensory stereocilia.


ABSTRACT: The motor protein myosin-15 is necessary for the development and maintenance of mechanosensory stereocilia, and mutations in myosin-15 cause hereditary deafness. In addition to transporting actin regulatory machinery to stereocilia tips, myosin-15 directly nucleates actin filament ("F-actin") assembly, which is disrupted by a progressive hearing loss mutation (p.D1647G, "jordan"). Here, we present cryo-electron microscopy structures of myosin-15 bound to F-actin, providing a framework for interpreting the impacts of deafness mutations on motor activity and actin nucleation. Rigor myosin-15 evokes conformational changes in F-actin yet maintains flexibility in actin's D-loop, which mediates inter-subunit contacts, while the jordan mutant locks the D-loop in a single conformation. Adenosine diphosphate-bound myosin-15 also locks the D-loop, which correspondingly blunts actin-polymerization stimulation. We propose myosin-15 enhances polymerization by bridging actin protomers, regulating nucleation efficiency by modulating actin's structural plasticity in a myosin nucleotide state-dependent manner. This tunable regulation of actin polymerization could be harnessed to precisely control stereocilium height.

SUBMITTER: Gong R 

PROVIDER: S-EPMC9299544 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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Structural basis for tunable control of actin dynamics by myosin-15 in mechanosensory stereocilia.

Gong Rui R   Jiang Fangfang F   Moreland Zane G ZG   Reynolds Matthew J MJ   de Los Reyes Santiago Espinosa SE   Gurel Pinar P   Shams Arik A   Heidings James B JB   Bowl Michael R MR   Bird Jonathan E JE   Alushin Gregory M GM  

Science advances 20220720 29


The motor protein myosin-15 is necessary for the development and maintenance of mechanosensory stereocilia, and mutations in myosin-15 cause hereditary deafness. In addition to transporting actin regulatory machinery to stereocilia tips, myosin-15 directly nucleates actin filament ("F-actin") assembly, which is disrupted by a progressive hearing loss mutation (p.D1647G, "<i>jordan</i>"). Here, we present cryo-electron microscopy structures of myosin-15 bound to F-actin, providing a framework for  ...[more]

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