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

Author:

Gong Rui1ORCID,Jiang Fangfang2ORCID,Moreland Zane G.2ORCID,Reynolds Matthew J.1ORCID,de los Reyes Santiago Espinosa1ORCID,Gurel Pinar1,Shams Arik3,Heidings James B.2ORCID,Bowl Michael R.45ORCID,Bird Jonathan E.2ORCID,Alushin Gregory M.1ORCID

Affiliation:

1. Laboratory of Structural Biophysics and Mechanobiology, The Rockefeller University, New York, NY, USA.

2. Department of Pharmacology and Therapeutics, University of Florida, Gainesville, FL, USA.

3. Laboratory of Molecular Genetics, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, MD, USA.

4. Mammalian Genetics Unit, MRC Harwell Institute, Harwell Campus, Oxfordshire, UK.

5. UCL Ear Institute, University College London, London, UK.

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.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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