UNC-45a promotes myosin folding and stress fiber assembly

Author:

Lehtimäki Jaakko I.1,Fenix Aidan M.2,Kotila Tommi M.1ORCID,Balistreri Giuseppe3,Paavolainen Lassi4,Varjosalo Markku1,Burnette Dylan T.2,Lappalainen Pekka1ORCID

Affiliation:

1. Institute of Biotechnology, University of Helsinki, Helsinki, Finland

2. Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, Nashville, TN

3. Department of Biosciences, Division of General Microbiology, University of Helsinki, Helsinki, Finland

4. Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland

Abstract

Contractile actomyosin bundles, stress fibers, are crucial for adhesion, morphogenesis, and mechanosensing in nonmuscle cells. However, the mechanisms by which nonmuscle myosin II (NM-II) is recruited to those structures and assembled into functional bipolar filaments have remained elusive. We report that UNC-45a is a dynamic component of actin stress fibers and functions as a myosin chaperone in vivo. UNC-45a knockout cells display severe defects in stress fiber assembly and consequent abnormalities in cell morphogenesis, polarity, and migration. Experiments combining structured-illumination microscopy, gradient centrifugation, and proteasome inhibition approaches revealed that a large fraction of NM-II and myosin-1c molecules fail to fold in the absence of UNC-45a. The remaining properly folded NM-II molecules display defects in forming functional bipolar filaments. The C-terminal UNC-45/Cro1/She4p domain of UNC-45a is critical for NM-II folding, whereas the N-terminal tetratricopeptide repeat domain contributes to the assembly of functional stress fibers. Thus, UNC-45a promotes generation of contractile actomyosin bundles through synchronized NM-II folding and filament-assembly activities.

Funder

Sigrid Jusélius Foundation

Jane and Aatos Erkko Foundation

American Heart Association

National Heart, Lung, and Blood Institute

Integrative Life Science

National Institute of General Medical Sciences

Publisher

Rockefeller University Press

Subject

Cell Biology

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