Author
Listed:
- Noboru Ishiyama
(University Health Network)
- Ritu Sarpal
(University of Toronto)
- Megan N. Wood
(Northwestern University Feinberg School of Medicine)
- Samantha K. Barrick
(University of Illinois)
- Tadateru Nishikawa
(University Health Network)
- Hanako Hayashi
(RIKEN Center for Life Science Technologies, Kobe)
- Anna B. Kobb
(University of Toronto)
- Annette S. Flozak
(Northwestern University Feinberg School of Medicine)
- Alex Yemelyanov
(Northwestern University Feinberg School of Medicine)
- Rodrigo Fernandez-Gonzalez
(University of Toronto
University of Toronto)
- Shigenobu Yonemura
(RIKEN Center for Life Science Technologies, Kobe
Tokushima University Graduate School of Medical Science)
- Deborah E. Leckband
(University of Illinois
University of Illinois)
- Cara J. Gottardi
(Northwestern University Feinberg School of Medicine
Northwestern University Feinberg School of Medicine)
- Ulrich Tepass
(University of Toronto)
- Mitsuhiko Ikura
(University Health Network
University of Toronto)
Abstract
α-catenin is a key mechanosensor that forms force-dependent interactions with F-actin, thereby coupling the cadherin-catenin complex to the actin cytoskeleton at adherens junctions (AJs). However, the molecular mechanisms by which α-catenin engages F-actin under tension remained elusive. Here we show that the α1-helix of the α-catenin actin-binding domain (αcat-ABD) is a mechanosensing motif that regulates tension-dependent F-actin binding and bundling. αcat-ABD containing an α1-helix-unfolding mutation (H1) shows enhanced binding to F-actin in vitro. Although full-length α-catenin-H1 can generate epithelial monolayers that resist mechanical disruption, it fails to support normal AJ regulation in vivo. Structural and simulation analyses suggest that α1-helix allosterically controls the actin-binding residue V796 dynamics. Crystal structures of αcat-ABD-H1 homodimer suggest that α-catenin can facilitate actin bundling while it remains bound to E-cadherin. We propose that force-dependent allosteric regulation of αcat-ABD promotes dynamic interactions with F-actin involved in actin bundling, cadherin clustering, and AJ remodeling during tissue morphogenesis.
Suggested Citation
Noboru Ishiyama & Ritu Sarpal & Megan N. Wood & Samantha K. Barrick & Tadateru Nishikawa & Hanako Hayashi & Anna B. Kobb & Annette S. Flozak & Alex Yemelyanov & Rodrigo Fernandez-Gonzalez & Shigenobu , 2018.
"Force-dependent allostery of the α-catenin actin-binding domain controls adherens junction dynamics and functions,"
Nature Communications, Nature, vol. 9(1), pages 1-17, December.
Handle:
RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-07481-7
DOI: 10.1038/s41467-018-07481-7
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