Ciliary force-responsive striated fibers promote basal body connections and cortical interactions

Author:

Soh Adam W.J.1,van Dam Teunis J.P.2ORCID,Stemm-Wolf Alexander J.1,Pham Andrew T.1,Morgan Garry P.3,O’Toole Eileen T.3ORCID,Pearson Chad G.1ORCID

Affiliation:

1. Anschutz Medical Campus, Department of Cell and Developmental Biology, University of Colorado, Aurora, CO

2. Theoretical Biology and Bioinformatics, Department of Biology, Science Faculty, Utrecht University, Utrecht, Netherlands

3. Molecular, Cellular and Developmental Biology, University of Colorado at Boulder, Boulder, CO

Abstract

Multi-ciliary arrays promote fluid flow and cellular motility using the polarized and coordinated beating of hundreds of motile cilia. Tetrahymena basal bodies (BBs) nucleate and position cilia, whereby BB-associated striated fibers (SFs) promote BB anchorage and orientation into ciliary rows. Mutants that shorten SFs cause disoriented BBs. In contrast to the cytotaxis model, we show that disoriented BBs with short SFs can regain normal orientation if SF length is restored. In addition, SFs adopt unique lengths by their shrinkage and growth to establish and maintain BB connections and cortical interactions in a ciliary force-dependent mechanism. Tetrahymena SFs comprise at least eight uniquely localizing proteins belonging to the SF-assemblin family. Loss of different proteins that localize to the SF base disrupts either SF steady-state length or ciliary force-induced SF elongation. Thus, the dynamic regulation of SFs promotes BB connections and cortical interactions to organize ciliary arrays.

Funder

National Institute of General Medical Sciences

American Cancer Society

Linda Crnic Institute

Publisher

Rockefeller University Press

Subject

Cell Biology

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