Related Experiment Video
Updated: Feb 13, 2026

Simple Detection of Primary Cilia by Immunofluorescence
Published on: May 15, 2020
Fifty years of microtubule sliding in cilia
Stephen M King1, Winfield S Sale2
1Department of Molecular Biology and Biophysics, University of Connecticut Health Center, Farmington, CT 06030-3305 king@uchc.edu wsale@emory.edu.
Abstract:
Motility of cilia (also known as flagella in some eukaryotes) is based on axonemal doublet microtubule sliding that is driven by the dynein molecular motors. Dyneins are organized into intricately patterned inner and outer rows of arms, whose collective activity is to produce inter-microtubule movement. However, to generate a ciliary bend, not all dyneins can be active simultaneously. The switch point model accounts, in part, for how dynein motors are regulated during ciliary movement. On the basis of this model, supported by key direct experimental observations as well as more recent theoretical and structural studies, we are now poised to understand the mechanics of how ciliary dynein coordination controls axonemal bend formation and propagation.
Related Concept Videos
Microtubules
Microtubules
Microtubules have two structurally similar globular protein subunits: α and β tubulins. In the cytosol, the α and β tubulins form a heterodimer....
Microtubule Instability
Microtubule Formation
Destabilization of Microtubules
Design Example: Designing Water Slide
Bernoulli's principle determines the water's velocity along the slide....

