Ashwani Sharma, Amol Aher, Nicola J Dynes, Daniel Frey, Eugene A Katrukha, Rolf Jaussi, Ilya Grigoriev, Marie Croisier, Richard A Kammerer, Anna Akhmanova, Pierre Gönczy, Michel O Steinmetz
Journal: Developmental cell 2017;37(4):362-376
PMID: 27219064
Centrioles are fundamental and evolutionarily conserved microtubule-based organelles whose assembly is characterized by microtubule growth rates that are orders of magnitude slower than those of cytoplasmic microtubules. Several centriolar proteins can interact with tubulin or microtubules, but how they ensure the exceptionally slow growth of centriolar microtubules has remained mysterious. Here, we bring together crystallographic, biophysical, and reconstitution assays to demonstrate that the human centriolar protein CPAP (SAS-4 in worms and flies) binds and "caps" microtubule plus ends by associating with a site of β-tubulin engaged in longitudinal tubulin-tubulin interactions. Strikingly, we uncover that CPAP activity dampens microtubule growth and stabilizes microtubules by inhibiting catastrophes and promoting rescues. We further establish that the capping function of CPAP is important to limit growth of centriolar microtubules in cells. Our results suggest that CPAP acts as a molecular lid that ensures slow assembly of centriolar microtubules and, thereby, contributes to organelle length control.
Copyright © 2016 The Authors. Published by Elsevier Inc. All rights reserved.
Full Text Sources:
Other Literature Sources:
Miscellaneous:
Molecular Biology Databases:
© Copyright 2026, Nutrition Evidence
We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.