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CAMSAP2 organizes a γ-tubulin-independent microtubule nucleation centre through phase separation

Authors :
Tsuyoshi Imasaki
Satoshi Kikkawa
Shinsuke Niwa
Yumiko Saijo-Hamano
Hideki Shigematsu
Kazuhiro Aoyama
Kaoru Mitsuoka
Takahiro Shimizu
Mari Aoki
Ayako Sakamoto
Yuri Tomabechi
Naoki Sakai
Mikako Shirouzu
Shinya Taguchi
Yosuke Yamagishi
Tomiyoshi Setsu
Yoshiaki Sakihama
Eriko Nitta
Masatoshi Takeichi
Ryo Nitta
Source :
eLife, Vol 11 (2022)
Publication Year :
2022
Publisher :
eLife Sciences Publications Ltd, 2022.

Abstract

Microtubules are dynamic polymers consisting of αβ-tubulin heterodimers. The initial polymerization process, called microtubule nucleation, occurs spontaneously via αβ-tubulin. Since a large energy barrier prevents microtubule nucleation in cells, the γ-tubulin ring complex is recruited to the centrosome to overcome the nucleation barrier. However, a considerable number of microtubules can polymerize independently of the centrosome in various cell types. Here, we present evidence that the minus-end-binding calmodulin-regulated spectrin-associated protein 2 (CAMSAP2) serves as a strong nucleator for microtubule formation by significantly reducing the nucleation barrier. CAMSAP2 co-condensates with αβ-tubulin via a phase separation process, producing plenty of nucleation intermediates. Microtubules then radiate from the co-condensates, resulting in aster-like structure formation. CAMSAP2 localizes at the co-condensates and decorates the radiating microtubule lattices to some extent. Taken together, these in vitro findings suggest that CAMSAP2 supports microtubule nucleation and growth by organizing a nucleation centre as well as by stabilizing microtubule intermediates and growing microtubules.

Details

Language :
English
ISSN :
2050084X
Volume :
11
Database :
Directory of Open Access Journals
Journal :
eLife
Publication Type :
Academic Journal
Accession number :
edsdoj.32eeac96c0645ad83b454410aa41fe9
Document Type :
article
Full Text :
https://doi.org/10.7554/eLife.77365