PCM1 coordinates centrosome asymmetry with polarized endosome dynamics to regulate daughter cell fate

X Xiang Zhao V Vincent Mouilleau Y Yiqi Wang A Ahmet Can Solak J Jason Q. Garcia X Xinye Chen X Xiaoyu Shi C Christopher J. Wilkinson L Loïc A. Royer Z Zhiqiang Dong (College of Biomedicine and Health, College of Life Science and Technology, Huazhong Agricultural University, Wuhan, China.) S Su Guo

Abstract

Abstract Vertebrate radial glia progenitors (RGPs) balance self-renewal and differentiation through asymmetric cell division (ACD), which involves unequal centrosome inheritance. How centrosome asymmetry directs cell fate remains poorly understood. Here, we identify Pericentriolar material 1 (Pcm1) as a key player in this process. In zebrafish embryonic RGPs, Pcm1 is asymmetrically associated with Cep83, a mother centrosome marker. Using in vivo time-lapse imaging and nanoscale-resolution expansion microscopy, we detect Pcm1 on Notch ligand-containing endosomes, where it interacts–either directly or indirectly–with Par-3 and dynein. Loss of pcm1 disrupts endosome dynamics, increasing neuronal differentiation at the expense of RGP self-renewal. Mechanistically, Pcm1 facilitates the transition from Rab5b to Rab11a and promotes the assembly of Par-3 and dynein macromolecular complexes on recycling endosomes. Furthermore, we find conserved PARD3-PCM1-CEP83-RAB11 associations in human cortical brain organoids. Our findings uncover that Pcm1 links centrosome asymmetry to polarized endosome trafficking, thereby regulating RGP fate decisions.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 28, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

X

Xiang Zhao

V

Vincent Mouilleau

Y

Yiqi Wang

A

Ahmet Can Solak

J

Jason Q. Garcia

X

Xinye Chen

X

Xiaoyu Shi

C

Christopher J. Wilkinson

L

Loïc A. Royer

Z

Zhiqiang Dong

College of Biomedicine and Health, College of Life Science and Technology, Huazhong Agricultural University, Wuhan, China.

S

Su Guo