Nesprin-2 coordinates opposing microtubule motors during nuclear migration in neurons

Author:

Zhou Chuying12ORCID,Wu You Kure12ORCID,Ishidate Fumiyoshi2ORCID,Fujiwara Takahiro K.2ORCID,Kengaku Mineko12ORCID

Affiliation:

1. Kyoto University 1 Graduate School of Biostudies, , Kyoto, Japan

2. Kyoto University 2 Institute for Integrated Cell-Material Science (WPI-iCeMS), , Kyoto, Japan

Abstract

Nuclear migration is critical for the proper positioning of neurons in the developing brain. It is known that bidirectional microtubule motors are required for nuclear transport, yet the mechanism of the coordination of opposing motors is still under debate. Using mouse cerebellar granule cells, we demonstrate that Nesprin-2 serves as a nucleus-motor adaptor, coordinating the interplay of kinesin-1 and dynein. Nesprin-2 recruits dynein–dynactin–BicD2 independently of the nearby kinesin-binding LEWD motif. Both motor binding sites are required to rescue nuclear migration defects caused by the loss of function of Nesprin-2. In an intracellular cargo transport assay, the Nesprin-2 fragment encompassing the motor binding sites generates persistent movements toward both microtubule minus and plus ends. Nesprin-2 drives bidirectional cargo movements over a prolonged period along perinuclear microtubules, which advance during the migration of neurons. We propose that Nesprin-2 keeps the nucleus mobile by coordinating opposing motors, enabling continuous nuclear transport along advancing microtubules in migrating cells.

Funder

Japan Society for the Promotion of Science

Takeda Science Foundation

JST SPRING program

Publisher

Rockefeller University Press

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