DIAPH3 deficiency links microtubules to mitotic errors, defective neurogenesis, and brain dysfunction

Author:

Lau Eva On-Chai1,Damiani Devid1,Chehade Georges1,Ruiz-Reig Nuria1ORCID,Saade Rana1,Jossin Yves2ORCID,Aittaleb Mohamed3,Schakman Olivier4,Tajeddine Nicolas4,Gailly Philippe4,Tissir Fadel13ORCID

Affiliation:

1. Université catholique de Louvain, Institute of Neuroscience, Developmental Neurobiology, Brussels, Belgium

2. Université catholique de Louvain, Institute of Neuroscience, Mammalian Development and Cell Biology, Brussels, Belgium

3. College of Health and Life Sciences, HBKU, Doha, Qatar

4. Université catholique de Louvain, Institute of Neuroscience, Cell Physiology, Brussels, Belgium

Abstract

Diaphanous (DIAPH) three (DIAPH3) is a member of the formin proteins that have the capacity to nucleate and elongate actin filaments and, therefore, to remodel the cytoskeleton. DIAPH3 is essential for cytokinesis as its dysfunction impairs the contractile ring and produces multinucleated cells. Here, we report that DIAPH3 localizes at the centrosome during mitosis and regulates the assembly and bipolarity of the mitotic spindle. DIAPH3-deficient cells display disorganized cytoskeleton and multipolar spindles. DIAPH3 deficiency disrupts the expression and/or stability of several proteins including the kinetochore-associated protein SPAG5. DIAPH3 and SPAG5 have similar expression patterns in the developing brain and overlapping subcellular localization during mitosis. Knockdown of SPAG5 phenocopies DIAPH3 deficiency, whereas its overexpression rescues the DIAHP3 knockdown phenotype. Conditional inactivation of Diaph3 in mouse cerebral cortex profoundly disrupts neurogenesis, depleting cortical progenitors and neurons, leading to cortical malformation and autistic-like behavior. Our data uncover the uncharacterized functions of DIAPH3 and provide evidence that this protein belongs to a molecular toolbox that links microtubule dynamics during mitosis to aneuploidy, cell death, fate determination defects, and cortical malformation.

Funder

Fonds De La Recherche Scientifique - FNRS

H2020 Marie Skłodowska-Curie Actions

Université Catholique de Louvain

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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