4.8 Article

Trabid patient mutations impede the axonal trafficking of adenomatous polyposis coli to disrupt neurite growth

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ELIFE
卷 12, 期 -, 页码 -

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eLIFE SCIENCES PUBL LTD
DOI: 10.7554/eLife.90796

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adenomatous polyposis coli; neurodevelopment; ZRANB1; Trabid; STRIPAK; axonal protein trafficking; axon guidance; axon elongation; deubiquitylating enzyme; cytoskeleton organization; polarized cell migration; microcephaly; neurocristopathies; Human; Mouse

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Mutation in ZRANB1 gene has been found to be associated with various congenital disorders, including reduced brain size. These mutations affect the regulation of neurite growth and result in reduced neuronal and glial cell densities in the brain, as well as motor deficits.
ZRANB1 (human Trabid) missense mutations have been identified in children diagnosed with a range of congenital disorders including reduced brain size, but how Trabid regulates neurodevelopment is not understood. We have characterized these patient mutations in cells and mice to identify a key role for Trabid in the regulation of neurite growth. One of the patient mutations flanked the catalytic cysteine of Trabid and its deubiquitylating (DUB) activity was abrogated. The second variant retained DUB activity, but failed to bind STRIPAK, a large multiprotein assembly implicated in cytoskeleton organization and neural development. Zranb1 knock-in mice harboring either of these patient mutations exhibited reduced neuronal and glial cell densities in the brain and a motor deficit consistent with fewer dopaminergic neurons and projections. Mechanistically, both DUB-impaired and STRIPAK-binding-deficient Trabid variants impeded the trafficking of adenomatous polyposis coli (APC) to microtubule plus-ends. Consequently, the formation of neuronal growth cones and the trajectory of neurite outgrowth from mutant midbrain progenitors were severely compromised. We propose that STRIPAK recruits Trabid to deubiquitylate APC, and that in cells with mutant Trabid, APC becomes hyperubiquitylated and mislocalized causing impaired organization of the cytoskeleton that underlie the neuronal and developmental phenotypes.

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