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 PMID:29317443  

A mutation in Ccdc39 causes neonatal hydrocephalus with abnormal motile cilia development in mice.

Zakia Abdelhamed | Shawn M Vuong | Lauren Hill | Crystal Shula | Andrew Timms | David Beier | Kenneth Campbell | Francesco T Mangano | Rolf W Stottmann | June Goto
Development (Cambridge, England) | 2018

Pediatric hydrocephalus is characterized by an abnormal accumulation of cerebrospinal fluid (CSF) and is one of the most common congenital brain abnormalities. However, little is known about the molecular and cellular mechanisms regulating CSF flow in the developing brain. Through whole-genome sequencing analysis, we report that a homozygous splice site mutation in coiled-coil domain containing 39 (Ccdc39) is responsible for early postnatal hydrocephalus in the progressive hydrocephalus (prh) mouse mutant. Ccdc39 is selectively expressed in embryonic choroid plexus and ependymal cells on the medial wall of the forebrain ventricle, and the protein is localized to the axoneme of motile cilia. The Ccdc39prh/prh ependymal cells develop shorter cilia with disorganized microtubules lacking the axonemal inner arm dynein. Using high-speed video microscopy, we show that an orchestrated ependymal ciliary beating pattern controls unidirectional CSF flow on the ventricular surface, which generates bulk CSF flow in the developing brain. Collectively, our data provide the first evidence for involvement of Ccdc39 in hydrocephalus and suggest that the proper development of medial wall ependymal cilia is crucial for normal mouse brain development.

Pubmed ID: 29317443

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Associated grants

  • Agency: NICHD NIH HHS, United States
    Id: R01 HD036404
  • Agency: NINDS NIH HHS, United States
    Id: R01 NS085023
  • Agency: NCATS NIH HHS, United States
    Id: UL1 TR001425
  • Agency: NIH HHS, United States
    Id: UM1 OD023221

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International Mouse Phenotyping Consortium (IMPC) (tool)

RRID:SCR_006158

Center that produces knockout mice and carries out high-throughput phenotyping of each line in order to determine function of every gene in mouse genome. These mice will be preserved in repositories and made available to scientific community representing valuable resource for basic scientific research as well as generating new models for human diseases.

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