4.5 Article

De Novo Truncating Mutations in the Kinetochore-Microtubules Attachment Gene CHAMP1 Cause Syndromic Intellectual Disability

期刊

HUMAN MUTATION
卷 37, 期 4, 页码 354-358

出版社

WILEY
DOI: 10.1002/humu.22952

关键词

intellectual disability; CHAMP1; microcephaly; POGZ; HP1; kinetochores; microtubules

资金

  1. French Ministry of Health and Health Regional Agency from Poitou-Charentes (HUGODIMS) [RC14_0107]
  2. Japanese Society of Promotion of Science
  3. Ministry of Education Culture, Sports, Science and Technology of Japan
  4. Project for Development of Innovative Research on Cancer Therapeutics (P-Direct)
  5. Takeda Science Foundation
  6. Japan Agency for Medical Research and Development
  7. Grants-in-Aid for Scientific Research [15H04368, 16H01296, 26870054] Funding Source: KAKEN

向作者/读者索取更多资源

A rare syndromic form of intellectual disability with impaired speech was recently found associated with mutations in CHAMP1 (chromosome alignment-maintaining phosphoprotein 1), the protein product of which is directly involved in microtubule-kinetochore attachment. Through whole-exome sequencing in six unrelated nonconsanguineous families having a sporadic case of intellectual disability, we identified six novel de novo truncating mutations in CHAMP1: c.1880C>G p.(Ser627*), c.1489C>T; p.(Arg497*), c.1876_1877delAG; p.(Ser626Leufs*4), c.1043G>A; p.(Trp348*), c.1002G>A; p.(Trp334*), and c.958_959delCC; p.(Pro320*). Our clinical observations confirm the phenotypic homogeneity of the syndrome, which represents therefore a distinct clinical entity. Besides, our functional studies show that CHAMP1 protein variants are delocalized from chromatin and are unable to bind to two of its direct partners, POGZ and HP1. These data suggest a pathogenic mechanism of the CHAMP1-associated intellectual disability syndrome mediated by direct interacting partners of CHAMP1, several of which are involved in chromo/kinetochore-related disorders.

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