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Published on: March 11, 2021
A novel human Cdh1 mutation impairs anaphase promoting complex/cyclosome activity resulting in microcephaly,
Cristina Rodríguez1,2, Irene Sánchez-Morán1,2, Sara Álvarez3
1Instituto de Investigación Biomédica de Salamanca, Hospital Universitario de Salamanca, CSIC, Universidad de Salamanca, Salamanca, Spain.
Insights
A novel mutation in the Fizzy-related protein 1 (Fzr1) gene, causing reduced Cdh1 protein and anaphase-promoting complex/cyclosome (APC/C) activity, leads to severe microcephaly and neurodevelopmental disorders in humans.
Area of Science:
- Genetics
- Neuroscience
- Cell Biology
Background:
- Fizzy-related protein 1 (Fzr1) encodes the Cdh1 protein, an anaphase-promoting complex/cyclosome (APC/C) coactivator.
- Previous studies in mice showed Fzr1 ablation impairs neurogenesis and causes microcephaly.
- The role of Fzr1 mutations in human neurodevelopmental disorders remains largely unexplored.
Abstract:
The Fizzy-related protein 1 (Fzr1) gene encodes Cdh1 protein, a coactivator of the E3 ubiquitin ligase anaphase-promoting complex/cyclosome (APC/C). Previously, we found that genetic ablation of Fzr1 promotes the death of neural progenitor cells leading to neurogenesis impairment and microcephaly in mouse. To ascertain the possible translation of these findings in humans, we searched for mutations in the Fzr1 gene in 390 whole exomes sequenced in trio in individuals showing neurodevelopmental disorders compatible with a genetic origin. We found a novel missense (p.Asp187Gly) Fzr1 gene mutation (c.560A>G) in a heterozygous state in a 4-year-old boy, born from non-consanguineous Spanish parents, who presents with severe antenatal microcephaly, psychomotor retardation, and refractory epilepsy. Cdh1 protein levels in leucocytes isolated from the patient were significantly lower than those found in his parents. Expression of the Asp187Gly mutant form of Cdh1 in human embryonic kidney 293T cells produced less Cdh1 protein and APC/C activity, resulting in altered cell cycle distribution when compared with cells expressing wild-type Cdh1. Furthermore, ectopic expression of the Asp187Gly mutant form of Cdh1 in cortical progenitor cells in primary culture failed to abolish the enlargement of the replicative phase caused by knockout of endogenous Cdh1. These results indicate that the loss of function of APC/C-Cdh1 caused by Cdh1 Asp187Gly mutation is a new cause of prenatal microcephaly, psychomotor retardation, and severe epilepsy. Read the Editorial Highlight for this article on page 8. Cover Image for this issue: doi: 10.1111/jnc.14524.
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