Truncation of NHEJ1 in a patient with polymicrogyria
Vincent Cantagrel1, Anne-Marie Lossi, Steven Lisgo
1INSERM, U491, Faculté de Médecine La Timone, Marseille, France.
Abstract:
Polymicrogyria (PMG) is a common malformation of the human cerebral cortex for which both acquired and genetic causes are known. Although genetic heterogeneity is documented, only one gene is currently known to cause isolated PMG. To clone new genes involved in this type of cerebral malformation, we studied a fetus presenting a defect of cortical organization consisting of a polymicrogyric cortex and neuronal heterotopia within the white matter. Karyotype analysis revealed that the fetus was carrier of a balanced, de novo, chromosomal translocation t(2;7)(q35;p22). Cloning and sequencing of the two translocation breakpoints reveals that the chromosomal rearrangement disrupts the coding region of a single gene, called NHEJ1, Cernunnos, or XLF, in 2q35. The NHEJ1 gene was recently identified as being responsible for autosomal recessive immunodeficiency with microcephaly. Using quantitative PCR experiments, we show that a truncated transcript is expressed in the polymicrogyric patient cells, suggesting a potential dominant negative effect possibly leading to a different phenotype. We performed in situ hybridization on human embryos and showed that the NHEJ1 transcript is preferentially expressed in the telencephalic ventricular and subventricular zones, consistent with the phenotype of the affected individual. In the human adult central nervous system (CNS), NHEJ1 is mainly expressed in the cerebral cortex and in the cerebellum. The association of PMG with the disruption of its transcript suggests that, in addition to its recently uncovered function in the immune system, the NHEJ1 protein may also play a role during development of the human cerebral cortex.
Insights
A new gene, NHEJ1, is implicated in polymicrogyria (PMG), a brain malformation. Disruption of NHEJ1 in a fetus suggests its role in human cerebral cortex development.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Polymicrogyria (PMG) is a common cerebral cortex malformation with known genetic and acquired causes.
- Currently, only one gene is identified for isolated PMG, highlighting the need to discover new genes.
- This study investigates a fetus with PMG and neuronal heterotopia to identify novel genetic factors.
Observation:
- A fetus with polymicrogyria and neuronal heterotopia was found to have a de novo balanced chromosomal translocation t(2;7)(q35;p22).
- The translocation breakpoints disrupted the coding region of the NHEJ1 gene located at 2q35.
- NHEJ1 was previously linked to autosomal recessive immunodeficiency with microcephaly.
Findings:
- A truncated NHEJ1 transcript was detected in the patient's cells, suggesting a dominant-negative effect and a distinct phenotype.
- In situ hybridization revealed preferential NHEJ1 expression in the embryonic telencephalic ventricular and subventricular zones.
- NHEJ1 is predominantly expressed in the adult human cerebral cortex and cerebellum.
Implications:
- The disruption of NHEJ1 and its expression pattern in neural development suggest a novel role for this gene in human cerebral cortex formation.
- This finding expands the known functions of NHEJ1 beyond its role in the immune system.
- Identifying NHEJ1 as a gene involved in PMG opens new avenues for understanding and potentially treating this brain malformation.
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