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Updated: Feb 7, 2026

Modeling Charcot-Marie-Tooth Disease In Vitro by Transfecting Mouse Primary Motoneurons
Published on: January 7, 2019
Novel SBF1 splice-site null mutation broadens the clinical spectrum of Charcot-Marie-Tooth type 4B3 disease
H Flusser1, D Halperin2, R Kadir2
1Zussman Child Development Center, Division of Pediatrics, Soroka Medical Center, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Insights
A novel mutation in the SET binding factor 1 (SBF1) gene causes a severe autosomal recessive neuropathy. This condition presents in infancy with microcephaly and developmental delay, progressing to severe polyneuropathy by the first decade.
Area of Science:
- Genetics
- Neurology
- Molecular Biology
Background:
- Autosomal recessive congenital disorders often present with complex neurological deficits.
- Charcot-Marie-Tooth (CMT) disease encompasses a group of inherited peripheral neuropathies.
- SET binding factor 1 (SBF1) gene mutations have been linked to specific subtypes of CMT.
Observation:
- Four siblings presented with congenital microcephaly, facial dysmorphism, developmental delay, and ataxia.
- Peripheral neuropathy, including areflexia and muscle weakness, emerged in late childhood.
- Distinctive "fork and bracket" signs were observed on brain MRI, indicating cerebellar and brainstem abnormalities.
Findings:
- Genome-wide linkage analysis and exome sequencing identified a novel homozygous splice-site mutation in the SBF1 gene.
- This mutation is associated with a severe phenotype, distinct from previously described SBF1-related neuropathies.
- The findings broaden the clinical spectrum of SBF1-related disorders, including early-onset cerebellar and pyramidal signs.
Implications:
- This study expands the understanding of SBF1-related neuropathies and their phenotypic variability.
- The identification of a novel SBF1 mutation provides a new genetic target for diagnosing similar rare neurological disorders.
- Further research into SBF1 function may elucidate mechanisms underlying neurodevelopment and peripheral nerve maintenance.
Abstract:
Four siblings of consanguineous Bedouin kindred presented at infancy with an autosomal recessive syndrome of congenital microcephaly, facial dysmorphism, strabismus, developmental delay and ataxia with positive pyramidal signs. Toward the end of their first decade, they developed areflexia, multiple cranial neuropathies and severe polyneuropathy with progressive muscle weakness, affecting proximal and distal extremities. Physical assessment exhibited kyphoscoliosis, bilateral syndactyly and distal muscle wasting with drop-foot and pes cavus. Magnetic resonance imaging (MRI) showed profound cerebellar atrophy with highly unique findings at the pontine and mesencephalic levels, previously described as "fork and bracket" signs. Genome-wide linkage analysis identified a single ~1.5 Mbp disease-associated locus on chromosome 22q13.33. Whole exome sequencing identified a single novel homozygous deleterious splice-site mutation within this locus in SET binding factor 1 (SBF1). SBF1 missense mutations were shown to underlie Charcot-Marie-Tooth (CMT) type 4B3 disease, a rare autosomal recessive subtype of CMT4. The novel SBF1 null mutation highlights distinct severe phenotypic manifestations, broadening the clinical spectrum of SBF1-related neuropathies: cerebellar and pyramidal signs evident in the first months of life with peripheral polyneuropathy emerging only toward the end of the first decade, together with unique MRI findings.
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