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INF2-Related Charcot-Marie-Tooth Disease in a Japanese Cohort: Genetic and Clinical Insights
Chikashi Yano1, Masahiro Ando1, Yujiro Higuchi1
1Department of Neurology and Geriatrics, Kagoshima University Graduate School of Medical and Dental Sciences, Kagoshima, Japan.
Background:
INF2 mutations cause focal segmental glomerulosclerosis (FSGS) and Charcot-Marie-Tooth disease (CMT). Accurate genetic diagnosis is critical, as INF2-related FSGS is typically resistant to immunotherapy yet rarely recurs after transplantation, and its associated neuropathy can mimic treatable immune-mediated disorders such as chronic inflammatory demyelinating polyradiculoneuropathy (CIDP).
Methods:
We performed a multicenter study investigating 3329 Japanese patients with inherited peripheral neuropathies/CMT who underwent gene panel sequencing or whole-exome analysis between 2007 and 2024. Clinical data, including electrophysiological assessments, were obtained from the patients' medical records.
Results:
We identified six pathogenic INF2 variants in eight patients, all of which were located within the diaphanous inhibitory domain. Structural modeling revealed clustering of variants near the diaphanous autoregulatory domain-binding pocket, which is critical for INF2 autoinhibition. Clinically, all cases were sporadic, with a median age at neurological onset of 9 years. All patients exhibited lower limb weakness, and 6/8 (75%) had sensory disturbances. All patients also developed kidney dysfunction, with 7/8 (88%) progressing to end-stage renal disease at a median age of 15 years. Furthermore, all patients showed demyelinating neuropathy, and 2/8 (25%) received immunotherapy due to suspected immune-mediated neuropathy.
Conclusion:
Although INF2 variants are a rare cause of CMT in Japan, they should be considered in pediatric patients with demyelinating neuropathy and early-onset proteinuria, even in the absence of a family history. Blood and urine tests assessing renal dysfunction can provide guidance for appropriate genetic testing.
Insights
Genetic variants in INF2 cause rare pediatric neuropathy and kidney disease. Early genetic testing is crucial for accurate diagnosis and management of INF2-related conditions, even without a family history.
Area of Science:
- Genetics
- Neurology
- Nephrology
Background:
- Mutations in the INF2 gene are linked to focal segmental glomerulosclerosis (FSGS) and Charcot-Marie-Tooth disease (CMT).
- Accurate genetic diagnosis is vital due to INF2-related FSGS resistance to immunotherapy and potential mimicry of treatable neuropathies.
Purpose of the Study:
- To investigate the prevalence and clinical characteristics of INF2 variants in Japanese patients with inherited peripheral neuropathies.
- To understand the genetic basis and clinical manifestations of INF2-related disorders.
Main Methods:
- A multicenter study analyzed gene panel sequencing or whole-exome data from 3329 Japanese patients with inherited peripheral neuropathies/CMT.
- Clinical and electrophysiological data were retrospectively collected from patient medical records.
Main Results:
- Six pathogenic INF2 variants were identified in eight patients, all within the diaphanous inhibitory domain.
- Patients presented with sporadic, early-onset demyelinating neuropathy (median onset 9 years) and kidney dysfunction (7/8 progressing to end-stage renal disease by median age 15 years).
- Some patients received immunotherapy for suspected immune-mediated neuropathy, highlighting diagnostic challenges.
Conclusions:
- INF2 variants are a rare but important cause of Charcot-Marie-Tooth disease in Japan.
- Pediatric patients with demyelinating neuropathy and early-onset proteinuria should be evaluated for INF2 variants, even without a family history.
- Renal function tests can aid in guiding genetic testing for suspected INF2-related disorders.
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