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Updated: Jul 10, 2025

Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
A chorea-acanthocytosis patient with novel mutations in the VPS13A gene without acanthocyte
Shan Jin1, Zhengzhe Sun2, Xiang Fang3
1The First Affiliated Hospital of Anhui University of Traditional Chinese Medicine, Shushan District, No.117, Meishan Road, Hefei, 230000, Anhui, China.
Insights
Chorea-acanthocytosis (ChAc) diagnosis can be confirmed by genetic testing, even with a negative blood smear for acanthocytes. This case highlights novel mutations in the VPS13A gene, expanding the genetic understanding of ChAc.
Area of Science:
- Neurogenetics
- Rare diseases
Background:
- Chorea-acanthocytosis (ChAc) is a rare neurogenetic disorder.
- Diagnosis typically relies on clinical signs and detecting acanthocytes in blood.
Observation:
- A patient presented with classic ChAc symptoms, including choreiform movements and seizures.
- Despite symptoms, peripheral blood smears were negative for acanthocytes via electron microscopy.
Findings:
- Genetic analysis revealed two novel pathogenic mutations in the VPS13A gene.
- These mutations confirmed the ChAc diagnosis, establishing genetic testing as the definitive diagnostic method.
Implications:
- A negative acanthocyte blood smear does not exclude ChAc.
- Genetic testing is crucial for accurate ChAc diagnosis.
- Discovery of new mutations advances the genetic landscape of ChAc.
Abstract:
Chorea-acanthocytosis (ChAc) is a rare clinical genetic disorder of the nervous system, which is characterized by choreiform movement disorder, cognitive decline, and psychiatric disorders. ChAc is mostly diagnosed based on its typical clinical manifestations and the increased number of acanthocytes in peripheral blood smears. Here, we report a patient, who has the characteristic clinical manifestations of ChAc with limb choreiform movements, involuntary lip and tongue bites, seizures, and emotional instability. However, her blood smear was negative for acanthocytes with scanning electron microscopy. We later identified two novel pathogenic mutations in the patient's vacuolar protein sorting homolog 13 A (VPS13A) on chromosome 9q21 by targeted gene sequencing, and she was definitively diagnosed with "ChAc." After treatment with carbamazepine, haloperidol, the patient's symptoms gradually improved. We consider that an acanthocyte negative blood smear cannot rule out ChAC diagnosis, and genetic testing is the "gold standard" for the diagnosis. Through a review of previous research, it is rare for a patient to have a clear diagnosis of ChAc by genetic testing, but whose blood smear is negative for acanthocytes with electron microscopy. In addition, in this report, we discovered two novel pathogenic mutations, which have not been reported previously, and extended the genetic characteristics of ChAc.

