AP2A2 mutation and defective endocytosis in a Malian family with hereditary spastic paraplegia
Salimata Diarra1, Saikat Ghosh2, Lassana Cissé3
1Université des Sciences, des Techniques, et des Technologies de Bamako (USTTB), Bamako, Mali; Neurogenetics Branch, NINDS, NIH, Bethesda, MD, United States; Yale University, Pediatric Genomics Discovery Program, Department of Pediatrics, New Haven, CT, United States.
Insights
A novel gene, AP2A2, is linked to hereditary spastic paraplegia (HSP), a rare neurological disorder. This discovery offers new insights into HSP mechanisms and aids genetic diagnosis.
Area of Science:
- Neurogenetics
- Molecular Biology
- Disease Mechanisms
Background:
- Hereditary spastic paraplegia (HSP) is a group of inherited neurological disorders.
- HSP is characterized by progressive spasticity and weakness in the lower limbs.
- Genetic factors play a significant role in the pathogenesis of HSP.
Purpose of the Study:
- To identify the genetic cause of early-onset complicated HSP in a Malian family.
- To investigate the functional consequences of a novel genetic variant.
- To expand the genetic understanding of HSP.
Main Methods:
- Clinical and neurological evaluations.
- Whole exome sequencing to identify genetic variants.
- Patient-derived induced pluripotent stem cells (iPSCs) for neuronal cell culture.
- Western blot, transferrin receptor (TfR) endocytosis assays, and immunofluorescence.
- Xenopus tropicalis model for in vivo studies.
Main Results:
- A homozygous missense variant in the AP2A2 gene was identified in affected family members.
- Reduced AP2A2 protein levels and impaired TfR endocytosis were observed in patient-derived neurons.
- AP2A2 knockout in Xenopus tadpoles resulted in neurological symptoms.
- Mutant AP-2 complex showed defective binding to accessory proteins.
Conclusions:
- AP2A2 is a novel gene associated with hereditary spastic paraplegia.
- Defective AP2A2 function disrupts endocytosis and neuronal development.
- This study provides functional evidence and expands the genetic basis of HSP.
Abstract:
Hereditary spastic paraplegia (HSP) comprises a large group of neurogenetic disorders characterized by progressive lower extremity spasticity. Neurological evaluation and genetic testing were completed in a Malian family with early-onset HSP. Three children with unaffected consanguineous parents presented with symptoms consistent with childhood-onset complicated HSP. Neurological evaluation found lower limb weakness, spasticity, dysarthria, seizures, and intellectual disability. Brain MRI showed corpus callosum thinning with cortical and spinal cord atrophy, and an EEG detected slow background in the index patient. Whole exome sequencing identified a homozygous missense variant in the adaptor protein (AP) complex 2 alpha-2 subunit (AP2A2) gene. Western blot analysis showed reduced levels of AP2A2 in patient-iPSC derived neuronal cells. Endocytosis of transferrin receptor (TfR) was decreased in patient-derived neurons. In addition, we observed increased axon initial segment length in patient-derived neurons. Xenopus tropicalis tadpoles with ap2a2 knockout showed cerebral edema and progressive seizures. Immunoprecipitation of the mutant human AP-2-appendage alpha-C construct showed defective binding to accessory proteins. We report AP2A2 as a novel genetic entity associated with HSP and provide functional data in patient-derived neuron cells and a frog model. These findings expand our understanding of the mechanism of HSP and improve the genetic diagnosis of this condition.
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