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Published on: June 15, 2011
Characterization of spastic paraplegia in a family with a novel PSEN1 mutation
John M Ringman1, Naghmeh Dorrani2, Sara Gutiérrez Fernández3,4
1Department of Neurology, Keck School of Medicine at University of Southern California, Los Angeles, CA 90033, USA.
Insights
A novel PSEN1 mutation (F388S) causes early-onset spastic paraparesis, an extreme form of Alzheimer's disease. Imaging and pathology reveal significant white matter abnormalities, suggesting an amyloid-driven etiology.
Area of Science:
- Neuroscience
- Genetics
- Pathology
Background:
- Spastic paraparesis is associated with PSEN1 mutations in Alzheimer's disease (AD).
- Early-onset spastic paraparesis is rare but can be a presenting feature of PSEN1 mutations.
Purpose of the Study:
- To characterize a family with early-onset spastic paraparesis due to a novel PSEN1 mutation (F388S).
- To investigate the neuroimaging and neuropathological features of this extreme AD phenotype.
Main Methods:
- Comprehensive neuroimaging (PET, DTI) and ophthalmological evaluations.
- Neuropathological examination and in vitro modeling of the PSEN1 mutation.
- Comparison with other PSEN1 mutation carriers and AD mutation carriers without spastic paraparesis.
Main Results:
- A novel PSEN1 mutation (F388S) identified in a family with onset at age 23.
- Imaging revealed significant white matter abnormalities, particularly in corticospinal tracts, more severe than other PSEN1 mutations.
- Neuropathology showed cotton wool plaques and corticospinal tract pathology with severe amyloid-beta but not disproportionate tau pathology.
- In vitro modeling indicated increased production of longer amyloid-beta peptides, correlating with early onset.
Conclusions:
- This study characterizes an extreme form of autosomal dominant Alzheimer's disease presenting as early-onset spastic paraparesis.
- Robust diffusion and pathological white matter abnormalities are key features.
- Amyloid-beta profile suggests an amyloid-driven etiology, though the link to white matter pathology requires further investigation.
Abstract:
Spastic paraparesis has been described to occur in 13.7% of PSEN1 mutations and can be the presenting feature in 7.5%. In this paper, we describe a family with a particularly young onset of spastic paraparesis due to a novel mutation in PSEN1 (F388S). Three affected brothers underwent comprehensive imaging protocols, two underwent ophthalmological evaluations and one underwent neuropathological examination after his death at age 29. Age of onset was consistently at age 23 with spastic paraparesis, dysarthria and bradyphrenia. Pseudobulbar affect followed with progressive gait problems leading to loss of ambulation in the late 20s. Cerebrospinal fluid levels of amyloid-β, tau and phosphorylated tau and florbetaben PET were consistent with Alzheimer's disease. Flortaucipir PET showed an uptake pattern atypical for Alzheimer's disease, with disproportionate signal in posterior brain areas. Diffusion tensor imaging showed decreased mean diffusivity in widespread areas of white matter but particularly in areas underlying the peri-Rolandic cortex and in the corticospinal tracts. These changes were more severe than those found in carriers of another PSEN1 mutation, which can cause spastic paraparesis at a later age (A431E), which were in turn more severe than among persons carrying autosomal dominant Alzheimer's disease mutations not causing spastic paraparesis. Neuropathological examination confirmed the presence of cotton wool plaques previously described in association with spastic parapresis and pallor and microgliosis in the corticospinal tract with severe amyloid-β pathology in motor cortex but without unequivocal disproportionate neuronal loss or tau pathology. In vitro modelling of the effects of the mutation demonstrated increased production of longer length amyloid-β peptides relative to shorter that predicted the young age of onset. In this paper, we provide imaging and neuropathological characterization of an extreme form of spastic paraparesis occurring in association with autosomal dominant Alzheimer's disease, demonstrating robust diffusion and pathological abnormalities in white matter. That the amyloid-β profiles produced predicted the young age of onset suggests an amyloid-driven aetiology though the link between this and the white matter pathology remains undefined.
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