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Published on: July 14, 2016
Heterozygous HTRA1 mutations are associated with autosomal dominant cerebral small vessel disease
Edgard Verdura1, Dominique Hervé2, Eva Scharrer3
11 INSERM UMR 1161, Génétique et Physiopathologie des Maladies Cérébro-vasculaires, Paris, France 2 Université Paris Diderot, Sorbonne Paris Cité, UMR-S1161, Paris, France.
Insights
Mutations in the HTRA1 gene are a significant cause of familial small vessel disease, leading to stroke and cognitive impairment. Genetic screening of HTRA1 is recommended for hereditary small vessel disease cases with unknown causes.
Area of Science:
- Genetics
- Neurology
- Molecular Biology
Background:
- Cerebral small vessel disease (CSVD) causes stroke and cognitive impairment, often sporadic but with known monogenic forms.
- Most familial CSVD cases lack mutations in known genes, indicating undiscovered genetic factors.
Purpose of the Study:
- To identify novel genes responsible for autosomal dominant CSVD in families with no known causative mutations.
- To determine the frequency and pathogenicity of identified mutations in a broader cohort of familial CSVD patients.
Main Methods:
- Whole exome sequencing was used to identify candidate genes in an affected family.
- High-throughput multiplex PCR and next-generation sequencing were employed to screen candidate genes in 201 unrelated familial CSVD probands.
- In vitro activity assays were performed to assess the functional impact of identified HTRA1 variants.
Main Results:
- A heterozygous HTRA1 variant (R166L) was found in all affected family members.
- Ten unrelated probands (4.97%) harbored damaging heterozygous HTRA1 mutations.
- HTRA1 mutations showed a highly significant association with familial CSVD (P = 4.2 × 10(-6)), indicating causality.
- In vitro analysis confirmed a loss-of-function effect for HTRA1 mutants.
Conclusions:
- Heterozygous HTRA1 mutations are a key genetic cause of familial CSVD.
- HTRA1 screening is crucial for diagnosing hereditary CSVD of unknown etiology.
- The clinical presentation of HTRA1-associated CSVD is distinct from CARASIL and CADASIL.
Abstract:
Cerebral small vessel disease represents a heterogeneous group of disorders leading to stroke and cognitive impairment. While most small vessel diseases appear sporadic and related to age and hypertension, several early-onset monogenic forms have also been reported. However, only a minority of patients with familial small vessel disease carry mutations in one of known small vessel disease genes. We used whole exome sequencing to identify candidate genes in an autosomal dominant small vessel disease family in which known small vessel disease genes had been excluded, and subsequently screened all candidate genes in 201 unrelated probands with a familial small vessel disease of unknown aetiology, using high throughput multiplex polymerase chain reaction and next generation sequencing. A heterozygous HTRA1 variant (R166L), absent from 1000 Genomes and Exome Variant Server databases and predicted to be deleterious by in silico tools, was identified in all affected members of the index family. Ten probands of 201 additional unrelated and affected probands (4.97%) harboured a heterozygous HTRA1 mutation predicted to be damaging. There was a highly significant difference in the number of likely deleterious variants in cases compared to controls (P = 4.2 × 10(-6); odds ratio = 15.4; 95% confidence interval = 4.9-45.5), strongly suggesting causality. Seven of these variants were located within or close to the HTRA1 protease domain, three were in the N-terminal domain of unknown function and one in the C-terminal PDZ domain. In vitro activity analysis of HTRA1 mutants demonstrated a loss of function effect. Clinical features of this autosomal dominant small vessel disease differ from those of CARASIL and CADASIL by a later age of onset and the absence of the typical extraneurological features of CARASIL. They are similar to those of sporadic small vessel disease, except for their familial nature. Our data demonstrate that heterozygous HTRA1 mutations are an important cause of familial small vessel disease, and that screening of HTRA1 should be considered in all patients with a hereditary small vessel disease of unknown aetiology.
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