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Heterozygous Pathogenic and Likely Pathogenic Symptomatic HTRA1 Variant Carriers in Cerebral Small Vessel Disease
Sui-Yi Xu1, Hui-Juan Li2, Shun Li2
1Department of Neurology, Headache Center, The First Hospital of Shanxi Medical University, Taiyuan, People's Republic of China.
Insights
High temperature requirement serine peptidase A1 (HTRA1) related cerebral small vessel disease (CSVD) involves symptomatic heterozygous HTRA1 variant carriers. This review analyzes reported cases, focusing on pathogenic variants and their clinical and genetic characteristics, suggesting reduced protease activity as a key mechanism.
Area of Science:
- Genetics
- Neurology
- Molecular Biology
Background:
- Cerebral small vessel disease (CSVD) encompasses conditions linked to High temperature requirement serine peptidase A1 (HTRA1) gene variants.
- Symptomatic heterozygous HTRA1 variant carriers and CARASIL patients represent distinct clinical entities within HTRA1-related CSVD.
- Limited understanding exists regarding the specific characteristics and molecular mechanisms of heterozygous HTRA1 variants.
Purpose of the Study:
- To systematically review and characterize symptomatic carriers of heterozygous HTRA1 variants reported up to 2022.
- To analyze the pathogenicity of identified HTRA1 variants using ACMG criteria.
- To summarize clinical, genetic, and demographic features and elucidate potential pathogenic mechanisms.
Main Methods:
- Comprehensive literature search for symptomatic heterozygous HTRA1 variant carriers reported by 2022.
- Classification of HTRA1 variants based on ACMG guidelines.
- Detailed analysis of patient demographics, clinical presentations, neuroimaging findings, and genetic variant data.
Main Results:
- The majority of reported symptomatic HTRA1 carriers are from European and Asian countries, with a high concentration in China.
- Onset typically occurs in the fourth and fifth decades of life.
- Predominant variant types are missense, with specific hotspots at amino acid positions 166-182 and 274-302.
Conclusions:
- Pathogenic and likely pathogenic heterozygous HTRA1 variants are associated with specific clinical and demographic patterns in CSVD.
- Consideration of de novo status and functional data is crucial for accurate variant pathogenicity assessment.
- A reduction in HtrA1 protease activity is the leading hypothesis for the genetic pathogenesis of these conditions.
Abstract:
High temperature requirement serine peptidase A1 (HTRA1) related cerebral small vessel disease (CSVD) includes both symptomatic heterozygous HTRA1 variant carrier and cerebral autosomal recessive arteriopathy with subcortical infarcts and leukoencephalopathy (CARASIL) patients. Presently, most reported symptomatic heterozygous HTRA1 variant carrier cases are sporadic family reports with a lack of specific characteristics. Additionally, the molecular mechanism of heterozygous HTRA1 gene variants is unclear. We conducted this review to collect symptomatic carriers of heterozygous HTRA1 gene variants reported as of 2022, analyzed all pathogenicity according to American College of Medical Genetics and Genomics (ACMG) variant classification, and summarized the cases with pathogenic and likely pathogenic HTRA1 variants gender characteristics, age of onset, geographical distribution, initial symptoms, clinical manifestations, imaging signs, HTRA1 gene variant information and to speculate its underlying pathogenic mechanisms. In this review, we summarized the following characteristics of pathogenic and likely pathogenic symptomatic HTRA1 variant carriers: to date, the majority of reported symptomatic HTRA1 carriers are in European and Asian countries, particularly in China which was found to have the highest number of reported cases. The age of first onset is mostly concentrated in the fourth and fifth decades. The heterozygous HTRA1 gene variants were mostly missense variants. The two variant sites, 166-182 aa and 274-302 aa, were the most concentrated. Clinicians need to pay attention to de novo data and functional data, which may affect the pathogenicity analysis. The decrease in HtrA1 protease activity is currently the most important explanation for the genetic pathogenesis.
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