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June 27, 2019Clinical Genetics111 citations

FLNC pathogenic variants in patients with cardiomyopathies: Prevalence and genotype‐phenotype correlations

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FAFlavie AderPGPascal de GrootePRPatricia Réant

Structured PICO

What is the prevalence of FLNC pathogenic variants and their genotype-phenotype correlation in patients with isolated cardiomyopathies?

P
Population
1150 unrelated index-patients with isolated cardiomyopathy (700 hypertrophic, 300 dilated, 50 restrictive cardiomyopathies, and 100 left ventricle non-compactions)
I
Intervention
Genetic sequencing on a custom panel of 51 cardiomyopathy disease-causing genes to identify FLNC pathogenic variants
O
Outcome
Prevalence of FLNC pathogenic variants and genotype-phenotype correlations

FLNC pathogenic variants are present in 1-8% of isolated cardiomyopathies, with truncating variants specifically linked to dilated cardiomyopathy and a higher risk of sudden cardiac death.

Abstract

Pathogenic variants in FLNC encoding filamin C have been firstly reported to cause myopathies, and were recently linked to isolated cardiac phenotypes. Our aim was to estimate the prevalence of FLNC pathogenic variants in subtypes of cardiomyopathies and to study the relations between phenotype and genotype. DNAs from a cohort of 1150 unrelated index-patients with isolated cardiomyopathy (700 hypertrophic, 300 dilated, 50 restrictive cardiomyopathies, and 100 left ventricle non-compactions) have been sequenced on a custom panel of 51 cardiomyopathy disease-causing genes. An FLNC pathogenic variant was identified in 28 patients corresponding to a prevalence ranging from 1% to 8% depending on the cardiomyopathy subtype. Truncating variants were always identified in patients with dilated cardiomyopathy, while missense or in-frame indel variants were found in other phenotypes. A personal or family history of sudden cardiac death (SCD) was significantly higher in patients with truncating variants than in patients carrying missense variants (P = .01). This work reported the first observation of a left ventricular non-compaction associated with a unique probably causal variant in FLNC which highlights the role of FLNC in cardiomyopathies. A correlation between the nature of the variant and the cardiomyopathy subtype was observed as well as with SCD risk.

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Cite This Study

Ader et al. (2019) studied this question.

synapsesocial.com/papers/69d56d2f75589c71d767cfdehttps://doi.org/10.1111/cge.13594
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Screening of the Filamin C Gene in a Large Cohort of Hypertrophic Cardiomyopathy Patients2017 · 89 citations
  2. 22014 ESC Guidelines on diagnosis and management of hypertrophic cardiomyopathy2014 · 4,363 citations
  3. 3Filamin C is a highly dynamic protein associated with fast repair of myofibrillar microdamage2016 · 89 citations
  4. 4Novel Genetic Triggers and Genotype–Phenotype Correlations in Patients With Left Ventricular Noncompaction2017 · 134 citations
  5. 5Truncating FLNC Mutations Are Associated With High-Risk Dilated and Arrhythmogenic Cardiomyopathies2016 · 485 citations