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Determining the Likelihood of Variant Pathogenicity Using Amino Acid-level Signal-to-Noise Analysis of Genetic Variation
Published on: January 16, 2019
Familial dilated cardiomyopathy: evidence for genetic and phenotypic heterogeneity. Heart Muscle Disease Study Group
L Mestroni1, C Rocco, D Gregori
1International Centre for Genetic Engineering and Biotechnology, AREA Science Park, Trieste, Italy. Luisa.Mestroni@uchsc.edu
Insights
Familial dilated cardiomyopathy (FDC) is common and genetically diverse, often requiring family screening for diagnosis. Its varied inheritance patterns and genetic causes highlight the need for further research into its etiology.
Area of Science:
- Cardiology
- Genetics
- Internal Medicine
Background:
- Dilated cardiomyopathy (DCM) has a significant genetic component, with variable clinical presentations and inheritance patterns.
- Cardiac autoantibodies are more frequent in some DCM patients, suggesting autoimmune involvement.
- Understanding familial DCM (FDC) is crucial for improving patient management and disease comprehension.
Purpose of the Study:
- To investigate the characteristics of familial dilated cardiomyopathy (FDC).
- To determine the modes of inheritance and underlying causes of FDC.
- To differentiate FDC from sporadic DCM.
Main Methods:
- Clinical examination, ECG, echocardiography, and blood sampling of 281 relatives from 60 families with idiopathic DCM.
- Analysis of clinical features, histology, inheritance patterns, and autoimmune serology.
- Molecular genetic studies to compare familial and sporadic DCM.
Main Results:
- FDC patients were younger and had higher ejection fractions than sporadic DCM patients.
- Identified distinct FDC subtypes: autosomal dominant (56%), autosomal recessive (16%), X-linked (10%), and others.
- FDC subtypes showed varied clinical features, including skeletal muscle disease, conduction defects, and autoantibody presence.
Conclusions:
- FDC is prevalent and not predictable by clinical or morphological means, necessitating family screening.
- Phenotypic heterogeneity and genetic diversity indicate multiple genes and pathways contribute to FDC.
- Further research into FDC's genetic basis and pathogenetic mechanisms is warranted.
Objectives:
This study was performed to evaluate the characteristics, mode of inheritance and etiology of familial dilated cardiomyopathy (FDC).
Background:
A genetic form of disease transmission has been identified in a relevant proportion of patients with dilated cardiomyopathy (DCM). Variable clinical characteristics and patterns of inheritance, and an increased frequency of cardiac antibodies have been reported. An analysis of FDC may improve the understanding of the disease and the management of patients.
Methods:
Of 350 consecutive patients with idiopathic DCM, 281 relatives from 60 families were examined. Family studies included clinical examination, electrocardiography, echocardiography and blood sampling. Of the 60 DCM index patients examined, 39 were attributable to FDC and 21 were due to sporadic DCM. Clinical features, histology, mode of inheritance and autoimmune serology were examined, molecular genetic studies were undertaken and the difference between familial and sporadic forms was analyzed.
Results:
Only a younger age (p = 0.0005) and a higher ejection fraction (p = 0.03) could clinically distinguish FDC patients from those with sporadic DCM. However, a number of distinct subtypes of FDC were identified: 1) autosomal dominant, the most frequent form (56%); 2) autosomal recessive (16%), characterized by worse prognosis; 3) X-linked FDC (10%), with different mutations of the dystrophin gene; 4) a novel form of autosomal dominant DCM with subclinical skeletal muscle disease (7.7%); 5) FDC with conduction defects (2.6%), and 6) rare unclassifiable forms (7.7%). The forms with skeletal muscle involvement were characterized by a restrictive filling pattern; the forms with isolated cardiomyopathy had an increased frequency of organ-specific cardiac autoantibodies. Histologic signs of myocarditis were frequent and nonspecific.
Conclusions:
Familial dilated cardiomyopathy is frequent, cannot be predicted on a clinical or morphologic basis and requires family screening for identification. The phenotypic heterogeneity, different patterns of transmission, different frequencies of cardiac autoantibodies and the initial molecular genetic data indicate that multiple genes and pathogenetic mechanisms can lead to FDC.
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