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April 15, 2026Genes0 citationsOpen Access

Fatal Infantile Cardiomyopathy Associated with a Homozygous MYL2 c.413T>A (p.Met138Lys) Variant: A Case Expanding the Recessive MYL2 Phenotypic Spectrum

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MUMohammed Shahab UddinYAYasmeen AlnamshanKSKhaled Shafeen

Key Result

A homozygous MYL2 c.413T>A (p.Met138Lys) missense variant was identified via whole-exome sequencing in a male infant with fatal infantile cardiomyopathy, expanding the recessive MYL2 spectrum.

Key Points

  • To describe a novel case of recessive MYL2-related cardiomyopathy and expand its phenotypic spectrum.
  • Case report of a male infant with congenital hypotonia and delayed motor development.
  • Extensive evaluations including metabolic, neuromuscular, and neuroimaging assessments.
  • Trio-based whole-exome sequencing was performed to identify genetic causes.
  • Patient experienced acute heart failure at 10 months with severe left ventricular dysfunction.
  • Identified a homozygous MYL2 c.413T>A (p.Met138Lys) variant, rare in population databases.
  • Variant is predicted to be deleterious and compatible with autosomal recessive inheritance.

Study Design

Type

Case Report (n=1)

Structured PICO

P
Population
1 male infant with congenital hypotonia, delayed motor development, and acute decompensated heart failure with severe left ventricular systolic dysfunction
I
Intervention
Trio-based whole-exome sequencing
O
Outcome
Identification of genetic etiologysurrogate

This case report expands the phenotypic spectrum of recessive MYL2-associated cardiomyopathy and highlights the importance of early genomic testing in infants with unexplained hypotonia and rapidly progressive cardiac dysfunction.

Abstract

Background/Objectives: Infantile cardiomyopathy is a rare but often life-threatening condition in which monogenic causes are particularly relevant, especially when cardiac disease is preceded by hypotonia or multisystem involvement. Among sarcomeric genes, MYL2, encoding the ventricular regulatory myosin light chain, plays a critical role in myocardial contractility. However, biallelic MYL2-associated disease remains exceptionally rare, and its clinical spectrum is not fully defined. This study aims to describe a novel case and further delineate the phenotype of recessive MYL2-related cardiomyopathy. Methods: We report a male infant with congenital hypotonia and delayed motor development who underwent extensive metabolic, neuromuscular, and neuroimaging evaluation. Trio-based whole-exome sequencing was performed to identify a potential genetic etiology, followed by variant interpretation using standard bioinformatic and ACMG/AMP criteria. Results: The patient developed acute decompensated heart failure at approximately 10 months of age, with severe left ventricular systolic dysfunction and multiorgan failure, and died at 12 months despite maximal intensive care support. Whole-exome sequencing identified a homozygous MYL2 c.413T>A (p.Met138Lys) missense variant. The variant is absent or extremely rare in population databases, affects a highly conserved residue, is predicted to be deleterious by multiple in silico tools, and is compatible with autosomal recessive inheritance, with both parents confirmed as heterozygous carriers. In the context of a phenotype consistent with recessive MYL2-associated disease, these findings support a likely pathogenic interpretation. Conclusions: This case expands the allelic and phenotypic spectrum of recessive MYL2-associated cardiomyopathy and highlights the value of early genomic testing in infants with unexplained hypotonia and rapidly progressive cardiac dysfunction. Molecular diagnosis may aid in prognosis, clinical decision-making, and genetic counseling.

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Cite This Study

Uddin et al. (2026) conducted a case report in Infantile cardiomyopathy (n=1). Whole-exome sequencing was evaluated. A homozygous MYL2 c.413T>A (p.Met138Lys) missense variant was identified via whole-exome sequencing in a male infant with fatal infantile cardiomyopathy, expanding the recessive MYL2 spectrum.

synapsesocial.com/papers/69df2c01e4eeef8a2a6b0fcfhttps://doi.org/10.3390/genes17040441
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