Biallelic loss of LDB3 leads to a lethal pediatric dilated cardiomyopathy

Tamara T Koopmann1, Yalda Jamshidi2, Mohammad Naghibi-Sistani3

  • 1Department of Clinical Genetics/LDGA, Leiden University Medical Center, Leiden, The Netherlands.

Insights

Recessive variants in LDB3 (ZASP) cause severe early-onset cardiomyopathy and myopathy in humans, mirroring findings in knockout mice. This study identifies biallelic loss-of-function variants linked to these severe phenotypes.

Area of Science:

  • Genetics
  • Cardiology
  • Molecular Biology

Background:

  • Autosomal dominant LDB3 (ZASP) variants are associated with late-onset cardiomyopathy and myofibrillar myopathy.
  • LDB3 knockout mice exhibit severe phenotypes, including premature death, suggesting a critical role for LDB3.
  • Bi-allelic LDB3 variants have not been previously reported in human diseases.

Purpose of the Study:

  • To investigate the role of bi-allelic LDB3 variants in human cardiomyopathy.
  • To identify the genetic basis of severe, early-onset cardiomyopathy and myopathy in affected families.

Main Methods:

  • Next-generation sequencing was employed to identify variants in five unrelated families.
  • Ultra-structural examination of muscle tissue was performed to assess Z-disc integrity.
  • RNA analysis was conducted to evaluate LDB3 protein expression levels.

Main Results:

  • Biallelic loss-of-function variants in LDB3 were identified in five unrelated families.
  • Affected individuals presented with early-onset severe cardiomyopathy, myopathy, and in one case, bilateral talipes.
  • Pathological findings included irregular Z-disc formation and significantly reduced LDB3 protein expression.

Conclusions:

  • Recessive LDB3 variants can cause a severe, early-onset human phenotype of cardiomyopathy and myopathy.
  • The findings support a loss-of-function mechanism for LDB3 in these conditions.
  • The human phenotype associated with recessive LDB3 variants closely resembles the knockout mouse model.

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