Related Experiment Video
Updated: Aug 25, 2025

In Vivo Functional Study of Disease-associated Rare Human Variants Using Drosophila
Published on: August 20, 2019
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.
Abstract:
Autosomal dominant variants in LDB3 (also known as ZASP), encoding the PDZ-LIM domain-binding factor, have been linked to a late onset phenotype of cardiomyopathy and myofibrillar myopathy in humans. However, despite knockout mice displaying a much more severe phenotype with premature death, bi-allelic variants in LDB3 have not yet been reported. Here we identify biallelic loss-of-function variants in five unrelated cardiomyopathy families by next-generation sequencing. In the first family, we identified compound heterozygous LOF variants in LDB3 in a fetus with bilateral talipes and mild left cardiac ventricular enlargement. Ultra-structural examination revealed highly irregular Z-disc formation, and RNA analysis demonstrated little/no expression of LDB3 protein with a functional C-terminal LIM domain in muscle tissue from the affected fetus. In a second family, a homozygous LDB3 nonsense variant was identified in a young girl with severe early-onset dilated cardiomyopathy with left ventricular non-compaction; the same homozygous nonsense variant was identified in a third unrelated female infant with dilated cardiomyopathy. We further identified homozygous LDB3 frameshift variants in two unrelated probands diagnosed with cardiomegaly and severely reduced left ventricular ejection fraction. Our findings demonstrate that recessive LDB3 variants can lead to an early-onset severe human phenotype of cardiomyopathy and myopathy, reminiscent of the knockout mouse phenotype, and supporting a loss of function mechanism.
Related Concept Videos
Lethal Alleles
Lucien Cuénot discovered lethal alleles in 1905 while studying the inheritance of coat color in mice. The agouti gene is responsible for the color of the coat in mice. This gene codes for an agouti-signaling protein, which is responsible for melanin distribution in mammals. The wild-type allele gives rise to gray-brown coat color in mice, while the mutant allele gives rise to yellow coat color. In addition to coat color, the agouti gene is associated with the yellow...
Cardiomyopathy III: Hypertrophic Cardiomyopathy
Pedigree Analysis
The Retinoblastoma Gene
The first-ever tumor suppressor gene called Rb was identified in retinoblastoma - a rare eye tumor in children. In inherited forms of the disease, a child inherits one defective copy of the Rb gene, which predisposes them to retinoblastoma. However,...
Cardiomyopathy II: Dilated Cardiomyopathy
The Intrinsic Apoptotic Pathway

