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An X-linked PLXNB3 mutation identified in patients with congenital heart disease with neurodevelopmental disabilities
Zhiyu Feng1,2, Xinyuan Chen3, Ting Li2
1Institutes of Biomedical Sciences, and Children's Hospital of Fudan University, Shanghai, China.
Insights
Mutations in the PLXNB3 gene are linked to congenital heart disease (CHD) and neurodevelopmental disabilities (NDD). The identified p.E1440V variant impacts cell growth and key developmental pathways.
Area of Science:
- Genetics
- Developmental Biology
- Cardiology
Background:
- Congenital heart disease (CHD) is a common birth defect often associated with neurodevelopmental disabilities (NDD).
- Plexin family genes are implicated in heart development and neurodevelopmental anomalies.
- No prior studies linked PLXNB3 mutations to isolated CHD or CHD with NDD.
Purpose of the Study:
- To investigate the role of PLXNB3 mutations in congenital heart disease (CHD) with neurodevelopmental disabilities (NDD).
- To identify and characterize pathogenic mutations in the PLXNB3 gene associated with CHD and NDD.
Main Methods:
- Whole-exome sequencing (WES) and targeted sequencing were used to identify PLXNB3 mutations.
- In silico analyses (AlphaFold, PyRosetta) predicted the structural impact of mutations.
- In vitro functional assays (scratch wound, Ki-67, RT-qPCR) assessed the effect of the p.E1440V variant on cell behavior and signaling pathways.
Main Results:
- A pathogenic mutation (c.A4319T p.E1440V) in the X-linked PLXNB3 gene was identified in a proband.
- Four additional pathogenic PLXNB3 mutations were found in patients with sporadic CHD and NDD.
- The p.E1440V variant impaired cell migration and proliferation and affected Notch, myocardial contraction, and neurodevelopmental pathways.
Conclusions:
- PLXNB3 mutations, including the p.E1440V variant, are potentially involved in the pathogenesis of CHD associated with NDD.
- PLXNB3 is a novel candidate gene for CHD with neurodevelopmental disabilities.
Background:
Congenital heart disease (CHD) is the most common birth defect and is often accompanied by neurodevelopmental disabilities (NDD) which increase the associated mortality. Plexin families are known to play a key role in the development of heart and the occurrence of neurodevelopmental anomalies. However, there has been no report of PLXNB3 mutation in isolated CHD or CHD with concomitant NDD.
Methods:
We performed whole-exome sequencing (WES) on a proband with CHD with neurodevelopmental anomalies and his family members. Targeted sequencing, conservation analysis, AlphaFold, and PyRosetta were performed to identify more pathogenic mutations of PLXNB3. Scratch wound assay, Ki-67 assessment by flow cytometry, and gene expression analysis of heart development related pathway by reverse transcription-quantitative polymerase chain reaction (RT-qPCR) were conducted after 24 h transfection in AC16 and HEK293T to investigate the effect of the target mutation.
Results:
We identified a pathogenic mutation in the X-linked PLXNB3 gene (c.A4319T p.E1440V). In addition, we found 4 other pathogenic mutations in a cohort of 75 patients with sporadic CHD with NDD. AlphaFold and PyRosetta predicted that these 4 mutations could cause dramatic changes of the PLXNB3 protein structure (root-mean-square deviation score >10 Å). Further functional analysis revealed that this p.E1440V variant inhibits cell migration and proliferation, and affects the activity of key factors in the Notch signaling pathway, myocardial contraction pathway, and neurodevelopmental pathways.
Conclusions:
These findings suggest that PLXNB3 and the p.E1440V variant may be related to the pathogenesis of CHD associated with NDD.
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