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Published on: August 20, 2019
A homozygous frame-shift variant in PROSER1 is associated with developmental delay, hypotonia, genitourinary
Azza Salah1, Mohammed Almannai2, Mode Al Ojaimi3
1Department of Pediatrics, University Hospital Sharjah, Sharjah, United Arab Emirates.
Insights
A novel genetic syndrome caused by PROSER1 loss-of-function is identified. This condition presents with developmental delay, seizures, and distinct facial features in affected children, highlighting PROSER1
Area of Science:
- Genetics
- Molecular Biology
- Developmental Biology
Background:
- PROSER1 (proline and serine rich protein 1) is involved in gene regulation through its role in histone methyltransferase complexes.
- Dysregulation of gene expression is implicated in various neurodevelopmental disorders.
Purpose of the Study:
- To investigate the genetic cause of a novel syndrome characterized by developmental delay, hypotonia, seizures, and specific facial dysmorphies.
- To identify the specific gene and variant responsible for the observed phenotype.
Main Methods:
- Whole exome sequencing was performed on affected individuals from three related families.
- Segregation analysis within the pedigree was conducted to confirm the variant's inheritance pattern.
Main Results:
- A homozygous frame-shift variant (c.1833del; p.(Thr612Glnfs*22)) in the PROSER1 gene was identified in all affected individuals.
- PROSER1 stabilizes TET2, a DNA demethylase crucial for gene activation, suggesting a mechanism for the observed neurodevelopmental and physical abnormalities.
Conclusions:
- The loss-of-function variant in PROSER1 is the likely cause of a novel recognizable syndrome.
- PROSER1 plays a critical role in gene regulation and neurodevelopment, and its disruption leads to a complex phenotype.
Abstract:
We report four children from three related families who presented with a similar phenotype characterized by developmental delay, hypotonia, seizures, failure-to-thrive, strabismus, drooling, recurrent otitis media, hearing impairment, and genitourinary malformations. They also shared common facial features including arched eyebrows, prominent eyes, broad nasal bridge, low-hanging columella, open mouth, thick lower lip, protruding tongue, large low-set ears, and parietal bossing. Exome sequencing for affected individuals revealed a homozygous frame-shift variant, c.1833del; p.(Thr612Glnfs*22), in PROSER1 which encodes the proline and serine rich protein 1 (PROSER1). PROSER1 has recently been found to be part of the histone methyltransferases KMT2C/KMT2D complexes. PROSER1 stabilizes TET2, a member of the TET family of DNA demethylases which is involved in recruiting the enhancer-associated KMT2C/KMT2D complexes and mediating DNA demethylation, activating gene expression. Therefore, PROSER1 may play vital and potentially general roles in gene regulation, consistent with the wide phenotypic spectrum observed in the individuals presented here. The consistent phenotype, the loss-of-function predicted from the frame-shift, the co-segregation of the phenotype in our large pedigree, the vital role of PROSER1 in gene regulation, and the association of related genes with neurodevelopmental disorders argue for the loss of PROSER1 to be the cause for a novel recognizable syndrome.
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