PIGH deficiency can be associated with severe neurodevelopmental and skeletal manifestations
Camille Tremblay-Laganière1, Rauan Kaiyrzhanov2, Reza Maroofian2
1Department of Pediatrics, CHU Sainte-Justine, Montreal, QC, Canada.
Insights
Phosphatidylinositol Glycan Anchor Biosynthesis class H (PIGH) deficiency is a rare disorder causing developmental delays and seizures. This study identifies new PIGH variants, including one linked to severe symptoms, expanding the known phenotype range.
Area of Science:
- Genetics
- Biochemistry
- Neurology
Background:
- Phosphatidylinositol Glycan Anchor Biosynthesis class H (PIGH) is crucial for glycosylphosphatidylinositol (GPI) anchor synthesis.
- PIGH deficiency is a rare disorder linked to developmental delay, seizures, and behavioral issues.
Purpose of the Study:
- To report three new families with bi-allelic PIGH variants.
- To characterize the clinical spectrum of PIGH deficiency, including a novel severe variant.
Main Methods:
- Clinical evaluation of affected individuals.
- Genetic analysis to identify PIGH variants.
- Assessment of GPI-anchored protein (GPI-AP) levels.
Main Results:
- Identified two distinct bi-allelic PIGH variants in three families.
- Described common features like developmental delay and hypotonia, with variable symptoms including seizures and autism spectrum disorder.
- Characterized a novel p.(Arg163Trp) variant associated with severe phenotypes, including profound psychomotor retardation and intractable seizures.
Conclusions:
- PIGH deficiency presents a broad clinical spectrum, extending to severe phenotypes.
- The novel p.(Arg163Trp) variant contributes to a more severe presentation of PIGH deficiency.
- This expands the understanding of PIGH-related disorders and their genetic basis.
Abstract:
Phosphatidylinositol Glycan Anchor Biosynthesis class H (PIGH) is an essential player in the glycosylphosphatidylinositol (GPI) synthesis, an anchor for numerous cell membrane-bound proteins. PIGH deficiency is a newly described and rare disorder associated with developmental delay, seizures and behavioral difficulties. Herein, we report three new unrelated families with two different bi-allelic PIGH variants, including one new variant p.(Arg163Trp) which seems associated with a more severe phenotype. The common clinical features in all affected individuals are developmental delay/intellectual disability and hypotonia. Variable clinical features include seizures, autism spectrum disorder, apraxia, severe language delay, dysarthria, feeding difficulties, facial dysmorphisms, microcephaly, strabismus, and musculoskeletal anomalies. The two siblings homozygous for the p.(Arg163Trp) variant have severe symptoms including profound psychomotor retardation, intractable seizures, multiple bone fractures, scoliosis, loss of independent ambulation, and delayed myelination on brain MRI. Serum iron levels were significantly elevated in one individual. All tested individuals with PIGH deficiency had normal alkaline phosphatase and CD16, a GPI-anchored protein (GPI-AP), was found to be decreased by 60% on granulocytes from one individual. This study expands the PIGH deficiency phenotype range toward the severe end of the spectrum with the identification of a novel pathogenic variant.
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