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Published on: August 15, 2019
Pontocerebellar hypoplasia due to bi-allelic variants in MINPP1
Bart Appelhof1, Matias Wagner2,3, Julia Hoefele3
1Department of Human Genetics, Leiden University Medical Center, Leiden, Netherlands.
Abstract:
Pontocerebellar hypoplasia (PCH) describes a group of rare heterogeneous neurodegenerative diseases with prenatal onset. Here we describe eight children with PCH from four unrelated families harboring the homozygous MINPP1 (NM_004897.4) variants; c.75_94del, p.(Leu27Argfs*39), c.851 C > A, p.(Ala284Asp), c.1210 C > T, p.(Arg404*), and c.992 T > G, p.(Ile331Ser). The homozygous p.(Leu27Argfs*39) change is predicted to result in a complete absence of MINPP1. The p.(Arg404*) would likely lead to a nonsense mediated decay, or alternatively, a loss of several secondary structure elements impairing protein folding. The missense p.(Ala284Asp) affects a buried, hydrophobic residue within the globular domain. The introduction of aspartic acid is energetically highly unfavorable and therefore predicted to cause a significant reduction in protein stability. The missense p.(Ile331Ser) affects the tight hydrophobic interactions of the isoleucine by the disruption of the polar side chain of serine, destabilizing the structure of MINPP1. The overlap of the above-mentioned genotypes and phenotypes is highly improbable by chance. MINPP1 is the only enzyme that hydrolyses inositol phosphates in the endoplasmic reticulum lumen and several studies support its role in stress induced apoptosis. The pathomechanism explaining the disease mechanism remains unknown, however several others genes of the inositol phosphatase metabolism (e.g., INPP5K, FIG4, INPP5E, ITPR1) are correlated with phenotypes of neurodevelopmental disorders. Taken together, we present MINPP1 as a novel autosomal recessive pontocerebellar hypoplasia gene.
Insights
Pontocerebellar hypoplasia (PCH) is a rare neurodegenerative disease. This study identifies mutations in the MINPP1 gene as a novel cause of autosomal recessive PCH, impacting endoplasmic reticulum function and apoptosis.
Area of Science:
- Neurogenetics
- Molecular Biology
- Biochemistry
Background:
- Pontocerebellar hypoplasia (PCH) encompasses rare, inherited neurodegenerative disorders originating prenatally.
- The genetic underpinnings of many PCH subtypes remain elusive, hindering diagnosis and therapeutic development.
Observation:
- This study investigated eight children from four families presenting with PCH.
- Genetic analysis revealed homozygous variants in the MINPP1 gene in all affected individuals.
Findings:
- Identified four distinct homozygous MINPP1 variants (c.75_94del, c.851C>A, c.1210C>T, c.992T>G) associated with PCH.
- These variants are predicted to cause loss of function, reduced protein stability, or impaired protein folding of MINPP1.
- MINPP1, the sole enzyme hydrolyzing inositol phosphates in the endoplasmic reticulum lumen, is implicated in stress-induced apoptosis.
Implications:
- Establishes MINPP1 as a novel gene associated with autosomal recessive pontocerebellar hypoplasia.
- Highlights the role of inositol phosphate metabolism in neurodevelopmental disorders.
- Suggests potential pathways for future research into PCH pathogenesis and therapeutic strategies.
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