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Published on: August 25, 2021
Biallelic PI4KA variants cause neurological, intestinal and immunological disease
Claire G Salter1,2, Yiying Cai3,4,5,6, Bernice Lo7,8
1RILD Wellcome Wolfson Centre, University of Exeter Medical School, Exeter, UK.
Abstract:
Phosphatidylinositol 4-kinase IIIα (PI4KIIIα/PI4KA/OMIM:600286) is a lipid kinase generating phosphatidylinositol 4-phosphate (PI4P), a membrane phospholipid with critical roles in the physiology of multiple cell types. PI4KIIIα's role in PI4P generation requires its assembly into a heterotetrameric complex with EFR3, TTC7 and FAM126. Sequence alterations in two of these molecular partners, TTC7 (encoded by TTC7A or TCC7B) and FAM126, have been associated with a heterogeneous group of either neurological (FAM126A) or intestinal and immunological (TTC7A) conditions. Here we show that biallelic PI4KA sequence alterations in humans are associated with neurological disease, in particular hypomyelinating leukodystrophy. In addition, affected individuals may present with inflammatory bowel disease, multiple intestinal atresia and combined immunodeficiency. Our cellular, biochemical and structural modelling studies indicate that PI4KA-associated phenotypical outcomes probably stem from impairment of PI4KIIIα-TTC7-FAM126's organ-specific functions, due to defective catalytic activity or altered intra-complex functional interactions. Together, these data define PI4KA gene alteration as a cause of a variable phenotypical spectrum and provide fundamental new insight into the combinatorial biology of the PI4KIIIα-FAM126-TTC7-EFR3 molecular complex.
Insights
Biallelic alterations in the PI4KA gene cause a spectrum of diseases, including hypomyelinating leukodystrophy, inflammatory bowel disease, and immunodeficiency. These findings highlight PI4KA
Area of Science:
- Cell Biology
- Genetics
- Biochemistry
Background:
- Phosphatidylinositol 4-kinase IIIα (PI4KIIIα) generates phosphatidylinositol 4-phosphate (PI4P), essential for cell function.
- PI4KIIIα functions within a complex including EFR3, TTC7, and FAM126.
- Mutations in TTC7 and FAM126 are linked to neurological and intestinal/immunological disorders.
Purpose of the Study:
- To investigate the role of PI4KA gene alterations in human diseases.
- To understand the molecular mechanisms underlying PI4KA-associated pathologies.
- To explore the function of the PI4KIIIα-TTC7-FAM126 complex.
Main Methods:
- Human genetic sequencing to identify PI4KA alterations.
- Cellular and biochemical assays to study protein function.
- Structural modeling to analyze complex interactions.
Main Results:
- Biallelic PI4KA alterations cause hypomyelinating leukodystrophy.
- Affected individuals may exhibit inflammatory bowel disease, intestinal atresia, and combined immunodeficiency.
- PI4KA mutations impair the catalytic activity or complex interactions of the PI4KIIIα-TTC7-FAM126 complex.
Conclusions:
- PI4KA gene alterations are a cause of a variable phenotypical spectrum.
- Defects in the PI4KIIIα-TTC7-FAM126 complex lead to organ-specific dysfunction.
- This study provides new insights into the combinatorial biology of the PI4KIIIα-FAM126-TTC7-EFR3 complex.
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