Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Purpose: PI4KA-related disorder is a highly clinically variable condition characterized by neurological (limb spasticity, developmental delay, intellectual disability, seizures, ataxia, nystagmus) and gastrointestinal (inflammatory bowel disease and multiple intestinal atresia) manifestations. Although features consistent with immunodeficiency (autoimmunity/autoinflammation and recurrent infections) have been reported in a subset of patients, the burden of B-cell deficiency and hypogammaglobulinemia has not been extensively investigated. We sought to describe the clinical presentation and manifestations of patients with PI4KA-related disorder and to investigate the metabolic consequences of biallelic PI4KA variants in B cells.

Methods: Clinical data from patients with PI4KA variants were obtained. Multi-omics analyses combining transcriptome, proteome, lipidome and metabolome analyses in conjunction with functional assays were performed in EBV-transformed B cells.

Results: Clinical and laboratory data of 13 patients were collected. Recurrent infections (7/13), autoimmune/autoinflammatory manifestations (5/13), B-cell deficiency (8/13) and hypogammaglobulinemia (8/13) were frequently observed. Patients' B cells frequently showed increased transitional and decreased switched memory B-cell subsets. Pathway analyses based on differentially expressed transcripts and proteins confirmed the central role of PI4KA in B cell differentiation with altered B-cell receptor (BCR) complex and signalling. By altering lipids production and tricarboxylic acid cycle regulation, and causing increased endoplasmic reticulum stress, biallelic PI4KA mutations disrupt B cell metabolism inducing mitochondrial dysfunction. As a result, B cells show hyperactive PI3K/mTOR pathway, increased autophagy and deranged cytoskeleton organization.

Conclusion: By altering lipid metabolism and TCA cycle, impairing mitochondrial activity, hyperactivating mTOR pathway and increasing autophagy, PI4KA-related disorder causes a syndromic inborn error of immunity presenting with B-cell deficiency and hypogammaglobulinemia.

Download full-text PDF

Source
http://dx.doi.org/10.1007/s10875-024-01793-8DOI Listing

Publication Analysis

Top Keywords

biallelic pi4ka
12
pi4ka-related disorder
12
b-cell deficiency
12
pi4ka mutations
8
mutations disrupt
8
recurrent infections
8
deficiency hypogammaglobulinemia
8
pi4ka variants
8
data patients
8
b-cell
7

Similar Publications

Article Synopsis
  • PI4KA-related disorder is marked by a variety of neurological and gastrointestinal issues, including spasticity, developmental challenges, and recurrent infections, with specific attention given to the impact on B-cell function and immunodeficiency in some patients. * -
  • The study involved analyzing 13 patients with PI4KA variants, revealing common traits such as B-cell deficiency and hypogammaglobulinemia, alongside significant changes in B-cell subsets and functioning due to metabolic disruptions. * -
  • Findings indicate that mutations in PI4KA lead to disturbances in lipid production and metabolic pathways in B cells, fostering mitochondrial dysfunction and abnormal immune responses, suggesting a critical role of PI4KA in B-cell differentiation and health. *
View Article and Find Full Text PDF

Two Novel Variants in in a Family Presenting With Hereditary Spastic Paraparesis: A Case Report.

Neurol Genet

June 2024

From the Rare Disease Genetics and Functional Genomics Group (J.M.P., E.L.M., A.R., G.R.), Centre for Medical Research, University of Western Australia; Harry Perkins Institute of Medical Research (J.M.P., E.L.M., A.R., G.R.), Nedlands; Royal Perth Hospital (P.J.L.); Sydney Medical School (K.R.K., P

Objectives: To report novel biallelic variants in a family presenting with pure hereditary spastic paraparesis.

Methods: Two affected sisters presented with unsolved hereditary spastic paraparesis and underwent clinical and imaging assessments. This was followed by short-read next-generation sequencing.

View Article and Find Full Text PDF
Article Synopsis
  • The study focuses on the significance of phosphatidylinositol 4-phosphate (PI4P) as a crucial lipid in organelle membranes, impacting various cellular processes, and highlights the role of four phosphatidylinositol 4-kinases (PI4K) in mammalian cells, particularly PI4KA and PI4K2A.
  • Researchers identified two patients with PI4K2A deficiency, linked to neurodevelopmental disorders (NDD) and severe brain malformations, using exome sequencing, and discovered a high mortality rate in affected individuals.
  • Cellular assays confirmed that mutations in PI4K2A negatively impact its function, establishing a connection between deficiencies in
View Article and Find Full Text PDF

Phosphoinositides are lipids that play a critical role in processes such as cellular signalling, ion channel activity and membrane trafficking. When mutated, several genes that encode proteins that participate in the metabolism of these lipids give rise to neurological or developmental phenotypes. PI4KA is a phosphoinositide kinase that is highly expressed in the brain and is essential for life.

View Article and Find Full Text PDF