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Faber, C. G.

Publications and source records attributed to Faber, C. G..

2 recordsLinked to original sources

Dissecting the sources of variation in neuronally differentiated iPSC lines through multi-omics analysis

Induced pluripotent stem cells (iPSCs) are widely used as patient-specific disease models, yet substantial unexplained variability in molecular and functional readouts limits their reliability. Here, we systematically investigated the sources of variation in iPSC-derived neurons for three rare genetic disorders: Myotonic Dystrophy Type 1, chromodomain-DNA-helicase-binding protein 2-related disorder and N-acetylneuraminic acid synthase deficiency. This was performed by profiling multi-omics layers: genomics, epigenomics, transcriptomics, proteomics, metabolomics and lipidomics. Our study found that clonal variability was comparable to inter-patient differences and that neuronal differentiation state and nutrient-driven metabolic activity emerged as dominant contributors to variability observed across omics layers. Clonal differences could partly be attributed to stochastic differences in DNA methylation established during reprogramming. By modeling and correcting the observed variation, we improved the detection of disease-associated molecular signatures. Our study provides guidelines for improved study design and data analysis to minimize variability, enabling robust biomarker discovery and reliable iPSC-based disease modeling.

cell biology↗

KCNK18 c.1107del frameshift in peripheral neuropathy links TRESK dysfunction to neuropathic pain

Neuropathic pain is commonly accompanied by hyperexcitability of nociceptive neurons, which is driven by regulation of several ion channels, including two-pore domain potassium channels (K2P) that stabilize the resting membrane potential. The TWIK-Related Spinal cord potassium channel (TRESK, K2p18.1) is predominantly expressed in sensory ganglia, where it provides major background K conductance. We describe a heterozygous c.1107del frameshift mutation in KCNK18, encoding TRESK, found in a patient with painful small fiber neuropathy and dysautonomia. This C-terminal c.1107del mutant is predicted to generate an elongated C-terminal domain, with an altered protein sequence. Whole-cell patch calmp recordings showed that the c.1107del variant reduced K current density, while heterozygous-like expression resulted in intermediate currents, consistent with a haploinsufficiency mechanism. Confocal imaging revealed decreased plasma membrane expression, indicating a trafficking-dependent loss of function while oligomerization with TRESK (homomeric channels) or TREK1 remained intact. In silico analysis revealed an altered phosphorylation pattern and reduced C-terminal hydrophobicity in the mutant TRESK. Overall, these findings support c.1107del as a pathogenic KCNK18 variant causing TRESK haploinsufficiency, offering mechanistic insight into the pathophysiology of neuropathic pain.

neuroscience↗