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Defective neuronal differentiation in Lowe syndrome is associated with mitochondrial dysfunction and impaired cilia-related Sonic Hedgehog signaling.
eLife · · Journal Article · Open access
Walkiewicz, Chen + more
Abstract ↗AI summary
The abstract is read at the publisher; the summary is JClub's.
OCRL deficiency in Lowe syndrome causes mitochondrial dysfunction, impaired cilia-related Sonic Hedgehog signaling, and disrupted neuronal differentiation across multiple models.
- Why it matters: Understanding the cellular mechanisms behind neurodevelopmental delays in Lowe syndrome is crucial, as the disorder involves complex metabolic and signaling pathway disruptions that are not yet fully elucidated.
- What they did: Researchers used patient-derived iPSC neurons, an Ocrl knockout mouse, and zebrafish models to investigate OCRL loss, revealing conserved mitochondrial defects, altered neural differentiation, and impaired Hedgehog signaling.
- The result: Findings demonstrate that OCRL deficiency leads to reduced mitochondrial activity, increased oxidative stress, and disrupted neural lineage balance, providing insights into the interconnected pathways underlying Lowe syndrome pathology.
The findingWhy it mattersWhat they didThe result
- Open access