Reduced MUNC18-1 Levels, Synaptic Proteome Changes, and Altered Network Activity in STXBP1-Related Disorder Patient Neurons

Publication date

2024-01

Authors

van Berkel, Annemiek Arienne
Lammertse, Hanna Charlotte Andrea
Öttl, Miriam
Koopmans, Frank
Misra-Isrie, Mala
Meijer, Marieke
Dilena, Robertino
van Hasselt, Peter Marin
Engelen, Marc
Van Haelst, Mieke M.ISNI 0000000392719356

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Document Type

Article
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Abstract

Background: STXBP1-related disorder (STXBP1-RD) is a neurodevelopmental disorder caused by pathogenic variants in the STXBP1 gene. Its gene product MUNC18-1 organizes synaptic vesicle exocytosis and is essential for synaptic transmission. Patients present with developmental delay, intellectual disability, and/or epileptic seizures, with high clinical heterogeneity. To date, the cellular deficits of neurons of patients with STXBP1-RD are unknown. Methods: We combined live-cell imaging, electrophysiology, confocal microscopy, and mass spectrometry proteomics to characterize cellular phenotypes of induced pluripotent stem cell–derived neurons from 6 patients with STXBP1-RD, capturing shared features as well as phenotypic diversity among patients. Results: Neurons from all patients showed normal in vitro development, morphology, and synapse formation, but reduced MUNC18-1 RNA and protein levels. In addition, a proteome-wide screen identified dysregulation of proteins related to synapse function and RNA processes. Neuronal networks showed shared as well as patient-specific phenotypes in activity frequency, network irregularity, and synchronicity, especially when networks were challenged by increasing excitability. No shared effects were observed in synapse physiology of single neurons except for a few patient-specific phenotypes. Similarities between functional and proteome phenotypes suggested 2 patient clusters, not explained by gene variant type. Conclusions: Together, these data show that decreased MUNC18-1 levels, dysregulation of synaptic proteins, and altered network activity are shared cellular phenotypes of STXBP1-RD. The 2 patient clusters suggest distinctive pathobiology among subgroups of patients, providing a plausible explanation for the clinical heterogeneity. This phenotypic spectrum provides a framework for future validation studies and therapy design for STXBP1-RD.

Keywords

iPSC, MUNC18-1, Neurodevelopmental disorder, SNAREopathy, STXBP1-related disorder, Synaptic transmission, Phychiatric Mental Health, Clinical Neurology, Psychiatry and Mental health, Biological Psychiatry

Citation

van Berkel, A A, Lammertse, H C A, Öttl, M, Koopmans, F, Misra-Isrie, M, Meijer, M, Dilena, R, van Hasselt, P M, Engelen, M, van Haelst, M, Smit, A B, van der Sluis, S, Toonen, R F & Verhage, M 2024, 'Reduced MUNC18-1 Levels, Synaptic Proteome Changes, and Altered Network Activity in STXBP1-Related Disorder Patient Neurons', Biological psychiatry global open science, vol. 4, no. 1, pp. 284-298. https://doi.org/10.1016/j.bpsgos.2023.05.004