Absence of NEFL in patient-specific neurons in early-onset Charcot-Marie-Tooth neuropathy

Author:

Sainio Markus T.,Ylikallio Emil,Mäenpää Laura,Lahtela Jenni,Mattila Pirkko,Auranen Mari,Palmio Johanna,Tyynismaa Henna

Abstract

ObjectiveWe used patient-specific neuronal cultures to characterize the molecular genetic mechanism of recessive nonsense mutations in neurofilament light (NEFL) underlying early-onset Charcot-Marie-Tooth (CMT) disease.MethodsMotor neurons were differentiated from induced pluripotent stem cells of a patient with early-onset CMT carrying a novel homozygous nonsense mutation in NEFL. Quantitative PCR, protein analytics, immunocytochemistry, electron microscopy, and single-cell transcriptomics were used to investigate patient and control neurons.ResultsWe show that the recessive nonsense mutation causes a nearly total loss of NEFL messenger RNA (mRNA), leading to the complete absence of NEFL protein in patient's cultured neurons. Yet the cultured neurons were able to differentiate and form neuronal networks and neurofilaments. Single-neuron gene expression fingerprinting pinpointed NEFL as the most downregulated gene in the patient neurons and provided data of intermediate filament transcript abundancy and dynamics in cultured neurons. Blocking of nonsense-mediated decay partially rescued the loss of NEFL mRNA.ConclusionsThe strict neuronal specificity of neurofilament has hindered the mechanistic studies of recessive NEFL nonsense mutations. Here, we show that such mutation leads to the absence of NEFL, causing childhood-onset neuropathy through a loss-of-function mechanism. We propose that the neurofilament accumulation, a common feature of many neurodegenerative diseases, mimics the absence of NEFL seen in recessive CMT if aggregation prevents the proper localization of wild-type NEFL in neurons. Our results suggest that the removal of NEFL as a proposed treatment option is harmful in humans.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Genetics (clinical),Neurology (clinical)

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1. Advances and challenges in modeling inherited peripheral neuropathies using iPSCs;Experimental & Molecular Medicine;2024-06-03

2. Neurofilament Biophysics: From Structure to Biomechanics;Molecular Biology of the Cell;2024-05-01

3. Novel Genetic and Biochemical Insights into the Spectrum of NEFL-Associated Phenotypes;Journal of Neuromuscular Diseases;2024-04-30

4. Neurofilaments: Novel findings and future challenges;Current Opinion in Cell Biology;2024-04

5. Neurofilaments in health and Charcot-Marie-Tooth disease;Frontiers in Cell and Developmental Biology;2023-12-18

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