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Updated: Dec 24, 2025

Modeling Charcot-Marie-Tooth Disease In Vitro by Transfecting Mouse Primary Motoneurons
Published on: January 7, 2019
Alteration of the late endocytic pathway in Charcot-Marie-Tooth type 2B disease
Roberta Romano1, Cristina Rivellini2, Maria De Luca1
1Department of Biological and Environmental Sciences and Technologies (DiSTeBA), University of Salento, Lecce, Italy.
Abstract:
The small GTPase RAB7A regulates late stages of the endocytic pathway and plays specific roles in neurons, controlling neurotrophins trafficking and signaling, neurite outgrowth and neuronal migration. Mutations in the RAB7A gene cause the autosomal dominant Charcot-Marie-Tooth type 2B (CMT2B) disease, an axonal peripheral neuropathy. As several neurodegenerative diseases are caused by alterations of endocytosis, we investigated whether CMT2B-causing mutations correlate with changes in this process. To this purpose, we studied the endocytic pathway in skin fibroblasts from healthy and CMT2B individuals. We found higher expression of late endocytic proteins in CMT2B cells compared to control cells, as well as higher activity of cathepsins and higher receptor degradation activity. Consistently, we observed an increased number of lysosomes, accompanied by higher lysosomal degradative activity in CMT2B cells. Furthermore, we found increased migration and increased RAC1 and MMP-2 activation in CMT2B compared to control cells. To validate these data, we obtained sensory neurons from patient and control iPS cells, to confirm increased lysosomal protein expression and lysosomal activity in CMT2B-derived neurons. Altogether, these results demonstrate that in CMT2B patient-derived cells, the endocytic degradative pathway is altered, suggesting that higher lysosomal activity contributes to neurodegeneration occurring in CMT2B.
Insights
Charcot-Marie-Tooth type 2B (CMT2B) disease involves altered endocytosis. CMT2B cells show increased lysosomal activity, suggesting this contributes to neurodegeneration in this axonal peripheral neuropathy.
Area of Science:
- Cell Biology
- Neuroscience
- Genetics
Background:
- The small GTPase RAB7A is crucial for the endocytic pathway in neurons.
- Mutations in RAB7A cause Charcot-Marie-Tooth type 2B (CMT2B) disease, a form of axonal peripheral neuropathy.
- Endocytic pathway dysfunction is implicated in various neurodegenerative diseases.
Purpose of the Study:
- To investigate if mutations causing CMT2B alter the endocytic pathway.
- To examine the relationship between CMT2B and endocytosis in patient-derived cells.
Main Methods:
- Studied the endocytic pathway in skin fibroblasts from CMT2B patients and healthy controls.
- Utilized induced pluripotent stem cells (iPSCs) to derive sensory neurons for validation.
- Assessed expression of late endocytic proteins, cathepsin activity, receptor degradation, lysosome number, and lysosomal activity.
Main Results:
- CMT2B cells exhibited higher expression of late endocytic proteins and increased cathepsin and receptor degradation activity.
- An increased number and degradative activity of lysosomes were observed in CMT2B cells.
- CMT2B-derived neurons confirmed elevated lysosomal protein expression and activity.
Conclusions:
- The endocytic degradative pathway is altered in cells from CMT2B patients.
- Increased lysosomal activity is a potential contributor to neurodegeneration in CMT2B.
- RAB7A mutations impacting endocytosis offer therapeutic targets for CMT2B.
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