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Published on: May 19, 2016
PMP22 is critical for actin-mediated cellular functions and for establishing lipid rafts
Sooyeon Lee1, Stephanie Amici1, Hagai Tavori2
1Departments of Neuroscience and Neurology, McKnight Brain Institute, College of Medicine, University of Florida, Gainesville, Florida 32611, and.
Abstract:
Haploinsufficiency of peripheral myelin protein 22 (PMP22) causes hereditary neuropathy with liability to pressure palsies, a peripheral nerve lesion induced by minimal trauma or compression. As PMP22 is localized to cholesterol-enriched membrane domains that are closely linked with the underlying actin network, we asked whether the myelin instability associated with PMP22 deficiency could be mediated by involvement of the protein in actin-dependent cellular functions and/or lipid raft integrity. In peripheral nerves and cells from mice with PMP22 deletion, we assessed the organization of filamentous actin (F-actin), and actin-dependent cellular functions. Using in vitro models, we discovered that, in the absence of PMP22, the migration and adhesion capacity of Schwann cells and fibroblasts are similarly impaired. Furthermore, PMP22-deficient Schwann cells produce shortened myelin internodes, and display compressed axial cell length and collapsed lamellipodia. During early postnatal development, F-actin-enriched Schmidt-Lanterman incisures do not form properly in nerves from PMP22(-/-) mice, and the expression and localization of molecules associated with uncompacted myelin domains and lipid rafts, including flotillin-1, cholesterol, and GM1 ganglioside, are altered. In addition, we identified changes in the levels and distribution of cholesterol and ApoE when PMP22 is absent. Significantly, cholesterol supplementation of the culture medium corrects the elongation and migration deficits of PMP22(-/-) Schwann cells, suggesting that the observed functional impairments are directly linked with cholesterol deficiency of the plasma membrane. Our findings support a novel role for PMP22 in the linkage of the actin cytoskeleton with the plasma membrane, likely through regulating the cholesterol content of lipid rafts.
Insights
Peripheral myelin protein 22 (PMP22) deficiency impairs Schwann cell function and myelin stability by affecting actin cytoskeleton linkage and cholesterol levels in lipid rafts, impacting nerve health.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Hereditary neuropathy with liability to pressure palsies is caused by peripheral myelin protein 22 (PMP22) haploinsufficiency.
- PMP22 localizes to cholesterol-rich membrane domains linked to the actin network.
Purpose of the Study:
- To investigate if PMP22 deficiency affects myelin instability through actin-dependent cellular functions and lipid raft integrity.
- To elucidate the role of PMP22 in linking the actin cytoskeleton to the plasma membrane.
Main Methods:
- Assessed filamentous actin (F-actin) organization and actin-dependent functions in peripheral nerves and cells from PMP22-deleted mice.
- Utilized in vitro models to evaluate Schwann cell and fibroblast migration and adhesion.
- Analyzed expression and localization of lipid raft-associated molecules and cholesterol/ApoE levels.
Main Results:
- PMP22 deficiency impaired Schwann cell and fibroblast migration and adhesion.
- PMP22-deficient Schwann cells showed shortened myelin internodes and altered cell morphology.
- Defective formation of F-actin-rich Schmidt-Lanterman incisures and altered lipid raft composition (cholesterol, flotillin-1, GM1 ganglioside) were observed.
- Cholesterol supplementation rescued functional deficits in PMP22-deficient Schwann cells.
Conclusions:
- PMP22 plays a crucial role in maintaining myelin stability and Schwann cell function.
- PMP22 deficiency disrupts the linkage between the actin cytoskeleton and plasma membrane, likely by regulating lipid raft cholesterol content.
- This provides a novel understanding of PMP22's function in peripheral nerve health.
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