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Published on: March 20, 2019
Complement-membrane regulatory proteins are absent from the nodes of Ranvier in the peripheral nervous system
Netanel Karbian1, Yael Eshed-Eisenbach2,3, Marian Zeibak1
1Rheumatology and Rare Disease Research Center, The Wohl Institute for Translational Medicine, Hadassah-Hebrew University Medical Center and School of Medicine, Jerusalem, Israel.
Insights
CD59 (complement decay-accelerating factor) is absent from the Nodes of Ranvier, leaving them vulnerable to complement attack. This finding explains demyelination in Guillain-Barré syndrome (GBS) and CD59 deficiency.
Area of Science:
- Neuroimmunology
- Complement System Biology
Background:
- CD59 deficiency causes neuropathy, hemolytic anemia, and strokes, with 17/18 patients experiencing recurrent Guillain-Barré syndrome (GBS).
- The role of complement regulators in the peripheral nervous system (PNS) remains unclear.
Purpose of the Study:
- To investigate the localization and function of complement regulators, specifically CD59, within the human and mouse PNS.
- To determine the susceptibility of the Nodes of Ranvier and myelin to complement-mediated damage.
Main Methods:
- Examined complement regulator localization in human and mouse peripheral nerves using confocal and electron microscopy.
- Analyzed sciatic nerves and dorsal root ganglia (DRG) neuron/Schwann cell cultures from wild-type and CD59a-deficient mice.
Main Results:
- CD59a-deficient mice showed normal nerve morphology but developed myelin abnormalities with age.
- CD59 was found along the internode of healthy nerves but absent from the Nodes of Ranvier.
- Nodes of Ranvier lacked other complement regulators (CD46, CD55, CD35, Crry), increasing vulnerability.
Conclusions:
- Nodes of Ranvier are unprotected from complement terminal attack due to CD59 absence.
- Human PNS myelin is protected by CD59 and CD55, but Nodes of Ranvier are vulnerable.
- This vulnerability contributes to demyelination in GBS and CD59 deficiency.
Background:
Homozygous CD59-deficient patients manifest with recurrent peripheral neuropathy resembling Guillain-Barré syndrome (GBS), hemolytic anemia and recurrent strokes. Variable mutations in CD59 leading to loss of function have been described and, overall, 17/18 of patients with any mutation presented with recurrent GBS. Here we determine the localization and possible role of membrane-bound complement regulators, including CD59, in the peripheral nervous systems (PNS) of mice and humans.
Methods:
We examined the localization of membrane-bound complement regulators in the peripheral nerves of healthy humans and a CD59-deficient patient, as well as in wild-type (WT) and CD59a-deficient mice. Cross sections of teased sciatic nerves and myelinating dorsal root ganglia (DRG) neuron/Schwann cell cultures were examined by confocal and electron microscopy.
Results:
We demonstrate that CD59a-deficient mice display normal peripheral nerve morphology but develop myelin abnormalities in older age. They normally express myelin protein zero (P0), ankyrin G (AnkG), Caspr, dystroglycan, and neurofascin. Immunolabeling of WT nerves using antibodies to CD59 and myelin basic protein (MBP), P0, and AnkG revealed that CD59 was localized along the internode but was absent from the nodes of Ranvier. CD59 was also detected in blood vessels within the nerve. Finally, we show that the nodes of Ranvier lack other complement-membrane regulatory proteins, including CD46, CD55, CD35, and CR1-related gene-y (Crry), rendering this area highly exposed to complement attack.
Conclusion:
The Nodes of Ranvier lack CD59 and are hence not protected from complement terminal attack. The myelin unit in human PNS is protected by CD59 and CD55, but not by CD46 or CD35. This renders the nodes and myelin in the PNS vulnerable to complement attack and demyelination in autoinflammatory Guillain-Barré syndrome, as seen in CD59 deficiency.
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