Myelin protein zero mutation‐related hereditary neuropathies: Neuropathological insight from a new nerve biopsy cohort

Author:

Bremer Juliane1ORCID,Meinhardt Axel1,Katona Istvan1,Senderek Jan2,Kämmerer‐Gassler Elke K.3,Roos Andreas14,Ferbert Andreas5,Schröder J. Michael1,Nikolin Stefan1,Nolte Kay1,Sellhaus Bernd1,Popzhelyazkova Klimentina1,Tacke Frank6,Schara‐Schmidt Ulrike4,Neuen‐Jacob Eva7,de Groote Chantal Ceuterick8,de Jonghe Peter89,Timmerman Vincent810,Baets Jonathan89,Weis Joachim1ORCID

Affiliation:

1. Institute of Neuropathology RWTH Aachen University Hospital Aachen Germany

2. Friedrich Baur Institute at the Department of Neurology University Hospital, LMU Munich Munich Germany

3. Institute of Pathology RWTH Aachen University Hospital Aachen Germany

4. Department of Neuropaediatrics University of Essen Essen Germany

5. Department of Neurology Klinikum Kassel Kassel Germany

6. Department of Hepatology and Gastroenterology, Charité—Universitätsmedizin Berlin Campus Virchow‐Klinikum (CVK) and Campus Charité Mitte (CCM) Berlin Germany

7. Department of Neuropathology University Hospital, Heinrich‐Heine University Düsseldorf Düsseldorf Germany

8. Laboratory of Neuromuscular Pathology, Institute Born‐Bunge, and Translational Neurosciences, Faculty of Medicine University of Antwerp Belgium

9. Department of Neurology University Hospital Antwerp Antwerp Belgium

10. Peripheral Neuropathy Research Group, Department of Biomedical Sciences University of Antwerp Antwerp Belgium

Abstract

AbstractMyelin protein zero (MPZ/P0) is a major structural protein of peripheral nerve myelin. Disease‐associated variants in the MPZ gene cause a wide phenotypic spectrum of inherited peripheral neuropathies. Previous nerve biopsy studies showed evidence for subtype‐specific morphological features. Here, we aimed at enhancing the understanding of these subtype‐specific features and pathophysiological aspects of MPZ neuropathies. We examined archival material from two Central European centers and systematically determined genetic, clinical, and neuropathological features of 21 patients with MPZ mutations compared to 16 controls. Cases were grouped based on nerve conduction data into congenital hypomyelinating neuropathy (CHN; n = 2), demyelinating Charcot–Marie‐Tooth (CMT type 1; n = 11), intermediate (CMTi; n = 3), and axonal CMT (type 2; n = 5). Six cases had combined muscle and nerve biopsies and one underwent autopsy. We detected four MPZ gene variants not previously described in patients with neuropathy. Light and electron microscopy of nerve biopsies confirmed fewer myelinated fibers, more onion bulbs and reduced regeneration in demyelinating CMT1 compared to CMT2/CMTi. In addition, we observed significantly more denervated Schwann cells, more collagen pockets, fewer unmyelinated axons per Schwann cell unit and a higher density of Schwann cell nuclei in CMT1 compared to CMT2/CMTi. CHN was characterized by basal lamina onion bulb formation, a further increase in Schwann cell density and hypomyelination. Most late onset axonal neuropathy patients showed microangiopathy. In the autopsy case, we observed prominent neuromatous hyperinnervation of the spinal meninges. In four of the six muscle biopsies, we found marked structural mitochondrial abnormalities. These results show that MPZ alterations not only affect myelinated nerve fibers, leading to either primarily demyelinating or axonal changes, but also affect non‐myelinated nerve fibers. The autopsy case offers insight into spinal nerve root pathology in MPZ neuropathy. Finally, our data suggest a peculiar association of MPZ mutations with mitochondrial alterations in muscle.

Funder

Deutsche Forschungsgemeinschaft

Fonds Wetenschappelijk Onderzoek

Publisher

Wiley

Subject

Neurology (clinical),Pathology and Forensic Medicine,General Neuroscience

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