Loss of Distal Axons and Sensory Merkel Cells and Features Indicative of Muscle Denervation in Hindlimbs of P0-Deficient Mice
Open Access
- 15 July 1999
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 19 (14) , 6058-6067
- https://doi.org/10.1523/jneurosci.19-14-06058.1999
Abstract
Mice lacking the major Schwann cell myelin component P0 show a severe dysmyelination with pathological features reminiscent of the Déjérine-Sottas syndrome in humans. Previous morphological and electrophysiological studies on these mice did not only demonstrate a compromised myelination and myelin maintenance, but were suggestive of an impairment of axons as well. Here, we studied the axonal pathology in P0-deficient mice by quantitative electron microscopy. In addition, we investigated epidermal receptor end organs by immunocytochemistry and muscle pathology by histochemistry. In proximal sections of facial and femoral nerves, axon calibers were significantly reduced, whereas the number of myelin-competent axons was not diminished in 5- and 17-month-old P0-deficient mice. However, in distal branches of the femoral and sciatic nerve (digital nerves innervating the skin of the first toe) the numbers of myelin-competent axons were reduced by 70% in 6-month-old P0-deficient mice. Immunolabeling of foot pads revealed a corresponding loss of Merkel cells by 75%, suggesting that survival of these cells is dependent on the presence or maintenance of their innervating myelinated axons. In addition, quadriceps and gastrocnemius muscles showed pathological features indicative of denervation and axonal sprouting. These findings demonstrate that loss of an important myelin component can initiate degenerative mechanisms not only in the Schwann cell but also in the distal portions of myelinated axons, leading to the degeneration of specialized receptor end organs and impairment of muscle innervation.Keywords
This publication has 34 references indexed in Scilit:
- Subtle roles of neural cell adhesion molecule and myelin-associated glycoprotein during Schwann cell spiralling in P0-deficient miceGlia, 1999
- Connexin32-null mice develop demyelinating peripheral neuropathyGlia, 1998
- Axonal Transection in the Lesions of Multiple SclerosisNew England Journal of Medicine, 1998
- Analysis of compound heterozygous mice reveals that theTrembler mutation can behave as a gain-of-function alleleJournal of Neuroscience Research, 1997
- Crucial Role for the Myelin‐associated Glycoprotein in the Maintenance of Axon‐Myelin IntegrityEuropean Journal of Neuroscience, 1995
- Tenascin-C expression during Wallerian degeneration in C57BL/Wlds mice: possible implications for axonal regenerationJournal of Neurocytology, 1995
- The histochemical profiles of fast fiber types IIB, IID, and IIA in skeletal muscles of mouse, rat, and rabbit.Journal of Histochemistry & Cytochemistry, 1993
- Mouse P0 gene disruption leads to hypomyelination, abnormal expression of recognition molecules, and degeneration of myelin and axonsCell, 1992
- Local control of axonal properties by schwann cells: Neurofilaments and axonal transport in homologous and heterologous nerve graftsJournal of Neuroscience Research, 1991
- The neural dependency of Merkel cell development in the rat: The touch domes and foot pads contrastedDevelopmental Biology, 1989