Retrograde Transport of Transmissible Mink Encephalopathy within Descending Motor Tracts
Open Access
- 1 June 2002
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (11) , 5759-68
- https://doi.org/10.1128/jvi.76.11.5759-5768.2002
Abstract
The spread of the abnormal conformation of the prion protein, PrPSc, within the spinal cord is central to the pathogenesis of transmissible prion diseases, but the mechanism of transport has not been determined. For this report, the route of transport of the HY strain of transmissible mink encephalopathy (TME), a prion disease of mink, in the central nervous system following unilateral inoculation into the sciatic nerves of Syrian hamsters was investigated. PrPScwas detected at 3 weeks postinfection in the lumbar spinal cord and ascended to the brain at a rate of approximately 3.3 mm per day. At 6 weeks postinfection, PrPScwas detected in the lateral vestibular nucleus and the interposed nucleus of the cerebellum ipsilateral to the site of sciatic nerve inoculation and in the red nucleus contralateral to HY TME inoculation. At 9 weeks postinfection, PrPScwas detected in the contralateral hind limb motor cortex and reticular thalamic nucleus. These patterns of PrPScbrain deposition at various times postinfection were consistent with that of HY TME spread from the sciatic nerve to the lumbar spinal cord followed by transsynaptic spread and retrograde transport to the brain and brain stem along descending spinal tracts (i.e., lateral vestibulospinal, rubrospinal, and corticospinal). The absence of PrPScfrom the spleen suggested that the lymphoreticular system does not play a role in neuroinvasion following sciatic nerve infection. The rapid disease onset following sciatic nerve infection demonstrated that HY TME can spread by retrograde transport along specific descending motor pathways of the spinal cord and, as a result, can initially target brain regions that control vestibular and motor functions. The early clinical symptoms of HY TME infection such as head tremor and ataxia were consistent with neuronal damage to these brain areas.Keywords
This publication has 72 references indexed in Scilit:
- Impaired Prion Replication in Spleens of Mice Lacking Functional Follicular Dendritic CellsScience, 2000
- Microtubule-Based Transport Systems in Neurons: The Roles of Kinesins and DyneinsAnnual Review of Neuroscience, 2000
- The termination pattern and postsynaptic targets of rubrospinal fibers in the rat spinal cord: A light and electron microscopic studyJournal of Comparative Neurology, 1992
- Branching patterns of corticospinal axon arbors in the rodentJournal of Comparative Neurology, 1990
- Transneuronal Transfer of Herpes Virus from Peripheral Nerves to Cortex and BrainstemScience, 1989
- Localizing spinal‐cord‐projecting neurons in adult albino ratsJournal of Comparative Neurology, 1984
- Neural pathogenesis of experimental scrapie after intraocular inoculation of hamstersExperimental Neurology, 1983
- Origin of the rubrospinal tract in neonatal, developing, and mature ratsJournal of Comparative Neurology, 1983
- Neuronal spread of scrapie agent and targeting of lesions within the retino-tectal pathwayNature, 1982
- Lumbosacral predominance of vestibulospinal fibre projection in the ratJournal of Comparative Neurology, 1980