Literature DB >> 28268246

Cerebellar compartmentation of prion pathogenesis.

Audrey Ragagnin1, Juliette Ezpeleta2, Aurélie Guillemain1, François Boudet-Devaud2, Anne-Marie Haeberlé1, Valérie Demais3, Catherine Vidal4, Stanislas Demuth1, Vincent Béringue5, Odile Kellermann2, Benoit Schneider2, Nancy J Grant1, Yannick Bailly1.   

Abstract

In prion diseases, the brain lesion profile is influenced by the prion "strain" properties, the invasion route to the brain, and still unknown host cell-specific parameters. To gain insight into those endogenous factors, we analyzed the histopathological alterations induced by distinct prion strains in the mouse cerebellum. We show that 22L and ME7 scrapie prion proteins (PrP22L , PrPME7 ), but not bovine spongiform encephalopathy PrP6PB1 , accumulate in a reproducible parasagittal banding pattern in the cerebellar cortex of infected mice. Such banding pattern of PrP22L aggregation did not depend on the neuroinvasion route, but coincided with the parasagittal compartmentation of the cerebellum mostly defined by the expression of zebrins, such as aldolase C and the excitatory amino acid transporter 4, in Purkinje cells. We provide evidence that Purkinje cells display a differential, subtype-specific vulnerability to 22L prions with zebrin-expressing Purkinje cells being more resistant to prion toxicity, while in stripes where PrP22L accumulated most zebrin-deficient Purkinje cells are lost and spongiosis accentuated. In addition, in PrP22L stripes, enhanced reactive astrocyte processes associated with microglia activation support interdependent events between the topographic pattern of Purkinje cell death, reactive gliosis and PrP22L accumulation. Finally, we find that in preclinically-ill mice prion infection promotes at the membrane of astrocytes enveloping Purkinje cell excitatory synapses, upregulation of tumor necrosis factor-α receptor type 1 (TNFR1), a key mediator of the neuroinflammation process. These overall data show that Purkinje cell sensitivity to prion insult is locally restricted by the parasagittal compartmentation of the cerebellum, and that perisynaptic astrocytes may contribute to prion pathogenesis through prion-induced TNFR1 upregulation.
© 2017 International Society of Neuropathology.

Entities:  

Keywords:  Purkinje cell; cerebellar compartmentation; inflammation; prion; zebrin

Mesh:

Substances:

Year:  2017        PMID: 28268246     DOI: 10.1111/bpa.12503

Source DB:  PubMed          Journal:  Brain Pathol        ISSN: 1015-6305            Impact factor:   6.508


  6 in total

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Authors:  Jaclyn Beckinghausen; Roy V Sillitoe
Journal:  Neurosci Lett       Date:  2018-05-07       Impact factor: 3.046

2.  A 3D cell culture approach for studying neuroinflammation.

Authors:  James A Carroll; Simote T Foliaki; Cathryn L Haigh
Journal:  J Neurosci Methods       Date:  2021-04-28       Impact factor: 2.987

3.  Neuroimmune Response Mediated by Cytokines in Natural Scrapie after Chronic Dexamethasone Treatment.

Authors:  Isabel M Guijarro; Moisés Garcés; Pol Andrés-Benito; Belén Marín; Alicia Otero; Tomás Barrio; Margarita Carmona; Isidro Ferrer; Juan J Badiola; Marta Monzón
Journal:  Biomolecules       Date:  2021-02-02

4.  Novel Morphological Glial Alterations in the Spectrum of Prion Disease Types: A Focus on Common Findings.

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Review 5.  Neuropathology of Animal Prion Diseases.

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Journal:  Biomolecules       Date:  2021-03-21

6.  Sphingolipid metabolism governs Purkinje cell patterned degeneration in Atxn1[82Q]/+ mice.

Authors:  François G C Blot; Wilhelmina H J J Krijnen; Sandra Den Hoedt; Catarina Osório; Joshua J White; Monique T Mulder; Martijn Schonewille
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  6 in total

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