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Lymphocytes with Cytotoxic Activity Induce Rapid Microtubule Axonal Destabilization Independently and before Signs of Neuronal Death

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Title
Lymphocytes with Cytotoxic Activity Induce Rapid Microtubule Axonal Destabilization Independently and before Signs of Neuronal Death
Published by
SAGE Publications, February 2013
DOI 10.1042/an20120087
Pubmed ID
Authors

Nichole M. Miller, Leah P. Shriver, Vijaya L. Bodiga, Avijit Ray, Sreemanti Basu, Rajiv Ahuja, Arundhati Jana, Kalipada Pahan, Bonnie N. Dittel

Abstract

MS (multiple sclerosis) is the most prevalent autoimmune disease of the CNS (central nervous system) historically characterized as an inflammatory and demyelinating disease. More recently, extensive neuronal pathology has lead to its classification as a neurodegenerative disease as well. While the immune system initiates the autoimmune response it remains unclear how it orchestrates neuronal damage. In our previous studies, using in vitro cultured embryonic neurons, we demonstrated that MBP (myelin basic protein)-specific encephalitogenic CD4 T-cells induce early neuronal damage. In an extension of those studies, here we show that polarized CD4 Th1 and Th17 cells as wells as CD8 T-cells and NK (natural killer) cells induce microtubule destabilization within neurites in a contact-independent manner. Owing to the cytotoxic potential of these immune cells, we isolated the luminal components of lytic granules and determined that they were sufficient to drive microtubule destabilization. Since lytic granules contain cytolytic proteins, we determined that the induction of microtubule destabilization occurred prior to signs of apoptosis. Furthermore, we determined that microtubule destabilization was largely restricted to axons, sparing dendrites. This study demonstrated that lymphocytes with cytolytic activity have the capacity to directly drive MAD (microtubule axonal destabilization) in a bystander manner that is independent of neuronal death.

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Geographical breakdown

Country Count As %
Unknown 21 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 4 19%
Student > Ph. D. Student 4 19%
Professor 3 14%
Professor > Associate Professor 2 10%
Student > Doctoral Student 1 5%
Other 2 10%
Unknown 5 24%
Readers by discipline Count As %
Medicine and Dentistry 3 14%
Agricultural and Biological Sciences 3 14%
Neuroscience 2 10%
Psychology 2 10%
Biochemistry, Genetics and Molecular Biology 1 5%
Other 4 19%
Unknown 6 29%