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Full-Text Articles in Neuroscience and Neurobiology

Astrocyte Activation And The Calcineurin/Nfat Pathway In Cerebrovascular Disease, Susan D. Kraner, Christopher M. Norris Sep 2018

Astrocyte Activation And The Calcineurin/Nfat Pathway In Cerebrovascular Disease, Susan D. Kraner, Christopher M. Norris

Sanders-Brown Center on Aging Faculty Publications

Calcineurin (CN) is a Ca2+/calmodulin-dependent protein phosphatase with high abundance in nervous tissue. Though enriched in neurons, CN can become strongly induced in subsets of activated astrocytes under different pathological conditions where it interacts extensively with the nuclear factor of activated T cells (NFATs). Recent work has shown that regions of small vessel damage are associated with the upregulation of a proteolized, highly active form of CN in nearby astrocytes, suggesting a link between the CN/NFAT pathway and chronic cerebrovascular disease. In this Mini Review article, we discuss CN/NFAT signaling properties in the context of vascular disease and …


Ca2+, Astrocyte Activation And Calcineurin/Nfat Signaling In Age-Related Neurodegenerative Diseases, Pradoldej Sompol, Christopher M. Norris Jul 2018

Ca2+, Astrocyte Activation And Calcineurin/Nfat Signaling In Age-Related Neurodegenerative Diseases, Pradoldej Sompol, Christopher M. Norris

Sanders-Brown Center on Aging Faculty Publications

Mounting evidence supports a fundamental role for Ca2+ dysregulation in astrocyte activation. Though the activated astrocyte phenotype is complex, cell-type targeting approaches have revealed a number of detrimental roles of activated astrocytes involving neuroinflammation, release of synaptotoxic factors and loss of glutamate regulation. Work from our lab and others has suggested that the Ca2+/calmodulin dependent protein phosphatase, calcineurin (CN), provides a critical link between Ca2+ dysregulation and the activated astrocyte phenotype. A proteolyzed, hyperactivated form of CN appears at high levels in activated astrocytes in both human tissue and rodent tissue around regions of amyloid and …


Extracellular Vesicle-Associated Aβ Mediates Trans-Neuronal Bioenergetic And Ca2+-Handling Deficits In Alzheimer's Disease Models, Erez Eitan, Emmette R. Hutchison, Krisztina Marosi, James Comotto, Maja Mustapic, Saket M. Nigam, Caitlin Suire, Chinmoyee Maharana, Gregory A. Jicha, Dong Liu, Vasiliki Machairaki, Kenneth W. Witwer, Dimitrios Kapogiannis, Mark P. Mattson Sep 2016

Extracellular Vesicle-Associated Aβ Mediates Trans-Neuronal Bioenergetic And Ca2+-Handling Deficits In Alzheimer's Disease Models, Erez Eitan, Emmette R. Hutchison, Krisztina Marosi, James Comotto, Maja Mustapic, Saket M. Nigam, Caitlin Suire, Chinmoyee Maharana, Gregory A. Jicha, Dong Liu, Vasiliki Machairaki, Kenneth W. Witwer, Dimitrios Kapogiannis, Mark P. Mattson

Sanders-Brown Center on Aging Faculty Publications

Alzheimer’s disease (AD) is an age-related neurodegenerative disorder in which aggregation-prone neurotoxic amyloid β-peptide (Aβ) accumulates in the brain. Extracellular vesicles (EVs), including exosomes, are small 50–150 nm membrane vesicles that have recently been implicated in the prion-like spread of self-aggregating proteins. Here we report that EVs isolated from AD patient cerebrospinal fluid and plasma, from the plasma of two AD mouse models, and from the medium of neural cells expressing familial AD presenilin 1 mutations, destabilize neuronal Ca2+ homeostasis, impair mitochondrial function, and sensitize neurons to excitotoxicity. EVs contain a relatively low amount of Aβ but have an …