Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Multiple system atrophy-associated oligodendroglial protein p25α stimulates formation of novel α-synuclein strain with enhanced neurodegenerative potential
by
Sorrentino, Zachary A
, Willén Katarina
, Jensen, Poul Henning
, Ferreira, Nelson
, Mendez, Nicolas
, Romero-Ramos, Marina
, Schmidt, Sissel Ida
, Gram Hjalte
, Nagaraj Madhu
, Dong Mingdong
, Prakruti, Rabadia
, Soto, Claudio
, Perez-Gozalbo, Clara
, Giasson, Benoit I
, Ersoy, Cholak
, Betzer Cristine
, Reimer Lasse
, Wang, Jie
, Nowak, Jan S
, Otzen, Daniel E
, Bjerregaard-Andersen Kaare
, Meyer, Morten
, Beltoja Marjo
, Gregersen Emil
, Akbey Ümit
, Shahnawaz Mohammad
in
Atrophy
/ Brain stem
/ Dementia disorders
/ Dopamine receptors
/ Energy transfer
/ Fibrils
/ Lewy bodies
/ Life span
/ Movement disorders
/ Neostriatum
/ Nervous system
/ Neurodegenerative diseases
/ Parkinson's disease
/ Pathology
/ Phenotypes
/ Protein arrays
/ Protein folding
/ Proteins
/ Synuclein
/ Tropism
2021
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Multiple system atrophy-associated oligodendroglial protein p25α stimulates formation of novel α-synuclein strain with enhanced neurodegenerative potential
by
Sorrentino, Zachary A
, Willén Katarina
, Jensen, Poul Henning
, Ferreira, Nelson
, Mendez, Nicolas
, Romero-Ramos, Marina
, Schmidt, Sissel Ida
, Gram Hjalte
, Nagaraj Madhu
, Dong Mingdong
, Prakruti, Rabadia
, Soto, Claudio
, Perez-Gozalbo, Clara
, Giasson, Benoit I
, Ersoy, Cholak
, Betzer Cristine
, Reimer Lasse
, Wang, Jie
, Nowak, Jan S
, Otzen, Daniel E
, Bjerregaard-Andersen Kaare
, Meyer, Morten
, Beltoja Marjo
, Gregersen Emil
, Akbey Ümit
, Shahnawaz Mohammad
in
Atrophy
/ Brain stem
/ Dementia disorders
/ Dopamine receptors
/ Energy transfer
/ Fibrils
/ Lewy bodies
/ Life span
/ Movement disorders
/ Neostriatum
/ Nervous system
/ Neurodegenerative diseases
/ Parkinson's disease
/ Pathology
/ Phenotypes
/ Protein arrays
/ Protein folding
/ Proteins
/ Synuclein
/ Tropism
2021
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Multiple system atrophy-associated oligodendroglial protein p25α stimulates formation of novel α-synuclein strain with enhanced neurodegenerative potential
by
Sorrentino, Zachary A
, Willén Katarina
, Jensen, Poul Henning
, Ferreira, Nelson
, Mendez, Nicolas
, Romero-Ramos, Marina
, Schmidt, Sissel Ida
, Gram Hjalte
, Nagaraj Madhu
, Dong Mingdong
, Prakruti, Rabadia
, Soto, Claudio
, Perez-Gozalbo, Clara
, Giasson, Benoit I
, Ersoy, Cholak
, Betzer Cristine
, Reimer Lasse
, Wang, Jie
, Nowak, Jan S
, Otzen, Daniel E
, Bjerregaard-Andersen Kaare
, Meyer, Morten
, Beltoja Marjo
, Gregersen Emil
, Akbey Ümit
, Shahnawaz Mohammad
in
Atrophy
/ Brain stem
/ Dementia disorders
/ Dopamine receptors
/ Energy transfer
/ Fibrils
/ Lewy bodies
/ Life span
/ Movement disorders
/ Neostriatum
/ Nervous system
/ Neurodegenerative diseases
/ Parkinson's disease
/ Pathology
/ Phenotypes
/ Protein arrays
/ Protein folding
/ Proteins
/ Synuclein
/ Tropism
2021
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Multiple system atrophy-associated oligodendroglial protein p25α stimulates formation of novel α-synuclein strain with enhanced neurodegenerative potential
Journal Article
Multiple system atrophy-associated oligodendroglial protein p25α stimulates formation of novel α-synuclein strain with enhanced neurodegenerative potential
2021
Request Book From Autostore
and Choose the Collection Method
Overview
Pathology consisting of intracellular aggregates of alpha-Synuclein (α-Syn) spread through the nervous system in a variety of neurodegenerative disorders including Parkinson’s disease, dementia with Lewy bodies, and multiple system atrophy. The discovery of structurally distinct α-Syn polymorphs, so-called strains, supports a hypothesis where strain-specific structures are templated into aggregates formed by native α-Syn. These distinct strains are hypothesised to dictate the spreading of pathology in the tissue and the cellular impact of the aggregates, thereby contributing to the variety of clinical phenotypes. Here, we present evidence of a novel α-Syn strain induced by the multiple system atrophy-associated oligodendroglial protein p25α. Using an array of biophysical, biochemical, cellular, and in vivo analyses, we demonstrate that compared to α-Syn alone, a substoichiometric concentration of p25α redirects α-Syn aggregation into a unique α-Syn/p25α strain with a different structure and enhanced in vivo prodegenerative properties. The α-Syn/p25α strain induced larger inclusions in human dopaminergic neurons. In vivo, intramuscular injection of preformed fibrils (PFF) of the α-Syn/p25α strain compared to α-Syn PFF resulted in a shortened life span and a distinct anatomical distribution of inclusion pathology in the brain of a human A53T transgenic (line M83) mouse. Investigation of α-Syn aggregates in brain stem extracts of end-stage mice demonstrated that the more aggressive phenotype of the α-Syn/p25α strain was associated with an increased load of α-Syn aggregates based on a Förster resonance energy transfer immunoassay and a reduced α-Syn aggregate seeding activity based on a protein misfolding cyclic amplification assay. When injected unilaterally into the striata of wild-type mice, the α-Syn/p25α strain resulted in a more-pronounced motoric phenotype than α-Syn PFF and exhibited a “tropism” for nigro-striatal neurons compared to α-Syn PFF. Overall, our data support a hypothesis whereby oligodendroglial p25α is responsible for generating a highly prodegenerative α-Syn strain in multiple system atrophy.
This website uses cookies to ensure you get the best experience on our website.