Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Distinct cryo-EM Structure of α-synuclein Filaments derived by Tau

View through CrossRef
Abstract Recent structural studies of ex vivo amyloid filaments extracted from human patients demonstrated that the ex vivo filaments associated with different disease phenotypes adopt diverse molecular conformations distinct from those in vitro amyloid filaments. A very recent cryo-EM structural study also revealed that ex vivo α-synuclein filaments extracted from multiple system atrophy (MSA) patients adopt quite distinct molecular structures from those of in vitro α-synuclein filaments, suggesting the presence of co-factors for α-synuclein aggregation in vivo. Here, we report structural characterizations of α-synuclein filaments derived by a potential co-factor, tau, using cryo-EM and solid-state NMR. Our cryo-EM structure of the tau-promoted α-synuclein filament at 4.0 Å resolution is somewhat similar to one of the polymorphs of in vitro α-synuclein filaments. However, the N- and C-terminal regions of the tau-promoted α-synuclein filament have different molecular conformations. Our structural studies highlight the conformational plasticity of α-synuclein filaments, requiring additional structural investigation of not only more ex vivo α-synuclein filaments, but also in vitro α-synuclein filaments formed in the presence of diverse co-factors to better understand molecular basis of diverse molecular conformations of α-synuclein filaments.
Title: Distinct cryo-EM Structure of α-synuclein Filaments derived by Tau
Description:
Abstract Recent structural studies of ex vivo amyloid filaments extracted from human patients demonstrated that the ex vivo filaments associated with different disease phenotypes adopt diverse molecular conformations distinct from those in vitro amyloid filaments.
A very recent cryo-EM structural study also revealed that ex vivo α-synuclein filaments extracted from multiple system atrophy (MSA) patients adopt quite distinct molecular structures from those of in vitro α-synuclein filaments, suggesting the presence of co-factors for α-synuclein aggregation in vivo.
Here, we report structural characterizations of α-synuclein filaments derived by a potential co-factor, tau, using cryo-EM and solid-state NMR.
Our cryo-EM structure of the tau-promoted α-synuclein filament at 4.
0 Å resolution is somewhat similar to one of the polymorphs of in vitro α-synuclein filaments.
However, the N- and C-terminal regions of the tau-promoted α-synuclein filament have different molecular conformations.
Our structural studies highlight the conformational plasticity of α-synuclein filaments, requiring additional structural investigation of not only more ex vivo α-synuclein filaments, but also in vitro α-synuclein filaments formed in the presence of diverse co-factors to better understand molecular basis of diverse molecular conformations of α-synuclein filaments.

Related Results

North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
<span style="font-size: 11pt; color: black; font-family: 'Times New Roman','serif'">&Pi;&Eta;&Lambda;&Iota;&Nu;&Alpha; &Iota;&Gamma;&Delta...
Un manoscritto equivocato del copista santo Theophilos († 1548)
Un manoscritto equivocato del copista santo Theophilos († 1548)
<p><font size="3"><span class="A1"><span style="font-family: 'Times New Roman','serif'">&Epsilon;&Nu;&Alpha; &Lambda;&Alpha;&Nu;&...
Uncovering the role of Tau protein in the regulation of glucose homeostasis
Uncovering the role of Tau protein in the regulation of glucose homeostasis
Exploration du rôle de la protéine Tau dans la régulation de l'homéostasie du glucose Tau est une protéine associée au microtubule, bien caractérisée pour son rôle ...
Human co-culture models of tau pathology
Human co-culture models of tau pathology
Tauopathies are neurodegenerative diseases marked by the accumulation of aggregated tau protein, leading to disruptions in neuronal function. Human induced pluripotent stem cell (i...
Tau Protein: Targets And Development Against Alzheimer’s Disease
Tau Protein: Targets And Development Against Alzheimer’s Disease
The clinical manifestations of Alzheimer's disease (AD) and associated human tauopathies are driven by tau neuronal and glial abnormalities. Tau, a microtubule-associated protein i...
Novel β-synuclein Rearrangements in tumor
Novel β-synuclein Rearrangements in tumor
Abstract Purpose The synuclein family includes a-, b-, g-synuclein and is predominantly expressed in neurons. a- and b-synuclein is mutated in Parkinson's disease and demen...

Back to Top