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

Progressive alterations in polysomal architecture and activation of ribosome stalling relief factors in a mouse model of Huntington’s disease

View through CrossRef
Abstract Given their highly polarized morphology and functional singularity, neurons require precise spatial and temporal control of protein synthesis. Alterations in protein translation have been implicated in the development and progression of a wide range of neurological and neurodegenerative disorders, including Huntington’s disease (HD). In this study we examined the architecture of polysomes in their native brain context in striatal tissue from the zQ175 knock-in mouse model of HD. We performed 3D electron tomography of high-pressure frozen and freeze-substituted striatal tissue from HD models and corresponding controls at different ages. Electron tomography results revealed progressive remodelling towards a more compacted polysomal architecture in the mouse model, an effect that coincided with the emergence and progression of HD related symptoms. The aberrant polysomal architecture is compatible with ribosome stalling phenomena. In fact, we also detected in the zQ175 model an increase in the striatal expression of the stalling relief factor EIF5A2 and an increase in the accumulation of eIF5A1, eIF5A2 and hypusinated eIF5A1, the active form of eIF5A1. Polysomal sedimentation gradients showed differences in the relative accumulation of 40S ribosomal subunits and in polysomal distribution in striatal samples of the zQ175 model. These findings indicate that changes in the architecture of the protein synthesis machinery may underlie translational alterations associated with HD, opening new avenues for understanding the progression of the disease.
Title: Progressive alterations in polysomal architecture and activation of ribosome stalling relief factors in a mouse model of Huntington’s disease
Description:
Abstract Given their highly polarized morphology and functional singularity, neurons require precise spatial and temporal control of protein synthesis.
Alterations in protein translation have been implicated in the development and progression of a wide range of neurological and neurodegenerative disorders, including Huntington’s disease (HD).
In this study we examined the architecture of polysomes in their native brain context in striatal tissue from the zQ175 knock-in mouse model of HD.
We performed 3D electron tomography of high-pressure frozen and freeze-substituted striatal tissue from HD models and corresponding controls at different ages.
Electron tomography results revealed progressive remodelling towards a more compacted polysomal architecture in the mouse model, an effect that coincided with the emergence and progression of HD related symptoms.
The aberrant polysomal architecture is compatible with ribosome stalling phenomena.
In fact, we also detected in the zQ175 model an increase in the striatal expression of the stalling relief factor EIF5A2 and an increase in the accumulation of eIF5A1, eIF5A2 and hypusinated eIF5A1, the active form of eIF5A1.
Polysomal sedimentation gradients showed differences in the relative accumulation of 40S ribosomal subunits and in polysomal distribution in striatal samples of the zQ175 model.
These findings indicate that changes in the architecture of the protein synthesis machinery may underlie translational alterations associated with HD, opening new avenues for understanding the progression of the disease.

Related Results

Ribosome stalling facilitates chloroplast targeting of nuclear-encoded proteins
Ribosome stalling facilitates chloroplast targeting of nuclear-encoded proteins
Abstract Ribosomes translate mRNAs with variable elongation rates and frequently undergo transient stalling. Although ribosome stalling is known ...
Dynamic Simulation to Determine Governing Relief Load for De-Methanizer System
Dynamic Simulation to Determine Governing Relief Load for De-Methanizer System
Abstract The existing design of de-methanizer column relief system is re-validated to ensure process safety and integrity. Relief load estimation for de-methanizer b...
Altered behavioral responses to gamma‐aminobutyric acid pharmacological agents in a mouse model of Huntington's disease
Altered behavioral responses to gamma‐aminobutyric acid pharmacological agents in a mouse model of Huntington's disease
ABSTRACTBackground: Disruptions in gamma‐aminobutyric (GABA) acid signaling are believed to be involved in Huntington's disease pathogenesis, but the regulation of GABAergic signal...
The architecture of differences
The architecture of differences
Following in the footsteps of the protagonists of the Italian architectural debate is a mark of culture and proactivity. The synthesis deriving from the artistic-humanistic factors...
Ribosome Biogenesis Alterations in Colorectal Cancer
Ribosome Biogenesis Alterations in Colorectal Cancer
Many studies have focused on understanding the regulation and functions of aberrant protein synthesis in colorectal cancer (CRC), leaving the ribosome, its main effector, relativel...
Kinetic modeling predicts a role for ribosome collisions at elongation stall sites in bacteria
Kinetic modeling predicts a role for ribosome collisions at elongation stall sites in bacteria
Abstract Ribosomes can stall during translation elongation in bacteria and eukaryotes. To identify mechanisms by which ribosome stalling affects ...

Back to Top