← Explorer/Network

Compromised paraspeckle formation as a pathogenic factor in FUSopathies

Shelkovnikova TA, Robinson HK, Troakes C +2 more2014Human Molecular GeneticsJournal Article
10.1093/hmg/ddt622PubMedFree full text
Neurological

Abstract

Paraspeckles are nuclear bodies formed by a set of specialized proteins assembled on the long non-coding RNA NEAT1; they have a role in nuclear retention of hyperedited transcripts and are associated with response to cellular stress. Fused in sarcoma (FUS) protein, linked to a number of neurodegenerative disorders, is an essential paraspeckle component. We have shown that its recruitment to these nuclear structures is mediated by the N-terminal region and requires prion-like activity. FUS interacts with p54nrb/NONO, a major constituent of paraspeckles, in an RNA-dependent manner and responds in the same way as other paraspeckle proteins to alterations in cellular homeostasis such as changes in transcription rates or levels of protein methylation. FUS also regulates NEAT1 levels and paraspeckle formation in cultured cells, and FUS deficiency leads to loss of paraspeckles. Pathological gain-of-function FUS mutations might be expected to affect paraspeckle function in human diseases because mislocalized amyotrophic lateral sclerosis (ALS)-linked FUS variants sequester other paraspeckle proteins into aggregates formed in cultured cells and into neuronal inclusions in a transgenic mouse model of FUSopathy. Furthermore, we detected abundant p54nrb/NONO-positive inclusions in motor neurons of patients with familial forms of ALS caused by FUS mutations, but not in other ALS cases. Our results suggest that both loss and gain of FUS function can trigger disruption of paraspeckle assembly, which may impair protective responses in neurons and thereby contribute to the pathogenesis of FUSopathies.

Key Biomarkers

FUS mutationsFUS proteinNEAT1p54nrb/NONOparaspeckles

Symptom Clusters

amyotrophic lateral sclerosismotor neuron diseaseneurodegeneration

References (1)

  • The long non-coding RNA nuclear-enriched abundant transcript 1_2 induces paraspeckle formation in the motor neuron during the early phase of amyotrophic lateral sclerosisMolecular Brain · 2013

Related Papers

  • Association of mold exposure and solid household fuel use with depression and anxiety among older adults in ChinaEnvironmental Health · 2025 · 1 shared tag
  • Pain, Fear, Anxiety, and Stress: Relations to the Endogenous Opioid SystemAdvances in neurobiology · 2024 · 1 shared tag
  • Probing the VIPR2 Microduplication Linkage to Schizophrenia in Animal and Cellular ModelsFrontiers in Neuroscience · 2021 · 1 shared tag
  • CGRP sensory neurons promote tissue healing via neutrophils and macrophagesNature · 2024 · 1 shared tag
  • High Value Phycotoxins From the Dinoflagellate ProrocentrumFrontiers in Marine Science · 2021 · 1 shared tag
  • Invited review: Mechanisms of hypophagia during diseaseJournal of Dairy Science · 2021 · 1 shared tag