Publications by authors named "M Mochi"

Defects at the neuromuscular junction (NMJ) are among the earliest hallmarks of amyotrophic lateral sclerosis (ALS). According to the "dying-back" hypothesis, NMJ disruption not only precedes but also triggers the subsequent degeneration of motoneurons in both sporadic (sALS) and familial (fALS) ALS. Using human induced pluripotent stem cells (iPSCs), we show that the RNA-binding protein HuD (ELAVL4) contributes to NMJ defects and apoptosis in FUS-ALS.

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Early defects at the neuromuscular junction (NMJ) are among the first hallmarks of the progressive neurodegenerative disease amyotrophic lateral sclerosis (ALS). According to the "dying back" hypothesis, disruption of the NMJ not only precedes, but is also a trigger for the subsequent degeneration of the motoneuron in both sporadic and familial ALS, including ALS caused by the severe pathogenic variant P525L. However, the mechanisms linking genetic and environmental factors to NMJ defects remain elusive.

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The main goal of this review is to provide an updated overview of the involvement of the RNA-binding protein (RBP) HuD, encoded by the ELAVL4 gene, in nervous system development, maintenance, and function, and its emerging role in nervous system diseases. A particular focus is on recent studies reporting altered HuD levels, or activity, in disease models and patients. Substantial evidence suggests HuD involvement in Parkinson's disease (PD), Alzheimer's disease (AD), and amyotrophic lateral sclerosis (ALS).

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Article Synopsis
  • Mutations in the RNA-binding protein FUS are linked to amyotrophic lateral sclerosis (ALS), affecting neuronal RNA metabolism through the regulation of other RBPs like HuD and FMRP.
  • The presence of mutant FUS leads to higher levels of HuD, which stabilizes certain target transcripts (NRN1 and GAP43) and causes motoneurons to exhibit increased axon branching and growth after injury.
  • These findings suggest that enhanced axonal growth and branching may be an early common event in the development of ALS, as similar results have been observed in SOD1 and TDP-43 mutant models.
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Essentials Ultrasound elastography uses tissue deformation to assess the relative quantification of its elasticity. Compression and duplex ultrasonography may be unable to correctly determine the thrombus age. Ultrasound elastography may be useful to distinguish between acute and chronic deep vein thrombosis.

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