Abnormal Golgi morphology and decreased COPI function in cells with low levels of SMN

S K Custer1, J N Foster1, J W Astroski1

  • 1Walther Hall, R3 C636, 980 West Walnut Street, Indianapolis, IN 46202, United States.

Brain Research
|November 9, 2018
PubMed

Insights

Abnormal Golgi apparatus morphology in spinal muscular atrophy (SMA) is linked to SMN protein deficiency. Restoring alpha-COP levels can rescue this defect, highlighting its role in SMA pathogenesis.

Area of Science:

  • Cell biology
  • Neuroscience
  • Genetics

Background:

  • Spinal muscular atrophy (SMA) is a severe genetic disorder characterized by motor neuron degeneration.
  • The survival motor neuron (SMN) protein is crucial for motor neuron function and survival.
  • Dysfunctional intracellular trafficking is implicated in SMA pathogenesis.

Purpose of the Study:

  • To investigate the role of Golgi apparatus morphology and intracellular trafficking in SMA.
  • To determine the involvement of the COPI coatomer complex in SMN-deficient cells.
  • To explore alpha-COP as a potential therapeutic target for SMA.

Main Methods:

  • Analysis of Golgi apparatus morphology in SMN-depleted motor neuron-like cells and SMA patient fibroblasts.
  • Rescue experiments involving SMN re-expression and alpha-COP overexpression.
  • Generation of a motor neuron-like cell line with inducible alpha-COP knockdown.
  • Assays to evaluate COPI-dependent intracellular trafficking, including protein sequestration, mRNA binding, and protein transport.

Main Results:

  • SMN depletion in motor neuron-like cells and SMA fibroblasts results in abnormal Golgi apparatus morphology.
  • This Golgi abnormality is SMN-dependent but can be rescued by expressing alpha-COP.
  • SMN-deficient cells exhibit impaired COPI-dependent intracellular trafficking.
  • Specific defects include failed plasma membrane protein sequestration, altered mRNA binding, and defective Golgi-resident protein transport.

Conclusions:

  • SMN deficiency disrupts Golgi apparatus morphology and COPI-dependent intracellular trafficking in motor neurons.
  • Alpha-COP plays a critical role in mitigating these defects, suggesting its therapeutic potential in SMA.
  • Targeting alpha-COP function may offer a novel strategy for treating SMA.

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