PKA- and Ca2+-dependent p38 MAPK/CREB activation protects against manganese-mediated neuronal apoptosis

Ganlin Zhu1, Yiming Liu1, Ye Zhi1

  • 1Department of Occupational Medicine and Environmental Toxicology, School of Public Health, Nantong University, Nantong 226019, China.

Toxicology Letters
|April 6, 2019
PubMed

Insights

Excessive manganese causes neurotoxicity, but cells adapt. The study reveals that p38 MAPK/CREB activation, via PKA and calcium, protects neurons by regulating BDNF, offering targets against manganese neurotoxicity.

Area of Science:

  • Neuroscience
  • Toxicology
  • Cell Biology

Background:

  • Manganese (Mn) is essential but toxic in excess, causing neurodegeneration.
  • Cellular adaptive responses to Mn neurotoxicity are not fully understood.
  • The role of CREB in Mn-induced neuronal apoptosis requires elucidation.

Purpose of the Study:

  • To investigate the role of CREB in Mn-induced neuronal apoptosis.
  • To identify signaling pathways involved in Mn neurotoxicity.
  • To explore potential therapeutic targets against Mn neurotoxicity.

Main Methods:

  • Utilized PC12 cells and mouse brain tissue.
  • Employed shRNA for CREB downregulation.
  • Assessed CREB phosphorylation, apoptosis, BDNF expression, PKA, p38 MAPK, JNK, and intracellular Ca2+ levels.

Main Results:

  • Mn increased CREB phosphorylation and apoptosis.
  • CREB downregulation exacerbated Mn-induced apoptosis by reducing BDNF.
  • Mn activated PKA, p38 MAPK, and JNK pathways.
  • p38 MAPK inhibition, PKA inhibition, and Ca2+ chelation affected CREB phosphorylation.

Conclusions:

  • p38 MAPK/CREB activation, mediated by PKA and increased intracellular Ca2+, alleviates Mn-induced neuronal apoptosis.
  • BDNF regulation is a key mechanism in this neuroprotective pathway.
  • Findings provide insights into Mn neurotoxicity mechanisms and potential therapeutic strategies.

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