BDNF and Huntingtin protein modifications by manganese: implications for striatal medium spiny neuron pathology in

Kirstie H Stansfield1, Terry Jo Bichell, Aaron B Bowman

  • 1Department of Environmental Health Sciences, Mailman School of Public Health, Columbia University, New York, New York, USA.

Insights

Manganese (Mn) exposure reduces brain-derived neurotrophic factor (BDNF) levels and alters Huntingtin (Htt) protein, impacting medium spiny neuron (MSN) health. This suggests Mn may harm MSN structure by disrupting crucial neurotrophic support pathways.

Area of Science:

  • Neuroscience
  • Environmental Toxicology
  • Molecular Biology

Background:

  • High manganese (Mn) exposure is known to impair medium spiny neuron (MSN) morphology.
  • The Huntingtin (HTT) gene and its protein product are critical for brain-derived neurotrophic factor (BDNF) support of MSNs.
  • Mn is a potential environmental factor influencing Huntington's disease pathology.

Purpose of the Study:

  • To investigate if Mn exposure-induced changes in MSN dendritic morphology are linked to decreased BDNF levels.
  • To examine the association between Mn exposure, BDNF, and alterations in Huntingtin (Htt) protein.

Main Methods:

  • Assessed BDNF levels in Mn-exposed non-human primates and mice.
  • Analyzed proBDNF and mature BDNF in cultured neurons exposed to Mn.
  • Examined Htt protein phosphorylation and total levels in Mn-exposed neurons.

Main Results:

  • Mn exposure decreased striatal BDNF in primates and mice.
  • Reduced BDNF levels were observed in Mn-exposed neuronal cultures.
  • Mn exposure altered Htt phosphorylation and increased total Htt in neurons.

Conclusions:

  • Mn exposure is associated with decreased BDNF levels in the brain.
  • Alterations in Htt protein phosphorylation and levels occur with Mn exposure.
  • These findings support the hypothesis that Mn-induced MSN pathology involves reduced BDNF trophic support due to Htt pathway disruption.