Transmembrane and coiled-coil 2 associates with Alzheimer's disease pathology in the human brain

Paul C R Hopkins1, Claire Troakes2, Andrew King2

  • 1Centre for Developmental Neurobiology, King's College London, London, UK.

Insights

Transmembrane and coiled-coil 2 (TMCC2) protein interacts with amyloid precursor protein (APP) and is linked to Alzheimer's disease (AD) pathology, particularly dense core plaques and altered in Down syndrome AD.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Genetics

Background:

  • Transmembrane and coiled-coil 2 (TMCC2) is homologous to Drosophila dementin, linked to neurodegeneration.
  • TMCC2 and dementin interact with amyloid precursor protein (APP), a key factor in Alzheimer's disease (AD).

Purpose of the Study:

  • To investigate the role of human TMCC2 in neurodegeneration mechanisms, specifically in Alzheimer's disease.
  • To examine TMCC2 expression and its association with AD pathology in human brain samples.

Main Methods:

  • Dual immunocytochemistry to assess TMCC2 and APP co-localization in human temporal cortex.
  • Analysis of TMCC2 expression in late-onset AD, familial AD (APP Val717 mutation), and Down syndrome AD brains.
  • Western blot analysis to identify TMCC2 protein isoforms in human brain extracts.

Main Results:

  • TMCC2 and APP showed similar distributions in control human temporal cortex.
  • In late-onset AD, TMCC2 immunoreactivity localized to dense core senile plaques and neuronal dystrophies, not diffuse plaques or tauopathy.
  • Down syndrome AD exhibited distinct TMCC2-immunoreactive features, suggesting enhanced pathological alteration.
  • Human brain TMCC2 exists as multiple isoforms, with abundance varying by brain region and influenced by APOE genotype and dementia status.

Conclusions:

  • Human TMCC2 is implicated in AD pathogenesis through its interaction with APP and association with dense core plaques.
  • TMCC2 shows altered expression and pathology in Down syndrome AD, indicating a specific role in this condition.
  • TMCC2 protein isoforms and their regulation are influenced by genetic factors (APOE) and disease status in the human brain.