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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.
Abstract:
Transmembrane and coiled-coil 2 (TMCC2) is a human orthologue of the Drosophila gene dementin, mutant alleles of which cause neurodegeneration with features of Alzheimer's disease (AD). TMCC2 and Dementin further have an evolutionarily conserved interaction with the amyloid protein precursor (APP), a protein central to AD pathogenesis. To investigate if human TMCC2 might also participate in mechanisms of neurodegeneration, we examined TMCC2 expression in late onset AD human brain and age-matched controls, familial AD cases bearing a mutation in APP Val717, and Down syndrome AD. Consistent with previous observations of complex formation between TMCC2 and APP in the rat brain, the dual immunocytochemistry of control human temporal cortex showed highly similar distributions of TMCC2 and APP. In late onset AD cases stratified by APOE genotype, TMCC2 immunoreactivity was associated with dense core senile plaques and adjacent neuronal dystrophies, but not with Aβ surrounding the core, diffuse Aβ plaques or tauopathy. In Down syndrome AD, we observed in addition TMCC2-immunoreactive and methoxy-X04-positive pathological features that were morphologically distinct from those seen in the late onset and familial AD cases, suggesting enhanced pathological alteration of TMCC2 in Down syndrome AD. At the protein level, western blots of human brain extracts revealed that human brain-derived TMCC2 exists as at least three isoforms, the relative abundance of which varied between the temporal gyrus and cerebellum and was influenced by APOE and/or dementia status. Our findings thus implicate human TMCC2 in AD via its interactions with APP, its association with dense core plaques, as well as its alteration in Down syndrome AD.
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.
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