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Cytoplasmic Mislocalization of RNA Polymerase II Subunit RPB1 in Alzheimer Disease Is Linked to Pathologic Tau
John R Dickson1,2, Hyejin Yoon1,2, Matthew P Frosch2,3
1From the Department of Neurology, MassGeneral Institute for Neurodegenerative Disease, Massachusetts General Hospital, Charlestown, Massachusetts.
Abstract:
Abnormal protein accumulation and mislocalization is a general hallmark of Alzheimer disease. Recent data suggest nucleocytoplasmic transport may be compromised by tau in Alzheimer disease. In this context, we have examined the RNA polymerase II subunit RPB1, which is the catalytic subunit that plays a critical role in transcription. Using immunofluorescence staining in control and Alzheimer disease hippocampal tissue, we show that 2 phosphoisoforms of RPB1 mislocalize from the nucleus to the cytoplasm of neurons in Alzheimer disease. The number of neurons with this cytoplasmic mislocalization is correlated with the burden of pathologic tau (AT8-immunopositive neurons). In order to test whether there is a causal relationship between pathologic tau and cytoplasmic RPB1 accumulation, we used the rTg4510 mouse model, which expresses a regulatable pathologic human tau species harboring the P301L mutation. Using immunofluorescence staining on brain tissue from young (2.5-month-old) and aged (8.5- to 10-month-old) rTg4510 mice, we found a tau- and age-dependent increase in cytoplasmic mislocalization of Rpb1. In summary, this study provides evidence that tau induces mislocalization of RPB1 in Alzheimer disease, and since RPB1 is essential for transcription, this raises the possibility that RPB1 mislocalization could lead to fundamental alterations in neuronal health.
Insights
Pathologic tau in Alzheimer disease causes the mislocalization of RNA polymerase II subunit RPB1 from the nucleus to the cytoplasm. This RPB1 mislocalization may disrupt neuronal transcription and health.
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Biology
Background:
- Abnormal protein accumulation and mislocalization are hallmarks of Alzheimer disease (AD).
- Nucleocytoplasmic transport may be impaired by tau pathology in AD.
Purpose of the Study:
- To investigate the role of the RNA polymerase II subunit RPB1 in Alzheimer disease.
- To determine if tau pathology causes RPB1 mislocalization in AD.
Main Methods:
- Immunofluorescence staining of human hippocampal tissue and the rTg4510 mouse model.
- Analysis of RPB1 phosphoisoforms and their localization in neurons.
- Correlation of RPB1 mislocalization with tau burden and age in mouse models.
Main Results:
- Two RPB1 phosphoisoforms mislocalized from the nucleus to the cytoplasm in neurons of AD patients.
- Cytoplasmic RPB1 mislocalization correlated with the burden of pathologic tau (AT8-positive neurons).
- Tau and age-dependent increase in RPB1 cytoplasmic mislocalization observed in the rTg4510 mouse model.
Conclusions:
- Tau pathology induces the mislocalization of RPB1 in Alzheimer disease.
- RPB1 mislocalization may lead to transcriptional dysregulation and impact neuronal health in AD.
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