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Published on: May 2, 2019
The Microtubule-Associated Protein Tau and Its Relevance for Pancreatic Beta Cells
Magdalena Maj1, Gregor Hoermann2, Sazan Rasul1
1Department of Internal Medicine III, Division of Nephrology and Dialysis, Medical University of Vienna, 1090 Vienna, Austria.
Abstract:
Structural and biochemical alterations of the microtubule-associated protein tau (MAPT) are associated with degenerative disorders referred to as tauopathies. We have previously shown that MAPT is present in human islets of Langerhans, human insulinomas, and pancreatic beta-cell line models, with biophysical similarities to the pathological MAPT in the brain. Here, we further studied MAPT in pancreatic endocrine tissue to better understand the mechanisms that lead to functional dysregulation of pancreatic beta cells. We found upregulation of MAPT protein expression in human insulinomas when compared to human pancreatic islets of Langerhans and an imbalance between MAPT isoforms in insulinomas tissue. We cloned one 3-repeat domain MAPT and transduced this into a beta-cell derived rodent cell line Rin-5F. Proliferation experiments showed higher growth rates and metabolic activities of cells overexpressing MAPT protein. We observed that a MAPT overexpressing cell line demonstrates altered insulin transcription, translation, and insulin secretion rates. We found the relative insulin secretion rates were significantly decreased in a MAPT overexpressing cell line and these findings could be confirmed using partial MAPT knock-down cell lines. Our findings support that MAPT may play an important role in insulin granule trafficking and indicate the importance of balanced MAPT phosphorylation and dephosphorylation for adequate insulin release.
Insights
Microtubule-associated protein tau (MAPT) is upregulated in insulinomas, affecting insulin secretion. Balanced MAPT is crucial for pancreatic beta-cell function and insulin release.
Area of Science:
- Endocrinology
- Neurobiology
- Cell Biology
Background:
- Microtubule-associated protein tau (MAPT) alterations are linked to tauopathies.
- MAPT is present in pancreatic islets and insulinomas, similar to brain pathology.
- Understanding MAPT's role in pancreatic beta cells is crucial for metabolic health.
Purpose of the Study:
- To investigate MAPT's role in pancreatic endocrine tissue.
- To elucidate mechanisms of functional dysregulation in pancreatic beta cells.
- To analyze MAPT expression and isoform balance in insulinomas versus islets.
Main Methods:
- Quantitative analysis of MAPT protein expression in human tissues.
- Cloning and transduction of a 3-repeat domain MAPT into Rin-5F cells.
- Assessment of cell proliferation, metabolic activity, insulin transcription, translation, and secretion.
Main Results:
- MAPT protein expression is upregulated in insulinomas compared to islets.
- Overexpression of MAPT in beta-cell models increased proliferation but decreased insulin secretion.
- Partial MAPT knockdown confirmed the inhibitory effect on insulin secretion.
Conclusions:
- MAPT plays a significant role in insulin granule trafficking.
- Balanced MAPT phosphorylation is essential for proper insulin release.
- MAPT dysregulation may contribute to pancreatic beta-cell dysfunction.
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