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Publication : Loss of huntingtin-associated protein 1 impairs insulin secretion from pancreatic β-cells.

First Author  Cape A Year  2012
Journal  Cell Mol Life Sci Volume  69
Issue  8 Pages  1305-17
PubMed ID  21544547 Mgi Jnum  J:196050
Mgi Id  MGI:5486441 Doi  10.1007/s00018-011-0692-8
Citation  Cape A, et al. (2012) Loss of huntingtin-associated protein 1 impairs insulin secretion from pancreatic beta-cells. Cell Mol Life Sci 69(8):1305-17
abstractText  Hap1 was originally identified as a neuronal protein that interacts with huntingtin, the Huntington's disease (HD) protein. Later studies revealed that Hap1 participates in intracellular trafficking in neuronal cells and that this trafficking function can be adversely affected by mutant huntingtin. Hap1 is also present in pancreatic beta-cells and other endocrine cells; however, the role of Hap1 in these endocrine cells remains unknown. Using the Cre-loxP system, we generated conditional Hap1 knockout mice to selectively deplete the expression of Hap1 in mouse pancreatic beta-cells. Mutant mice with Hap1 deficiency in pancreatic beta-cells had impaired glucose tolerance and decreased insulin release in response to intraperitoneally injected glucose. Using cultured pancreatic beta-cell lines and isolated mouse pancreatic islets, we confirmed that decreasing Hap1 could reduce glucose-mediated insulin release. Electron microscopy suggested that there was a reduced number of insulin-containing vesicles docked at the plasma membrane of pancreatic islets in Hap1 mutant mice following intraperitoneal glucose injection. Glucose treatment decreased the phosphorylation of Hap1A in cultured beta-cells and in mouse pancreatic tissues. Moreover, this glucose treatment increased Hap1's association with kinesin light chain and dynactin p150, both of which are involved in microtubule-dependent trafficking. These studies suggest that Hap1 is important for insulin release from beta-cells via dephosphorylation that can regulate its intracellular trafficking function.
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