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  • Gastrin Induces Nuclear Export and Proteasome Degradation of Menin in Enteric Glial Cells.

Gastrin Induces Nuclear Export and Proteasome Degradation of Menin in Enteric Glial Cells.

Gastroenterology (2017-09-02)
Sinju Sundaresan, Cameron A Meininger, Anthony J Kang, Amanda L Photenhauer, Michael M Hayes, Nirakar Sahoo, Jolanta Grembecka, Tomasz Cierpicki, Lin Ding, Thomas J Giordano, Tobias Else, David J Madrigal, Malcolm J Low, Fiona Campbell, Ann-Marie Baker, Haoxing Xu, Nicholas A Wright, Juanita L Merchant
摘要

The multiple endocrine neoplasia, type 1 (MEN1) locus encodes the nuclear protein and tumor suppressor menin. MEN1 mutations frequently cause neuroendocrine tumors such as gastrinomas, characterized by their predominant duodenal location and local metastasis at time of diagnosis. Diffuse gastrin cell hyperplasia precedes the appearance of MEN1 gastrinomas, which develop within submucosal Brunner's glands. We investigated how menin regulates expression of the gastrin gene and induces generation of submucosal gastrin-expressing cell hyperplasia. Primary enteric glial cultures were generated from the VillinCre:Men1 Enteric glial cells that stained positive for glial fibrillary acidic protein (GFAP+) expressed gastrin de novo through a mechanism that required PKA. Gastrin-induced nuclear export of menin via cholecystokinin B receptor (CCKBR)-mediated activation of PKA. Once exported from the nucleus, menin was ubiquitinated and degraded by the proteasome. GFAP and other markers of enteric glial cells (eg, p75 and S100B), colocalized with gastrin in human duodenal gastrinomas. MEN1-associated gastrinomas, which develop in the submucosa, might arise from enteric glial cells through hormone-dependent PKA signaling. This pathway disrupts nuclear menin function, leading to hypergastrinemia and associated sequelae.

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Sigma-Aldrich
抗胶质纤维酸性蛋白(GFAP)抗体, serum, Chemicon®
Sigma-Aldrich
腺苷-3′,5′-环单磷酸 三羟甲基氨基甲烷盐, ≥97% (HPLC), powder