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Publication : Transcriptome of pancreas-specific Bmpr1a-deleted islets links to TPH1-5-HT axis.

First Author  Jiang FX Year  2015
Journal  Biol Open Volume  4
Issue  8 Pages  1016-23
PubMed ID  26187948 Mgi Jnum  J:226073
Mgi Id  MGI:5695728 Doi  10.1242/bio.011858
Citation  Jiang FX, et al. (2015) Transcriptome of pancreas-specific Bmpr1a-deleted islets links to TPH1-5-HT axis. Biol Open 4(8):1016-23
abstractText  Bone morphogenetic protein (BMP) signaling is crucial for the development and function of numerous organs, but its role on the function of pancreatic islets is not completely clear. To explore this question, we applied the high throughput transcriptomic analyses on the islets isolated from mice with a pancreas-specific deletion of the gene, Bmpr1a, encoding the type 1a BMP receptor. Consistently, these pBmpr1aKO mice had impaired glucose homeostasis at 3 months, and were more severely affected at 12 months of age. These had lower fasting blood insulin concentrations, with reduced expression of several key regulators of beta-cell function. Importantly, transcriptomic profiling of 3-month pBmpr1aKO islets and bioinformatic analyses revealed abnormal expression of 203 metabolic genes. Critically among these, the tryptophan hydroxylase 1 gene (Tph1), encoding the rate-limiting enzyme for the production of 5-hydroxytryptamine (5-HT) was the highest over-expressed one. 5-HT is an important regulator of insulin secretion from beta cells. Treatment with excess 5-HT inhibited this secretion. Thus our transcriptomic analysis links two highly conserved molecular pathways the BMP signaling and the TPH1-5-HT axis on glucose homeostasis.
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