Many studies have highlighted the role of dysregulated glucagon secretion in the etiology of
hyperglycemia and diabetes. Accordingly, understanding the mechanisms underlying pancreatic
islet ? cell development and function has important implications for the discovery of new
therapies for diabetes. In this study, comparative transcriptome analyses between embryonic
mouse pancreas and adult mouse islets identified several pancreatic lncRNAs that lie in close
proximity to essential pancreatic transcription factors, including the Pax6-associated
lncRNA Paupar. We demonstrate that Paupar is enriched in glucagon-producing ? cells where it
promotes the alternative splicing of Pax6 to an isoform required for activation of essential ??cell
genes. Consistently, deletion of Paupar in mice resulted in dysregulation of PAX6 ? cell target
genes and corresponding ? cell dysfunction, including blunted glucagon secretion. These
findings illustrate a distinct mechanism by which a pancreatic lncRNA can coordinate glucose
homeostasis by cell-specific regulation of a broadly expressed transcription factor.
Revised: June 10, 2020 |
Published: December 3, 2019
Citation
Singer R.A., L. Arnes, Y. Cui, J. Wang, Y. Gao, M. Guney, and K.E. Burnum-Johnson, et al. 2019.The Long Noncoding RNA Paupar Modulates PAX6 Regulatory Activities to Promote Alpha Cell Development and Function.Cell Metabolism 30, no. 6:1091-1106.e8.PNNL-SA-146887.doi:10.1016/j.cmet.2019.09.013