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Interrupted Glucagon Signaling Reveals Hepatic α Cell Axis and Role for L-Glutamine in α Cell Proliferation.

Citation
Dean, D., et al. “Interrupted Glucagon Signaling Reveals Hepatic Α Cell Axis And Role For L-Glutamine In Α Cell Proliferation.”. Cell Metabolism, pp. 1362-1373.e5.
Center Vanderbilt University
Featured
Author Danielle Dean, Mingyu Li, Nripesh Prasad, Scott N Wisniewski, Alison Von Deylen, Jason Spaeth, Lisette Maddison, Anthony Botros, Leslie R Sedgeman, Nadejda Bozadjieva, Olga Ilkayeva, Anastasia Coldren, Greg Poffenberger, Alena Shostak, Michael C Semich, Kristie I Aamodt, Neil Phillips, Hai Yan, Ernesto Bernal-Mizrachi, Jackie D Corbin, Kasey C Vickers, Shawn E Levy, Chunhua Dai, Christopher Newgard, Wei Gu, Roland Stein, Wenbiao Chen, Alvin C Powers
Keywords Slc38a5, alpha cell, amino acid, amino acid transport, glucagon, glucagon receptor, glutamine, liver, pancreatic islet, proliferation
Abstract

Decreasing glucagon action lowers the blood glucose and may be useful therapeutically for diabetes. However, interrupted glucagon signaling leads to α cell proliferation. To identify postulated hepatic-derived circulating factor(s) responsible for α cell proliferation, we used transcriptomics/proteomics/metabolomics in three models of interrupted glucagon signaling and found that proliferation of mouse, zebrafish, and human α cells was mTOR and FoxP transcription factor dependent. Changes in hepatic amino acid (AA) catabolism gene expression predicted the observed increase in circulating AAs. Mimicking these AA levels stimulated α cell proliferation in a newly developed in vitro assay with L-glutamine being a critical AA. α cell expression of the AA transporter Slc38a5 was markedly increased in mice with interrupted glucagon signaling and played a role in α cell proliferation. These results indicate a hepatic α islet cell axis where glucagon regulates serum AA availability and AAs, especially L-glutamine, regulate α cell proliferation and mass via mTOR-dependent nutrient sensing.

Year of Publication
2017
Journal
Cell metabolism
Volume
25
Issue
6
Number of Pages
1362-1373.e5
Date Published
06/2017
ISSN Number
1932-7420
DOI
10.1016/j.cmet.2017.05.011
Alternate Journal
Cell Metab.
PMID
28591638
PMCID
PMC5572896
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