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- Interrupted Glucagon Signaling Reveals Hepatic α Cell Axis and Role for L-Glutamine in α Cell Proliferation.
Interrupted Glucagon Signaling Reveals Hepatic α Cell Axis and Role for L-Glutamine in α Cell Proliferation.
Citation | “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 |
Featured
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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
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Volume |
25
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Issue |
6
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Number of Pages |
1362-1373.e5
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Date Published |
06/2017
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ISSN Number |
1932-7420
|
DOI |
10.1016/j.cmet.2017.05.011
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Alternate Journal |
Cell Metab.
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PMID |
28591638
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PMCID |
PMC5572896
|
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