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Glucagon Couples Hepatic Amino Acid Catabolism to mTOR-Dependent Regulation of α-Cell Mass.

Authors :
Solloway, Mark J.
Madjidi, Azadeh
Gu, Chunyan
Eastham-Anderson, Jeff
Clarke, Holly J.
Kljavin, Noelyn
Zavala-Solorio, Jose
Kates, Lance
Friedman, Brad
Brauer, Matt
Wang, Jianyong
Fiehn, Oliver
Kolumam, Ganesh
Stern, Howard
Lowe, John B.
Peterson, Andrew S.
Allan, Bernard B.
Source :
Cell Reports; Jul2015, Vol. 12 Issue 3, p495-510, 16p
Publication Year :
2015

Abstract

Summary Understanding the regulation of islet cell mass has important implications for the discovery of regenerative therapies for diabetes. The liver plays a central role in metabolism and the regulation of endocrine cell number, but liver-derived factors that regulate α-cell and β-cell mass remain unidentified. We propose a nutrient-sensing circuit between liver and pancreas in which glucagon-dependent control of hepatic amino acid metabolism regulates α-cell mass. We found that glucagon receptor inhibition reduced hepatic amino acid catabolism, increased serum amino acids, and induced α-cell proliferation in an mTOR-dependent manner. In addition, mTOR inhibition blocked amino-acid-dependent α-cell replication ex vivo and enabled conversion of α-cells into β-like cells in vivo. Serum amino acids and α-cell proliferation were increased in neonatal mice but fell throughout postnatal development in a glucagon-dependent manner. These data reveal that amino acids act as sensors of glucagon signaling and can function as growth factors that increase α-cell proliferation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
26391856
Volume :
12
Issue :
3
Database :
Complementary Index
Journal :
Cell Reports
Publication Type :
Academic Journal
Accession number :
108433196
Full Text :
https://doi.org/10.1016/j.celrep.2015.06.034