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PMID: 14610086 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Amino acids and insulin control autophagic proteolysis through different signaling pathways in relation to mTOR in isolated rat hepatocytes.

The Journal of biological chemistry ·Vol. 279 ·No. 9 ·2004-02-27 ·Pages 8452-9

Kanazawa T, Taneike I, Akaishi R, Yoshizawa F, Furuya N, Fujimura S, Kadowaki M

Abstract

Autophagy, a major bulk proteolytic pathway, contributes to intracellular protein turnover, together with protein synthesis. Both are subject to dynamic control by amino acids and insulin. The mechanisms of signaling and cross-talk of their physiological anabolic effects remain elusive. Recent studies established that amino acids and insulin induce p70 S6 kinase (p70(S6k)) phosphorylation by mTOR, involved in translational control of protein synthesis. Here, the signaling mechanisms of amino acids and insulin in macroautophagy in relation to mTOR were investigated. In isolated rat hepatocytes, both regulatory amino acids (RegAA) and insulin coordinately activated p70(S6k) phosphorylation, which was completely blocked by rapamycin, an mTOR inhibitor. However, rapamycin blocked proteolytic suppression by insulin, but did not block inhibition by RegAA. These contrasting results suggest that insulin controls autophagy through the mTOR pathway, but amino acids do not. Furthermore, micropermeabilization with Saccharomyces aureus alpha-toxin completely deprived hepatocytes of proteolytic responsiveness to RegAA and insulin, but still maintained p70(S6k) phosphorylation by RegAA. In contrast, Leu(8)-MAP, a non-transportable leucine analogue, did not mimic the effect of leucine on p70(S6k) phosphorylation, but maintained the activity on proteolysis. Finally, BCH, a System L-specific amino acid, did not affect proteolytic suppression or mTOR activation by leucine. All the results indicate that mTOR is not common to the signaling mechanisms of amino acids and insulin in autophagy, and that the amino acid signaling starts extracellularly with their "receptor(s)," probably other than transporters, and is mediated through a novel route distinct from the mTOR pathway employed by insulin.

MeSH Terms
Amino Acids/pharmacology Amino Acids, Cyclic/pharmacology Animals Bacterial Toxins/pharmacology Cell Membrane/metabolism Enzyme Inhibitors/pharmacology Hemolysin Proteins/pharmacology Hepatocytes/drug effects,metabolism Insulin/pharmacology Leucine/analogs & derivatives,pharmacology Male Peptide Hydrolases/metabolism Phosphorylation Protein Kinase Inhibitors Protein Kinases/metabolism Rats Rats, Wistar Ribosomal Protein S6 Kinases, 70-kDa/metabolism Signal Transduction Sirolimus/pharmacology TOR Serine-Threonine Kinases
Chemicals
Amino Acids Amino Acids, Cyclic Bacterial Toxins Enzyme Inhibitors Hemolysin Proteins Insulin Protein Kinase Inhibitors staphylococcal alpha-toxin 2-aminobicyclo(2,2,1)heptane-2-carboxylic acid Protein Kinases mTOR protein, rat Ribosomal Protein S6 Kinases, 70-kDa TOR Serine-Threonine Kinases Peptide Hydrolases Leucine Sirolimus
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Kanazawa Takumi
Department of Applied Biological Chemistry, Faculty of Agriculture, Niigata University, Ikarashi, Niigata 950-2181, Japan.
Taneike Ikue
Akaishi Ryuichiro
Yoshizawa Fumiaki
Furuya Norihiko
Fujimura Shinobu
Kadowaki Motoni
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2004-02-27
Epub
2003-00-10
Pages
8452-9
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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