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Disruption of REDD1 Gene Ameliorates Sepsis-induced Decrease in MTORC1 Signaling but Has Divergent Effects on Proteolytic Signaling in Skeletal Muscle

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Date 2015 Oct 22
PMID 26487002
Citations 18
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Abstract

Sepsis-induced skeletal muscle atrophy and weakness are due in part to decreased mTORC1-mediated protein synthesis and increased proteolysis via the autophagy-lysosomal system and ubiquitin-proteasome pathway. The REDD1 (regulated in development and DNA damage-1) protein is increased in sepsis and can negatively regulate mTORC1 activity. However, the contribution of REDD1 to the sepsis-induced change in muscle protein synthesis and degradation has not been determined. Sepsis was produced by cecal ligation and puncture in female REDD1(-/-) or wild-type (WT) mice, and end points were assessed 24 h later in gastrocnemius; time-matched, pair-fed controls of each genotype were included. Sepsis increased REDD1 protein 300% in WT mice, whereas REDD1 was absent in REDD1(-/-) muscle. Sepsis decreased protein synthesis and phosphorylation of downstream targets of mTORC1 (S6K1 Thr(389), rpS6 Ser(240/244), 4E-BP1 Ser(65)) in WT but not REDD1(-/-) mice. However, Akt and PRAS40 phosphorylation was suppressed in both sham and septic muscle from REDD1(-/-) mice despite unaltered PDK1, PP2A, or TSC2 expression. Sepsis increased autophagy as indicated by decreased ULK1 Ser(757) phosphorylation and p62 abundance and increased LC3B-II/I in WT mice, whereas these changes were absent in septic REDD1(-/-) mice. Conversely, REDD1 deletion did not prevent the sepsis-induced decrease in IGF-I mRNA or the concomitant increase in IL-6, TNFα, MuRF1, and atrogin1 mRNA expression. Lastly, 5-day survival in a separate set of septic mice did not differ between WT and REDD1(-/-) mice. These data highlight the central role of REDD1 in regulating both protein synthesis and autophagy in skeletal muscle during sepsis.

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References
1.
Lang C, Silvis C, Deshpande N, Nystrom G, Frost R . Endotoxin stimulates in vivo expression of inflammatory cytokines tumor necrosis factor alpha, interleukin-1beta, -6, and high-mobility-group protein-1 in skeletal muscle. Shock. 2003; 19(6):538-46. DOI: 10.1097/01.shk.0000055237.25446.80. View

2.
Browne G, Finn S, Proud C . Stimulation of the AMP-activated protein kinase leads to activation of eukaryotic elongation factor 2 kinase and to its phosphorylation at a novel site, serine 398. J Biol Chem. 2004; 279(13):12220-31. DOI: 10.1074/jbc.M309773200. View

3.
Ueda T, Watanabe-Fukunaga R, Fukuyama H, Nagata S, Fukunaga R . Mnk2 and Mnk1 are essential for constitutive and inducible phosphorylation of eukaryotic initiation factor 4E but not for cell growth or development. Mol Cell Biol. 2004; 24(15):6539-49. PMC: 444855. DOI: 10.1128/MCB.24.15.6539-6549.2004. View

4.
Frost R, Lang C . Alteration of somatotropic function by proinflammatory cytokines. J Anim Sci. 2004; 82 E-Suppl:E100-109. DOI: 10.2527/2004.8213_supplE100x. View

5.
Tiao G, Fagan J, Samuels N, James J, Hudson K, Lieberman M . Sepsis stimulates nonlysosomal, energy-dependent proteolysis and increases ubiquitin mRNA levels in rat skeletal muscle. J Clin Invest. 1994; 94(6):2255-64. PMC: 330052. DOI: 10.1172/JCI117588. View