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DILP 6

an IGF-like peptide secreted from fat and glial cells, regulate postfeeding and nonfeeding growth in Drosophila

Diverse systemic signals stimulate niche cells to secrete insulin-like peptides. Such insulin-like peptides (e.g.  DILP6 and DILP3) bind to cognate receptors expressed by stem cells and change their behavior, triggering growth and proliferation.

See the perspectives in  “Insulin Finds its Niche.”  by  Seth W. Cheetham, and Andrea H. Brand, Science  340, 817-818, May 17, 2013.

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Drosophila insulin-like peptide-6 (dilp6) expression from fat body extends lifespan and represses secretion of Drosophila insulin-like peptide-2 from the brain.

Reduced insulin/IGF signaling extends lifespan in diverse species, including Drosophila melanogaster where the genome encodes seven insulin-like peptides (dilp1-7). Of these, reduced dilp2 expressed in the brain has been associated with longevity assurance when over-expression of dfoxo in fat bodies extends lifespan. Here, we show that the insulin-regulated transcription factor dFOXO positively modulates dilp6 mRNA in adult fat body. Over-expression of dilp6 in adult fat body extends lifespan and increases longevity-associated metabolic phenotypes. Adult fat body dilp6 expression represses dilp2 and dilp5 mRNA in the brain, and the secretion of DILP2 into the hemolymph. The longevity benefit of expressing dfoxo in fat body, and the nonautonomous effect of fat body dfoxo upon brain dilp expression, is blocked by simultaneously repressing dilp6 by RNAi in fat body. dilp6 thus appears to bridge dFOXO, adipose tissue and brain endocrine function to regulate Drosophila longevity.

Bai H, Kang P, Tatar M., Aging Cell. 2012 Dec;11(6):978-85. doi: 10.1111/acel.12000. Epub 2012 Sep 18.

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Fat cells reactivate quiescent neuroblasts via TOR and glial insulin relays in Drosophila.

Sousa-Nunes R, Yee LL, Gould AP. et al, Nature. 2011 Mar 24;471(7339):508-12. doi: 10.1038/nature09867. Epub 2011 Feb 23.

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A fat body-derived IGF-like peptide regulates postfeeding growth in Drosophila.

Okamoto N, YOkamoto N, Yamanaka N et al, Dev Cell. 2009 Dec;17(6):885-91. doi: 10.1016/j.devcel.2009.10.008.

Schematic diagram of the disulfide bridges structure and the alignments of the predicted A and B chains of DILP6 with the five previously characterized Drosophila ILPs and representative members of the human insulin-like family of peptides.

DILP 8

%DILP%


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