Forward chemical genetic approach identifies new role for GAPDH in insulin signaling

被引:65
作者
Min, Jaeki [1 ]
Kim, Yun Kyung
Cipriani, Patricia G.
Kang, Mira
Khersonsky, Sonya M.
Walsh, Daniel P.
Lee, Ji-Young
Niessen, Sherry
Yates, John R., III
Gunsalus, Kristin
Piano, Fabio
Chang, Young-Tae
机构
[1] NYU, Dept Chem, New York, NY 10003 USA
[2] NYU, Dept Biol, New York, NY 10003 USA
[3] Scripps Res Inst, Dept Cell Biol, La Jolla, CA 92037 USA
关键词
D O I
10.1038/nchembio833
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Insulin and insulin-like growth factor have an essential role in growth, development and the maintenance of metabolic homeostasis, including glucose uptake from the bloodstream. Researchers have identified mutations in insulin receptors that cause severe insulin resistance(1), and a temperature-sensitive daf-2 (a gene encoding an insulin receptor-like protein) mutant in Caenorhabditis elegans has served as an insulin resistance model(2). Here we report a forward chemical genetic approach with a tagged library that we used to identify a small molecule, GAPDH segregator (GAPDS), that suppresses the dauer formation induced by the daf-2 mutant. Like insulin, GAPDS increased both glucose uptake and the concentration of phosphatidylinositol-3,4,5-trisphosphate (PtdIns(3,4,5)P-3) in mammalian preadipocytes. Using affinity matrices and RNA interference, we identified glyceraldehyde-3-phosphate dehydrogenase (GAPDH) as a GAPDS target. We discovered that GAPDH stimulates phosphatase activity against not only PtdIns(3,4,5)P-3 but also PtdIns(4,5)P-2. These results suggest that GAPDH is both an active regulator in the phosphoinositide-mediated signaling pathway and a potential new target for insulin resistance treatment.
引用
收藏
页码:55 / 59
页数:5
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