상위피인용논문
부산대학교
Shunfu Piao1, Sun-Hye Lee2, Hyunjoon Kim3, Soohwan Yum1, Jennifer L. Stamos4, Yongbin Xu1, Su-Jin Lee2, Jaewon Lee1, Sangtaek Oh5, Jin-Kwan Han3, Bum-Joon Park2, William I. Weis4, Nam-Chul Ha1,*
1 College of Pharmacy and Research Institute for Drug Development, Pusan National University, Busan, Korea, 2 Department of Molecular Biology, College of Natural Sciences, Pusan National University, Busan, Korea, 3 Division of Molecular and Life Sciences, POSTECH, Pohang, Korea, 4 Departments of Structural Biology and Molecular & Cellular Physiology, Stanford University School of Medicine, Stanford, California, United States of America, 5 PharmcoGenomics Research Center, Inje University, Busan, Korea
*To whom correspondence should be addressed.
Abstract
Wnt/β-catenin signaling plays a central role in development and is also involved in a diverse array of diseases. Binding of Wnts to the coreceptors Frizzled and LRP6/5 leads to phosphorylation of PPPSPxS motifs in the LRP6/5 intracellular region and the inhibition of GSK3β bound to the scaffold protein Axin. However, it remains unknown how GSK3β is specifically inhibited upon Wnt stimulation. Here, we show that overexpression of the intracellular region of LRP6 containing a Ser/Thr rich cluster and a PPPSPxS motif impairs the activity of GSK3β in cells. Synthetic peptides containing the PPPSPxS motif strongly inhibit GSK3β in vitro only when they are phosphorylated. Microinjection of these peptides into Xenopus embryos confirms that the phosphorylated PPPSPxS motif potentiates Wnt-induced second body axis formation. In addition, we show that the Ser/Thr rich cluster of LRP6 plays an important role in LRP6 binding to GSK3β. These observations demonstrate that phosphorylated LRP6/5 both recruits and directly inhibits GSK3β using two distinct portions of its cytoplasmic sequence, and suggest a novel mechanism of activation in this signaling pathway.
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