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Noncanonical Wnt signaling in vertebrate development, stem cells, and diseases.脊椎动物发育、干细胞及疾病中的非经典Wnt信号传导
Birth Defects Res C Embryo Today. 2010 Dec;90(4):243-56. doi: 10.1002/bdrc.20195.
2
A kinase-independent role for unoccupied insulin and IGF-1 receptors in the control of apoptosis.未占据的胰岛素和 IGF-1 受体在控制细胞凋亡中的激酶非依赖性作用。
Sci Signal. 2010 Dec 7;3(151):ra87. doi: 10.1126/scisignal.2001173.
3
Wnt signaling and aging-related heart disorders.Wnt 信号与与衰老相关的心脏紊乱。
Circ Res. 2010 Nov 26;107(11):1295-303. doi: 10.1161/CIRCRESAHA.110.223776.
4
Canonical and noncanonical Wnts use a common mechanism to activate completely unrelated coreceptors.经典型和非经典型 Wnt 利用一种共同机制激活完全不相关的核心受体。
Genes Dev. 2010 Nov 15;24(22):2517-30. doi: 10.1101/gad.1957710.
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Linking Alzheimer's disease to insulin resistance: the FoxO response to oxidative stress.将阿尔茨海默病与胰岛素抵抗联系起来:FoxO 对氧化应激的反应。
Mol Psychiatry. 2010 Nov;15(11):1046-52. doi: 10.1038/mp.2010.17.
6
Wnt receptors, bone mass, and fractures: gene-wide association analysis of LRP5 and LRP6 polymorphisms with replication.Wnt 受体、骨量和骨折:LRP5 和 LRP6 多态性的全基因组关联分析及其复制。
Eur J Endocrinol. 2011 Jan;164(1):123-31. doi: 10.1530/EJE-10-0582. Epub 2010 Oct 6.
7
Wnt signaling regulates mitochondrial physiology and insulin sensitivity.Wnt 信号通路调控线粒体生理学和胰岛素敏感性。
Genes Dev. 2010 Jul 15;24(14):1507-18. doi: 10.1101/gad.1924910.
8
Insulin and insulin-like growth factor-1 receptors act as ligand-specific amplitude modulators of a common pathway regulating gene transcription.胰岛素和胰岛素样生长因子-1 受体作为配体特异性幅度调节剂,作用于调节基因转录的共同途径。
J Biol Chem. 2010 May 28;285(22):17235-45. doi: 10.1074/jbc.M110.118620. Epub 2010 Apr 1.
9
Activation of Wnt/beta-catenin signaling increases insulin sensitivity through a reciprocal regulation of Wnt10b and SREBP-1c in skeletal muscle cells.Wnt/β-catenin 信号通路的激活通过调节骨骼肌细胞中 Wnt10b 和 SREBP-1c 的表达,增加胰岛素敏感性。
PLoS One. 2009 Dec 30;4(12):e8509. doi: 10.1371/journal.pone.0008509.
10
Wnt modulators in the biotech pipeline.生物技术管道中的 Wnt 调节剂。
Dev Dyn. 2010 Jan;239(1):102-14. doi: 10.1002/dvdy.22181.

胰岛素和 Wnt 信号在脂肪前体细胞中的对话:Wnt 共受体低密度脂蛋白受体相关蛋白-5(LRP5)的作用。

Cross-talk between insulin and Wnt signaling in preadipocytes: role of Wnt co-receptor low density lipoprotein receptor-related protein-5 (LRP5).

机构信息

Section on Integrative Physiology and Metabolism, Joslin Diabetes Center, Harvard Medical School, Boston, Massachusetts 02215, USA.

出版信息

J Biol Chem. 2012 Apr 6;287(15):12016-26. doi: 10.1074/jbc.M111.337048. Epub 2012 Feb 15.

DOI:10.1074/jbc.M111.337048
PMID:22337886
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3320948/
Abstract

Disturbed Wnt signaling has been implicated in numerous diseases, including type 2 diabetes and the metabolic syndrome. In the present study, we have investigated cross-talk between insulin and Wnt signaling pathways using preadipocytes with and without knockdown of the Wnt co-receptors LRP5 and LRP6 and with and without knock-out of insulin and IGF-1 receptors. We find that Wnt stimulation leads to phosphorylation of insulin signaling key mediators, including Akt, GSK3β, and ERK1/2, although with a lower fold stimulation and slower time course than observed for insulin. These Wnt effects are insulin/IGF-1 receptor-dependent and are lost in insulin/IGF-1 receptor double knock-out cells. Conversely, in LRP5 knockdown preadipocytes, insulin-induced phosphorylation of IRS1, Akt, GSK3β, and ERK1/2 is highly reduced. This effect is specific to insulin, as compared with IGF-1, stimulation and appears to be due to an inducible interaction between LRP5 and the insulin receptor as demonstrated by co-immunoprecipitation. These data demonstrate that Wnt and insulin signaling pathways exhibit cross-talk at multiple levels. Wnt induces phosphorylation of Akt, ERK1/2, and GSK3β, and this is dependent on insulin/IGF-1 receptors. Insulin signaling also involves the Wnt co-receptor LRP5, which has a positive effect on insulin signaling. Thus, altered Wnt and LRP5 activity can serve as modifiers of insulin action and insulin resistance in the pathophysiology of diabetes and metabolic syndrome.

摘要

Wnt 信号通路的紊乱与多种疾病相关,包括 2 型糖尿病和代谢综合征。在本研究中,我们利用过表达和敲低 Wnt 共受体 LRP5 和 LRP6 的前脂肪细胞,以及敲除胰岛素和 IGF-1 受体的细胞,研究了胰岛素和 Wnt 信号通路之间的串扰。我们发现,Wnt 刺激会导致胰岛素信号关键介质如 Akt、GSK3β 和 ERK1/2 的磷酸化,尽管其刺激倍数较低,时间进程也比胰岛素慢。这些 Wnt 作用依赖于胰岛素/IGF-1 受体,并且在胰岛素/IGF-1 受体双重敲除细胞中丢失。相反,在 LRP5 敲低的前脂肪细胞中,胰岛素诱导的 IRS1、Akt、GSK3β 和 ERK1/2 的磷酸化显著减少。与 IGF-1 刺激相比,这种效应是胰岛素特有的,似乎是由于 LRP5 和胰岛素受体之间的可诱导相互作用,如共免疫沉淀所示。这些数据表明 Wnt 和胰岛素信号通路在多个水平上存在串扰。Wnt 诱导 Akt、ERK1/2 和 GSK3β 的磷酸化,这依赖于胰岛素/IGF-1 受体。胰岛素信号也涉及 Wnt 共受体 LRP5,它对胰岛素信号有正向作用。因此,Wnt 和 LRP5 活性的改变可以作为糖尿病和代谢综合征病理生理学中胰岛素作用和胰岛素抵抗的调节剂。