首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Identification of the Wnt signaling activator leucine-rich repeat in Flightless interaction protein 2 by a genome-wide functional analysis.
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Identification of the Wnt signaling activator leucine-rich repeat in Flightless interaction protein 2 by a genome-wide functional analysis.

机译:通过全基因组功能分析鉴定无飞行相互作用蛋白2中Wnt信号激活剂富含亮氨酸的重复序列。

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The Wnt signaling pathway acts ubiquitously in metazoans to control various aspects of embryonic development. Wnt ligands bind their receptors Frizzled and low-density lipoprotein receptor-related protein 5/6 and function through Disheveled (Dvl), Axin, adenomatous polyposis coli, glycogen synthase kinase 3beta, and casein kinase (CK) 1 to stabilize beta-catenin and induce lymphocyte enhancer-binding factor (LEF)/T cell factor (TCF)-dependent transcriptional activities. To identify previously unrecognized Wnt signaling modulators, a genome-wide functional screen was performed using large-scale arrayed cDNA collections. From this screen, both known components and previously uncharacterized regulators of this pathway were identified, including beta-catenin, Dvl1, Dvl3, Fbxw-1, Cul1, CK1epsilon, CK1delta, and gamma-catenin. In particular, a previously unrecognized activator, LRRFIP2 (leucine-rich repeat in Flightless interaction protein 2), was found that interacts with Dvl to increase the cellular levelsof beta-catenin and activate beta-catenin/LEF/TCF-dependent transcriptional activity. The function of LRRFIP2 is blocked when a dominant negative Dvl (Xdd1) is coexpressed. Expression of LRRFIP2 in Xenopus embryos induced double axis formation and Wnt target gene expression; a dominant negative form of LRRFIP2 suppresses ectopic Wnt signaling in Xenopus embryos and partially inhibits endogenous dorsal axis formation. These data suggest that LRRFIP2 plays an important role in transducing Wnt signals.
机译:Wnt信号通路普遍存在于后生动物中,以控制胚胎发育的各个方面。 Wnt配体结合其受体卷曲和低密度脂蛋白受体相关蛋白5/6,并通过Disheveled(Dvl),Axin,腺瘤性息肉病杆菌,糖原合酶激酶3beta和酪蛋白激酶(CK)1发挥功能,以稳定β-catenin和诱导淋巴细胞增强子结合因子(LEF)/ T细胞因子(TCF)依赖性转录活性。为了鉴定以前无法识别的Wnt信号调节剂,使用大规模阵列cDNA收集物进行了全基因组功能筛选。从该屏幕中,可以识别该途径的已知成分和以前未表征的调节剂,包括β-连环蛋白,Dvl1,Dvl3,Fbxw-1,Cul1,CK1epsilon,CK1delta和γ-连环蛋白。特别地,发现了先前未被识别的活化剂LRRFIP2(Flightless相互作用蛋白2中的富含亮氨酸的重复序列),其与Dv1相互作用以增加β-连环蛋白的细胞水平并激活β-连环蛋白/ LEF / TCF依赖性转录活性。共显性负Dvl(Xdd1)时,LRRFIP2的功能被阻止。 LRRFIP2在非洲爪蟾胚胎中的表达诱导了双轴形成和Wnt靶基因的表达; LRRFIP2的显性阴性形式抑制非洲爪蟾胚胎中的异位Wnt信号传导,并部分抑制内源性背轴形成。这些数据表明LRRFIP2在转导Wnt信号中起重要作用。

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