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低密度脂蛋白受体1(LRP1)与人卷曲蛋白1(HFz1)相互作用,并下调经典Wnt信号通路。

The low density lipoprotein receptor-1, LRP1, interacts with the human frizzled-1 (HFz1) and down-regulates the canonical Wnt signaling pathway.

作者信息

Zilberberg Alona, Yaniv Abraham, Gazit Arnona

机构信息

Department of Human Microbiology, Sackler School of Medicine, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

J Biol Chem. 2004 Apr 23;279(17):17535-42. doi: 10.1074/jbc.M311292200. Epub 2004 Jan 21.

DOI:10.1074/jbc.M311292200
PMID:14739301
Abstract

Members of the low density lipoprotein receptor family (LDLR), LRP5/6, were shown to interact with the Frizzled (Fz) receptors and to function as Wnt coreceptors. Here we show that mLRP4T100, a minireceptor of LRP1, another member of the LDLR family, interacts with the human Fz-1 (HFz1), previously shown to serve as a receptor transmitting the canonical Wnt-3a-induced signaling cascade. However, in contrast to LRP5/6, mLRP4T100, as well as the full-length LRP1, did not cooperate with HFz1 in transmitting the Wnt-3a signaling but rather repressed it. mLRP4T100 inhibitory effect was displayed also by endocytosis-defective mLRP4T100 mutants, suggesting that LRP1 repressive effect is not attributable to LRP1-mediated enhanced HFz1 internalization and subsequent degradation. Enforced expression of mLRP4T100 decreased the capacity of HFz1 cysteine-rich domain (CRD) to interact with LRP6, in contrast to HFz1-CRD/Wnt-3a interaction that was not disrupted by overexpressing mLRP4T100. These data suggest that LRP1, by sequestering HFz1, disrupts the receptor/coreceptor complex formation, leading to the repression of the canonical Wnt signaling. Thus, this study implies that the ability to interact with Fz receptors is shared by several members of the LDLR family. However, whereas some members of the LDLR family, such as LRP5/6, interact with Fz and serve as Wnt coreceptors, others negatively regulate Wnt signaling, presumably by sequestering Fz.

摘要

低密度脂蛋白受体家族(LDLR)的成员LRP5/6已被证明可与卷曲蛋白(Fz)受体相互作用,并作为Wnt共受体发挥作用。在此我们表明,LRP1(LDLR家族的另一个成员)的微型受体mLRP4T100与人类Fz-1(HFz1)相互作用,此前已证明HFz1作为一种受体传递经典的Wnt-3a诱导的信号级联反应。然而,与LRP5/6不同,mLRP4T100以及全长LRP1在传递Wnt-3a信号时并不与HFz1协同作用,而是对其产生抑制作用。内吞缺陷型mLRP4T100突变体也表现出mLRP4T100的抑制作用,这表明LRP1的抑制作用并非归因于LRP1介导的HFz1内化增强及随后的降解。与未被过表达的mLRP4T100破坏的HFz1-半胱氨酸富集结构域(CRD)/Wnt-3a相互作用相反,mLRP4T100的强制表达降低了HFz1 CRD与LRP6相互作用的能力。这些数据表明,LRP1通过隔离HFz1破坏了受体/共受体复合物的形成,导致经典Wnt信号的抑制。因此,本研究表明与Fz受体相互作用的能力为LDLR家族的几个成员所共有。然而,LDLR家族的一些成员,如LRP5/6,与Fz相互作用并作为Wnt共受体,而其他成员可能通过隔离Fz对Wnt信号进行负调控。

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