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Wnt信号受体Lrp5是乳腺导管干细胞活性和Wnt1诱导的肿瘤发生所必需的。

The Wnt signaling receptor Lrp5 is required for mammary ductal stem cell activity and Wnt1-induced tumorigenesis.

作者信息

Lindvall Charlotta, Evans Nicole C, Zylstra Cassandra R, Li Yi, Alexander Caroline M, Williams Bart O

机构信息

Laboratory of Cell Signaling and Carcinogenesis, Van Andel Research Institute, Grand Rapids, Michigan 49503, USA.

出版信息

J Biol Chem. 2006 Nov 17;281(46):35081-7. doi: 10.1074/jbc.M607571200. Epub 2006 Sep 13.

Abstract

Canonical Wnt signaling has emerged as a critical regulatory pathway for stem cells. The association between ectopic activation of Wnt signaling and many different types of human cancer suggests that Wnt ligands can initiate tumor formation through altered regulation of stem cell populations. Here we have shown that mice deficient for the Wnt co-receptor Lrp5 are resistant to Wnt1-induced mammary tumors, which have been shown to be derived from the mammary stem/progenitor cell population. These mice exhibit a profound delay in tumorigenesis that is associated with reduced Wnt1-induced accumulation of mammary progenitor cells. In addition to the tumor resistance phenotype, loss of Lrp5 delays normal mammary development. The ductal trees of 5-week-old Lrp5-/- females have fewer terminal end buds, which are structures critical for juvenile ductal extension presumed to be rich in stem/progenitor cells. Consequently, the mature ductal tree is hypomorphic and does not completely fill the fat pad. Furthermore, Lrp5-/- ductal cells from mature females exhibit little to no stem cell activity in limiting dilution transplants. Finally, we have shown that Lrp5-/- embryos exhibit substantially impaired canonical Wnt signaling in the primitive stem cell compartment of the mammary placodes. These findings suggest that Lrp5-mediated canonical signaling is required for mammary ductal stem cell activity and for tumor development in response to oncogenic Wnt effectors.

摘要

经典Wnt信号通路已成为干细胞的关键调控途径。Wnt信号的异位激活与许多不同类型的人类癌症之间的关联表明,Wnt配体可通过改变干细胞群体的调控来启动肿瘤形成。在此我们表明,Wnt共同受体Lrp5缺陷的小鼠对Wnt1诱导的乳腺肿瘤具有抗性,而这些肿瘤已被证明源自乳腺干/祖细胞群体。这些小鼠在肿瘤发生方面表现出显著延迟,这与Wnt1诱导的乳腺祖细胞积累减少有关。除了肿瘤抗性表型外,Lrp5的缺失还会延迟正常乳腺发育。5周龄Lrp5-/-雌性小鼠的导管树末端终芽较少,这些结构对于推测富含干/祖细胞的幼年导管延伸至关重要。因此,成熟的导管树发育不全,并未完全填充脂肪垫。此外,来自成熟雌性的Lrp5-/-导管细胞在有限稀释移植中几乎没有干细胞活性。最后,我们表明Lrp5-/-胚胎在乳腺基板的原始干细胞区室中表现出明显受损的经典Wnt信号。这些发现表明,Lrp5介导的经典信号对于乳腺导管干细胞活性以及对致癌Wnt效应物的肿瘤发展是必需的。

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