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The WNT-controlled transcriptional regulator LBH is required for mammary stem cell expansion and maintenance of the basal lineage

机译:WNT控制的转录调节子LBH是乳腺干细胞扩增和基础谱系维持所必需的

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摘要

The identification of multipotent mammary stem cells (MaSCs) has provided an explanation for the unique regenerative capacity of the mammary gland throughout adult life. However, it remains unclear what genes maintain MaSCs and control their specification into the two epithelial lineages: luminal and basal. LBH is a novel transcription co-factor in the WNT pathway with hitherto unknown physiological function. LBH is expressed during mammary gland development and aberrantly overexpressed in aggressive ‘basal’ subtype breast cancers. Here, we have explored the in vivo role of LBH in mammopoiesis. We show that in postnatal mammary epithelia, LBH is predominantly expressed in the LinCD29highCD24+ basal MaSC population. Upon conditional inactivation of LBH, mice exhibit pronounced delays in mammary tissue expansion during puberty and pregnancy, accompanied by increased luminal differentiation at the expense of basal lineage specification. These defects could be traced to a severe reduction in the frequency and self-renewal/differentiation potential of basal MaSCs. Mechanistically, LBH induces expression of key epithelial stem cell transcription factor ΔNp63 to promote a basal MaSC state and repress luminal differentiation genes, mainly that encoding estrogen receptor α (Esr1/ERα). Collectively, these studies identify LBH as an essential regulator of basal MaSC expansion/maintenance, raising important implications for its potential role in breast cancer pathogenesis.
机译:多能乳干细胞(MaSCs)的鉴定为整个成年后乳腺的独特再生能力提供了解释。然而,尚不清楚哪些基因能维持MaSCs并控制其在两个上皮细胞系中的表达:管腔和基底。 LBH是WNT途径中一种新型的转录辅因子,具有迄今未知的生理功能。 LBH在乳腺发育过程中表达,在侵袭性“基础”亚型乳腺癌中异常高表达。在这里,我们已经探索了LBH在哺乳动物体内的体内作用。我们显示,在出生后的乳腺上皮中,LBH主要在Lin - CD29 CD24 + 基础MaSC人群中表达。有条件的LBH失活后,小鼠在青春期和怀孕期间的乳腺组织扩张表现出明显的延迟,同时伴随着管腔分化的增加而牺牲了基础谱系规格。这些缺陷可以追溯到基础MaSCs的频率和自我更新/分化潜能的严重降低。从机制上讲,LBH诱导关键上皮干细胞转录因子ΔNp63的表达,以促进基础MaSC状态并抑制管腔分化基因,主要是编码雌激素受体α(Esr1 /ERα)的基因。总体而言,这些研究确定LBH是基础MaSC扩展/维持的必要调节剂,对其在乳腺癌发病机制中的潜在作用提出了重要的建议。

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