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Bmi1在Notch信号下游调节小鼠肠道干细胞的增殖和自我更新。

Bmi1 regulates murine intestinal stem cell proliferation and self-renewal downstream of Notch.

作者信息

López-Arribillaga Erika, Rodilla Verónica, Pellegrinet Luca, Guiu Jordi, Iglesias Mar, Roman Angel Carlos, Gutarra Susana, González Susana, Muñoz-Cánoves Pura, Fernández-Salguero Pedro, Radtke Freddy, Bigas Anna, Espinosa Lluís

机构信息

Program in Cancer Research, IMIM-Hospital del Mar, Barcelona 08003, Spain.

Ecole Polytechnique Federale de Lausanne, Lausanne 1015, Switzerland.

出版信息

Development. 2015 Jan 1;142(1):41-50. doi: 10.1242/dev.107714. Epub 2014 Dec 5.

Abstract

Genetic data indicate that abrogation of Notch-Rbpj or Wnt-β-catenin pathways results in the loss of the intestinal stem cells (ISCs). However, whether the effect of Notch is direct or due to the aberrant differentiation of the transit-amplifying cells into post-mitotic goblet cells is unknown. To address this issue, we have generated composite tamoxifen-inducible intestine-specific genetic mouse models and analyzed the expression of intestinal differentiation markers. Importantly, we found that activation of β-catenin partially rescues the differentiation phenotype of Rbpj deletion mutants, but not the loss of the ISC compartment. Moreover, we identified Bmi1, which is expressed in the ISC and progenitor compartments, as a gene that is co-regulated by Notch and β-catenin. Loss of Bmi1 resulted in reduced proliferation in the ISC compartment accompanied by p16(INK4a) and p19(ARF) (splice variants of Cdkn2a) accumulation, and increased differentiation to the post-mitotic goblet cell lineage that partially mimics Notch loss-of-function defects. Finally, we provide evidence that Bmi1 contributes to ISC self-renewal.

摘要

遗传数据表明,Notch-Rbpj或Wnt-β-连环蛋白信号通路的缺失会导致肠道干细胞(ISC)的丧失。然而,Notch的作用是直接的,还是由于过渡增殖细胞异常分化为有丝分裂后杯状细胞所致,目前尚不清楚。为了解决这个问题,我们构建了复合他莫昔芬诱导的肠道特异性基因小鼠模型,并分析了肠道分化标志物的表达。重要的是,我们发现β-连环蛋白的激活部分挽救了Rbpj缺失突变体的分化表型,但不能挽救ISC区室的丧失。此外,我们鉴定出在ISC和祖细胞区室中表达的Bmi1,它是一个受Notch和β-连环蛋白共同调控的基因。Bmi1的缺失导致ISC区室增殖减少,伴有p16(INK4a)和p19(ARF)(Cdkn2a的剪接变体)积累,并增加向有丝分裂后杯状细胞谱系的分化,这部分模拟了Notch功能丧失缺陷。最后,我们提供证据表明Bmi1有助于ISC自我更新。

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