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细胞黏附分子CD166/活化白细胞黏附分子在隐窝内发挥作用,以协调小鼠肠道干细胞的稳态。

Cell Adhesion Molecule CD166/ALCAM Functions Within the Crypt to Orchestrate Murine Intestinal Stem Cell Homeostasis.

作者信息

Smith Nicholas R, Davies Paige S, Levin Trevor G, Gallagher Alexandra C, Keene Douglas R, Sengupta Sidharth K, Wieghard Nikki, El Rassi Edward, Wong Melissa H

机构信息

Department of Cell, Developmental and Cancer Biology and Oregon Health & Science University, Portland, OR 97239, USA.

Department of Biomedical Engineering, Oregon Health & Science University, Portland, Oregon.

出版信息

Cell Mol Gastroenterol Hepatol. 2017 Jan 25;3(3):389-409. doi: 10.1016/j.jcmgh.2016.12.010. eCollection 2017 May.

Abstract

BACKGROUND & AIMS: Intestinal epithelial homeostasis is maintained by active-cycling and slow-cycling stem cells confined within an instructive crypt-based niche. Exquisite regulating of these stem cell populations along the proliferation-to-differentiation axis maintains a homeostatic balance to prevent hyperproliferation and cancer. Although recent studies focus on how secreted ligands from mesenchymal and epithelial populations regulate intestinal stem cells (ISCs), it remains unclear what role cell adhesion plays in shaping the regulatory niche. Previously we have shown that the cell adhesion molecule and cancer stem cell marker, CD166/ALCAM (activated leukocyte cell adhesion molecule), is highly expressed by both active-cycling Lgr5 ISCs and adjacent Paneth cells within the crypt base, supporting the hypothesis that CD166 functions to mediate ISC maintenance and signal coordination.

METHODS

Here we tested this hypothesis by analyzing a CD166 mouse combined with immunohistochemical, flow cytometry, gene expression, and enteroid culture.

RESULTS

We found that animals lacking CD166 expression harbored fewer active-cycling Lgr5 ISCs. Homeostasis was maintained by expansion of the transit-amplifying compartment and not by slow-cycling Bmi1 ISC stimulation. Loss of active-cycling ISCs was coupled with deregulated Paneth cell homeostasis, manifested as increased numbers of immature Paneth progenitors due to decreased terminal differentiation, linked to defective Wnt signaling. CD166 Paneth cells expressed reduced Wnt3 ligand expression and depleted nuclear β-catenin.

CONCLUSIONS

These data support a function for CD166 as an important cell adhesion molecule that shapes the signaling microenvironment by mediating ISC-niche cell interactions. Furthermore, loss of CD166 expression results in decreased ISC and Paneth cell homeostasis and an altered Wnt microenvironment.

摘要

背景与目的

肠道上皮稳态由局限于具有指导作用的隐窝基底部生态位内的活跃循环和缓慢循环干细胞维持。沿着增殖到分化轴对这些干细胞群体进行精确调控可维持稳态平衡,以防止过度增殖和癌症发生。尽管最近的研究聚焦于间充质和上皮群体分泌的配体如何调节肠道干细胞(ISC),但细胞黏附在塑造调控性生态位中所起的作用仍不清楚。此前我们已表明,细胞黏附分子及癌症干细胞标志物CD166/活化白细胞细胞黏附分子(ALCAM)在隐窝底部的活跃循环Lgr5 ISC和相邻潘氏细胞中均高表达,这支持了CD166在介导ISC维持和信号协调中发挥作用的假说。

方法

在此,我们通过分析CD166基因敲除小鼠,并结合免疫组织化学、流式细胞术、基因表达和类器官培养来验证这一假说。

结果

我们发现缺乏CD166表达的动物体内活跃循环的Lgr5 ISC数量较少。稳态通过过渡扩增区室的扩张得以维持,而非通过缓慢循环的Bmi1 ISC的刺激。活跃循环ISC的缺失与潘氏细胞稳态失调相关,表现为由于终末分化减少导致未成熟潘氏祖细胞数量增加,这与Wnt信号缺陷有关。CD166缺失的潘氏细胞Wnt3配体表达降低,核内β-连环蛋白减少。

结论

这些数据支持CD166作为一种重要的细胞黏附分子发挥作用,它通过介导ISC-生态位细胞相互作用来塑造信号微环境。此外,CD166表达缺失导致ISC和潘氏细胞稳态下降以及Wnt微环境改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d8d/5404029/6a795e956470/fx1.jpg

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