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转化生长因子-β信号通路的缺失通过肿瘤-基质相互作用促进癌细胞集体侵袭。

Lack of transforming growth factor-β signaling promotes collective cancer cell invasion through tumor-stromal crosstalk.

作者信息

Matise Lauren A, Palmer Trenis D, Ashby William J, Nashabi Abudi, Chytil Anna, Aakre Mary, Pickup Michael W, Gorska Agnieszka E, Zijlstra Andries, Moses Harold L

出版信息

Breast Cancer Res. 2012 Jul 2;14(4):R98. doi: 10.1186/bcr3217.

Abstract

INTRODUCTION

Transforming growth factor beta (TGF-β) has a dual role during tumor progression, initially as a suppressor and then as a promoter. Epithelial TGF-β signaling regulates fibroblast recruitment and activation. Concurrently, TGF-β signaling in stromal fibroblasts suppresses tumorigenesis in adjacent epithelia, while its ablation potentiates tumor formation. Much is known about the contribution of TGF-β signaling to tumorigenesis, yet the role of TGF-β in epithelial-stromal migration during tumor progression is poorly understood. We hypothesize that TGF-β is a critical regulator of tumor-stromal interactions that promote mammary tumor cell migration and invasion.

METHODS

Fluorescently labeled murine mammary carcinoma cells, isolated from either MMTV-PyVmT transforming growth factor-beta receptor II knockout (TβRII KO) or TβRIIfl/fl control mice, were combined with mammary fibroblasts and xenografted onto the chicken embryo chorioallantoic membrane. These combinatorial xenografts were used as a model to study epithelial-stromal crosstalk. Intravital imaging of migration was monitored ex ovo, and metastasis was investigated in ovo. Epithelial RNA from in ovo tumors was isolated by laser capture microdissection and analyzed to identify gene expression changes in response to TGF-β signaling loss.

RESULTS

Intravital microscopy of xenografts revealed that mammary fibroblasts promoted two migratory phenotypes dependent on epithelial TGF-β signaling: single cell/strand migration or collective migration. At epithelial-stromal boundaries, single cell/strand migration of TβRIIfl/fl carcinoma cells was characterized by expression of α-smooth muscle actin and vimentin, while collective migration of TβRII KO carcinoma cells was identified by E-cadherin+/p120+/β-catenin+ clusters. TβRII KO tumors also exhibited a twofold greater metastasis than TβRIIfl/fl tumors, attributed to enhanced extravasation ability. In TβRII KO tumor epithelium compared with TβRIIfl/fl epithelium, Igfbp4 and Tspan13 expression was upregulated while Col1α2, Bmp7, Gng11, Vcan, Tmeff1, and Dsc2 expression was downregulated. Immunoblotting and quantitative PCR analyses on cultured cells validated these targets and correlated Tmeff1 expression with disease progression of TGF-β-insensitive mammary cancer.

CONCLUSION

Fibroblast-stimulated carcinoma cells utilize TGF-β signaling to drive single cell/strand migration but migrate collectively in the absence of TGF-β signaling. These migration patterns involve the signaling regulation of several epithelial-to-mesenchymal transition pathways. Our findings concerning TGF-β signaling in epithelial-stromal interactions are important in identifying migratory mechanisms that can be targeted as recourse for breast cancer treatment.

摘要

引言

转化生长因子β(TGF-β)在肿瘤进展过程中具有双重作用,最初作为抑制因子,随后作为促进因子。上皮细胞中的TGF-β信号传导调节成纤维细胞的募集和激活。同时,基质成纤维细胞中的TGF-β信号传导抑制相邻上皮细胞的肿瘤发生,而其缺失则增强肿瘤形成。关于TGF-β信号传导对肿瘤发生的贡献已了解很多,但TGF-β在肿瘤进展过程中上皮-基质迁移中的作用却知之甚少。我们假设TGF-β是促进乳腺肿瘤细胞迁移和侵袭的肿瘤-基质相互作用的关键调节因子。

方法

从MMTV-PyVmT转化生长因子β受体II基因敲除(TβRII KO)或TβRIIfl/fl对照小鼠中分离出荧光标记的小鼠乳腺癌细胞,与乳腺成纤维细胞结合并移植到鸡胚绒毛尿囊膜上。这些组合移植用作研究上皮-基质相互作用的模型。在体外监测迁移的活体成像,并在体内研究转移情况。通过激光捕获显微切割从体内肿瘤中分离上皮RNA,并进行分析以鉴定响应TGF-β信号缺失的基因表达变化。

结果

移植瘤的活体显微镜检查显示,乳腺成纤维细胞促进了两种依赖上皮TGF-β信号传导的迁移表型:单细胞/链状迁移或集体迁移。在上皮-基质边界处,TβRIIfl/fl癌细胞的单细胞/链状迁移以α-平滑肌肌动蛋白和波形蛋白的表达为特征,而TβRII KO癌细胞的集体迁移通过E-钙黏蛋白+/p120+/β-连环蛋白+簇来识别。TβRII KO肿瘤的转移也比TβRIIfl/fl肿瘤高出两倍,这归因于外渗能力增强。与TβRIIfl/fl上皮相比,TβRII KO肿瘤上皮中Igfbp4和Tspan13的表达上调,而Col1α2、Bmp7、Gng11、Vcan、Tmeff1和Dsc2的表达下调。对培养细胞的免疫印迹和定量PCR分析验证了这些靶标,并将Tmeff1表达与TGF-β不敏感型乳腺癌的疾病进展相关联。

结论

成纤维细胞刺激的癌细胞利用TGF-β信号传导驱动单细胞/链状迁移,但在没有TGF-β信号传导的情况下集体迁移。这些迁移模式涉及几种上皮-间质转化途径的信号调节。我们关于上皮-基质相互作用中TGF-β信号传导的发现对于确定可作为乳腺癌治疗手段的迁移机制很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ed7/3680921/8ec575591b0c/bcr3217-1.jpg

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