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使用一种新型大分子提取方案评估在软琼脂中培养的人乳腺上皮细胞中的上皮-间质程序。

Evaluating the Epithelial-Mesenchymal Program in Human Breast Epithelial Cells Cultured in Soft Agar Using a Novel Macromolecule Extraction Protocol.

作者信息

Lau Hiu Yeung, Tang Jingyi, Casey Patrick J, Wang Mei

机构信息

Programme in Cancer and Stem Cell Biology, Duke-NUS Medical School, National University of Singapore, Singapore 169857, Singapore.

Department of Biochemistry, Yong Loo Lin School of Medicine, National University of Singapore, Singapore 117596, Singapore.

出版信息

Cancers (Basel). 2021 Feb 15;13(4):807. doi: 10.3390/cancers13040807.

Abstract

The ability to grow in anchorage-independent conditions is an important feature of malignant cells, and it is well-established that cellular phenotypes in adherent cultures can differ widely from phenotypes observed in xenografts and anchorage-independent conditions. The anchorage-independent soft-agar colony formation assay has been widely used as a bridge between adherent cell cultures and animal tumor studies, providing a reliable in vitro tool to predict the tumorigenicity of cancer cells. However, this functional assay is limited in its utility for molecular mechanistic studies, as currently there is no reliable method that allows the extraction of biological macromolecules from cells embedded in soft-agar matrices, especially in experimental conditions where no visible colonies form. We developed a set of new methods that enable the extraction of DNA, RNA and proteins directly from cells embedded in soft agar, allowing for a wide range of molecular signaling analysis. Using the new methods and human mammary epithelial cells (HMECs), we studied the role of epithelial-mesenchymal transition (EMT) in the ability of HMECs to form colonies in soft agar. We found that, when cultured in soft agar instead of in adherent cultures, immortalized non-malignant HME-hTERT cells upregulated the epithelial program, which was noted to be necessary for their survival in this anchorage-independent condition. Overexpression of SV40 small T antigen (ST) or the EMT master-regulator SNAI1 negates this requirement and significantly enhances colony formation in soft agar driven by mutant-RAS. Interestingly, we found that, similar to SNAI1, ST also promotes EMT changes in HMECs, providing further support for EMT as a prerequisite for the efficient anchorage-independent colony formation driven by mutant-RAS in our HMEC model.

摘要

在不依赖贴壁条件下生长的能力是恶性细胞的一个重要特征,而且众所周知,贴壁培养中的细胞表型可能与异种移植和不依赖贴壁条件下观察到的表型有很大差异。不依赖贴壁的软琼脂集落形成试验已被广泛用作贴壁细胞培养和动物肿瘤研究之间的桥梁,提供了一种可靠的体外工具来预测癌细胞的致瘤性。然而,这种功能试验在分子机制研究中的实用性有限,因为目前尚无可靠方法从嵌入软琼脂基质的细胞中提取生物大分子,尤其是在没有可见集落形成的实验条件下。我们开发了一套新方法,能够直接从嵌入软琼脂的细胞中提取DNA、RNA和蛋白质,从而实现广泛的分子信号分析。利用这些新方法和人乳腺上皮细胞(HMECs),我们研究了上皮-间质转化(EMT)在HMECs在软琼脂中形成集落能力中的作用。我们发现,与贴壁培养相比,永生化非恶性HME-hTERT细胞在软琼脂中培养时会上调上皮程序,这被认为是它们在这种不依赖贴壁条件下存活所必需的。SV40小T抗原(ST)或EMT主调节因子SNAI1过表达消除了这一需求,并显著增强了由突变型RAS驱动的软琼脂中的集落形成。有趣的是,我们发现,与SNAI1类似,ST也促进HMECs中的EMT变化,这进一步支持了EMT是我们的HMEC模型中由突变型RAS驱动的高效不依赖贴壁集落形成的先决条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b57/7919038/59917928539c/cancers-13-00807-g001.jpg

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