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DDR2 通过作为 FOXQ1 和 SNAI1 的共同效应物来协调 EMT 和代谢重编程。

DDR2 coordinates EMT and metabolic reprogramming as a shared effector of FOXQ1 and SNAI1.

机构信息

Barbara Ann Karmanos Cancer Institute, Department of Oncology, Wayne State University School of Medicine, 4100 John R, Detroit, MI 48201.

Department of Biology, Purdue University, West Lafayette, IN 47907.

出版信息

Cancer Res Commun. 2022 Nov;2(11):1388-1403. doi: 10.1158/2767-9764.crc-22-0013. Epub 2022 Nov 9.

Abstract

While multiple transcription factors (TFs) have been recognized to drive epithelial-mesenchymal transition (EMT) in cancer, their interdependence and context-dependent functions are poorly understood. In this study, we show that FOXQ1 and SNAI1 act as independent TFs within the EMT program with a shared ability to upregulate common EMT TFs without reciprocally impacting the expression of one another. Despite this independence, human mammary epithelial cells (HMLE) with ectopic expression of either FOXQ1 or SNAI1 share a common gene set that is enriched for a DDR2 coexpression signature. Further analysis identified DDR2 as the most upregulated receptor tyrosine kinase and a shared downstream effector of FOXQ1 and SNAI1 in triple-negative breast cancer (TNBC) cell lines. Alteration of DDR2 expression in either FOXQ1 or SNAI1 driven EMT models or in TNBC cells resulted in a profound change of cell motility without significantly impacting EMT marker expression, cell morphology, or the stem cell population. Lastly, we demonstrated that knockdown of DDR2 in the FOXQ1-driven EMT model and TNBC cell line significantly altered the global metabolic profile, including glutamine-glutamate and Aspartic acid recycling.

摘要

尽管已经发现多种转录因子 (TF) 可驱动癌症中的上皮-间充质转化 (EMT),但其相互依存性和依赖于上下文的功能仍了解甚少。在这项研究中,我们表明 FOXQ1 和 SNAI1 在 EMT 程序中作为独立的 TF 发挥作用,具有共同上调常见 EMT TF 的能力,而彼此之间不相互影响表达。尽管具有这种独立性,但过表达 FOXQ1 或 SNAI1 的人乳腺上皮细胞 (HMLE) 具有共同的基因集,这些基因集富含 DDR2 共表达特征。进一步的分析确定 DDR2 是受体酪氨酸激酶中上调最明显的一种,也是 FOXQ1 和 SNAI1 在三阴性乳腺癌 (TNBC) 细胞系中的共同下游效应物。改变 FOXQ1 或 SNAI1 驱动的 EMT 模型或 TNBC 细胞中 DDR2 的表达会导致细胞迁移发生深刻变化,而对 EMT 标志物表达、细胞形态或干细胞群体没有显著影响。最后,我们证明在 FOXQ1 驱动的 EMT 模型和 TNBC 细胞系中敲低 DDR2 会显著改变全局代谢谱,包括谷氨酰胺-谷氨酸和天冬氨酸循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e08/10035382/808bf2457a63/crc-22-0013_fig1.jpg

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