Identification of a minority population of LMO2+ breast cancer cells that integrate into the vasculature and initiate metastasis

鉴定出少数融入血管并启动转移的 LMO2+ 乳腺癌细胞群

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作者:Shaheen S Sikandar, Gunsagar S Gulati, Jane Antony, Isobel Fetter, Angera H Kuo, William Hai Dang Ho, Veronica Haro-Acosta, Soumyashree Das, Chloé B Steen, Thiago Almeida Pereira, Dalong Qian, Philip A Beachy, Frederick M Dirbas, Kristy Red-Horse, Terence H Rabbitts, Jean Paul Thiery, Aaron M Newman

Abstract

Metastasis is responsible for most breast cancer-related deaths; however, identifying the cellular determinants of metastasis has remained challenging. Here, we identified a minority population of immature THY1+/VEGFA+ tumor epithelial cells in human breast tumor biopsies that display angiogenic features and are marked by the expression of the oncogene, LMO2. Higher abundance of LMO2+ basal cells correlated with tumor endothelial content and predicted poor distant recurrence-free survival in patients. Using MMTV-PyMT/Lmo2CreERT2 mice, we demonstrated that Lmo2 lineage-traced cells integrate into the vasculature and have a higher propensity to metastasize. LMO2 knockdown in human breast tumors reduced lung metastasis by impairing intravasation, leading to a reduced frequency of circulating tumor cells. Mechanistically, we find that LMO2 binds to STAT3 and is required for STAT3 activation by tumor necrosis factor-α and interleukin-6. Collectively, our study identifies a population of metastasis-initiating cells with angiogenic features and establishes the LMO2-STAT3 signaling axis as a therapeutic target in breast cancer metastasis.

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