PO.TB07.02 · 肿瘤生物学

剖析ROBO4在调控乳腺癌细胞可塑性中的功能

Dissecting ROBO4 function in regulating breast cancer cell plasticity

海报缩略图:剖析ROBO4在调控乳腺癌细胞可塑性中的功能
编号 2199 展板 18 时间 4/20 09:00–12:00 区域 Section 30 主讲 Isobel Fetter, BS
分会场 Metabolic and Transcriptional Control of Cancer Stem Cell Plasticity
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作者与单位 Authors & Affiliations

Isobel J. Fetter1, Veronica Haro Acosta1, Paloma Medina2, Shaheen S. Sikandar1

1Molecular, Cell, and Developmental Biology, UC Santa Cruz, Santa Cruz, CA,2Biomolecular Engineering, UC Santa Cruz, Santa Cruz, CA

摘要 Abstract

中文摘要
乳腺癌是女性最常见的癌症,也是女性癌症相关死亡的第二大原因。乳腺癌肿瘤高度异质,其中一小群干细胞样肿瘤起始细胞表现出高度的细胞可塑性,且常同时具有上皮和间充质特征(混合型)。这些可塑的干细胞样细胞促进肿瘤发生,因此鉴定并靶向这些群体可改善患者生存。ROBO1-4蛋白是跨膜受体,与其配体SLIT1-3一起调控轴突导向、细胞黏附、乳腺发育和血管生成。该信号通路受到严格调控,在正常发育中具有多种多样的作用,但癌症被定义为异常发育,且常伴有信号通路的改变。SLIT-ROBO信号已被认为参与乳腺癌、肺癌和结直肠癌中的细胞黏附调控,但关于其是促进肿瘤还是抑制肿瘤,证据存在矛盾。既往研究表明,内皮细胞中ROBO4的表达可抑制乳腺癌生长;然而,尚未在肿瘤上皮细胞中研究ROBO4。我们发现ROBO4在上皮性乳腺癌细胞中表达,且基底样肿瘤细胞中高ROBO4+上皮比例预示患者更差的生存。在乳腺癌细胞中敲低ROBO4可减少集落形成和增殖,并增加凋亡。在体内使用患者来源异种移植(PDX),组成型ROBO4敲低减少了肿瘤发生,而诱导型敲低在预先建立的肿瘤中阻止了进一步的肿瘤生长。转录组和蛋白质组分析显示,与ROBO4敲低相比,对照细胞中癌症干细胞和可塑性标志物富集,包括ALDH3A1、MSI2、CD44和S100A4。肿瘤细胞的流式细胞术分析显示,敲低ROBO4可减少混合型细胞,以CD44(间充质细胞)和CD104(上皮细胞)的共表达来衡量。ROBO4过表达肿瘤的初步结果显示混合型CD44+/CD104+细胞增加,提示ROBO4维持乳腺癌中的干细胞和混合型群体。基因集富集分析(GSEA)提示,在ROBO4敲低细胞中Rho GTPase、Wnt/beta-catenin和Notch信号下调。这些发现揭示了ROBO4在维持乳腺癌干细胞样和混合型细胞群体中的新作用,而ROBO4位于细胞表面为潜在治疗应用提供了一个有吸引力的靶点。
查看英文原文 English abstract
Breast cancer is the most common cancer in women and the second-leading cause of cancer-related deaths in women. Breast cancer tumors are highly heterogeneous, with small populations of stem-like tumor-initiating cells that exhibit high cellular plasticity and often display both epithelial and mesenchymal characteristics (hybrid). These plastic stem-like cells contribute to tumorigenesis, so identifying and targeting these populations can lead to improved patient survival. ROBO1-4 proteins are transmembrane receptors that, with their SLIT1-3 ligands, regulate axon guidance, cell adhesion, mammary gland development, and angiogenesis. This signaling pathway is tightly regulated and has a wide variety of roles in normal development, but cancer is defined as abnormal development and frequently has alterations in signaling pathways. SLIT-ROBO signaling has been implicated in cell adhesion regulation in breast, lung, and colorectal cancer, but there is conflicting evidence on whether it is tumor-promoting or tumor-suppressive. Previous studies have shown that ROBO4 expression in endothelial cells suppresses breast cancer growth; however, ROBO4 has not been investigated in tumor epithelial cells. We have found that ROBO4 is expressed in epithelial breast cancer cells, and a high ROBO4+ epithelial fraction in basal-like tumor cells predicts worse survival in patients. ROBO4 knockdown in breast cancer cells reduces colony formation and proliferation, and increases apoptosis. Using patient-derived xenografts (PDXs) in vivo, constitutive ROBO4 knockdown reduced tumorigenesis, and inducible knockdown halted further tumor growth in pre-established tumors. Transcriptomic and proteomic analyses reveal enrichment of cancer stem cell and plasticity markers in control cells compared to ROBO4 knockdown, including ALDH3A1, MSI2 , CD44, and S100A4. Flow cytometry analysis of tumor cells shows that knocking down ROBO4 reduces hybrid cells as measured by co-expression of CD44 (mesenchymal cells) and CD104 (epithelial cells). Preliminary results from ROBO4 overexpression tumors show an increase in hybrid CD44 + /CD104 + cells, suggesting that ROBO4 maintains stem and hybrid populations in breast cancer. Gene Set Enrichment Analysis (GSEA) suggests Rho GTPase, Wnt/beta-catenin, and Notch signaling are downregulated in ROBO4 knockdown cells. These findings reveal a novel role for ROBO4 in maintaining stem-like and hybrid cell populations in breast cancer, with ROBO4's location on the cell surface providing an attractive target for potential therapeutic applications.
利益披露 Disclosure
I. J. Fetter, Gentuity, LLC Other, Spouse employed at a medical device manufacturer unrelated to the proffered abstract. V. Haro Acosta, None.. P. Medina, None.. S. S. Sikandar, None.

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