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HEYL通过在乳腺肿瘤上皮和内皮细胞中过表达来调节新生血管生成。

HEYL Regulates Neoangiogenesis Through Overexpression in Both Breast Tumor Epithelium and Endothelium.

作者信息

Han Liangfeng, Korangath Preethi, Nguyen Nguyen K, Diehl Adam, Cho Soonweng, Teo Wei Wen, Cope Leslie, Gessler Manfred, Romer Lewis, Sukumar Saraswati

机构信息

Department of Oncology, Johns Hopkins University School of Medicine, Baltimore, MD, United States.

Developmental Biochemistry, Comprehensive Cancer Center Mainfraken and Theodor-Boveri-Institute/Biocenter, University of Wurzburg, Wurzburg, Germany.

出版信息

Front Oncol. 2021 Jan 15;10:581459. doi: 10.3389/fonc.2020.581459. eCollection 2020.

Abstract

Blocking tumor angiogenesis is an appealing therapeutic strategy, but to date, success has been elusive. We previously identified HEYL, a downstream target of Notch signaling, as an overexpressed gene in both breast cancer cells and as a tumor endothelial marker, suggesting that HEYL overexpression in both compartments may contribute to neoangiogenesis. Carcinomas arising in double transgenic Her2-neu/HeyL mice showed higher tumor vessel density and significantly faster growth than tumors in parental Her2/neu mice. Providing mechanistic insight, microarray-based mRNA profiling of HS578T-tet-off-HEYL human breast cancer cells revealed upregulation of several angiogenic factors including CXCL1/2/3 upon HEYL expression, which was validated by RT-qPCR and protein array analysis. Upregulation of the cytokines CXCL1/2/3 occurred through direct binding of HEYL to their promoter sequences. We found that vessel growth and migration of human vascular endothelial cells (HUVECs) was promoted by conditioned medium from HS578T-tet-off-HEYL carcinoma cells, but was blocked by neutralizing antibodies against CXCL1/2/3. Supporting these findings, suppressing HEYL expression using shRNA in MDA-MB-231 cells significantly reduced tumor growth. In addition, suppressing the action of proangiogenic cytokines induced by HEYL using a small molecule inhibitor of the CXCl1/2/3 receptor, CXCR2, in combination with the anti-VEGF monoclonal antibody, bevacizumab, significantly reduced tumor growth of MDA-MB-231 xenografts. Thus, HEYL expression in tumor epithelium has a profound effect on the vascular microenvironment in promoting neoangiogenesis. Furthermore, we show that lack of HEYL expression in endothelial cells leads to defects in neoangiogenesis, both under normal physiological conditions and in cancer. Thus, HeyL-/- mice showed impaired vessel outgrowth in the neonatal retina, while the growth of mammary tumor cells E0771 was retarded in syngeneic HeyL-/- mice compared to wild type C57/Bl6 mice. Blocking HEYL's angiogenesis-promoting function in both tumor cells and tumor-associated endothelium may enhance efficacy of therapy targeting the tumor vasculature in breast cancer.

摘要

阻断肿瘤血管生成是一种有吸引力的治疗策略,但迄今为止,尚未取得成功。我们之前鉴定出Notch信号的下游靶点HEYL,它在乳腺癌细胞中是一个过表达基因,也是一种肿瘤内皮标志物,这表明在这两个部分中HEYL的过表达可能有助于新生血管生成。双转基因Her2-neu/HeyL小鼠产生的癌显示出比亲代Her2/neu小鼠的肿瘤更高的肿瘤血管密度和显著更快的生长速度。为了提供机制上的见解,对HS578T-tet-off-HEYL人乳腺癌细胞进行基于微阵列的mRNA谱分析,结果显示在HEYL表达时几种血管生成因子包括CXCL1/2/3上调,这通过RT-qPCR和蛋白质阵列分析得到验证。细胞因子CXCL1/2/3的上调是通过HEYL直接结合它们的启动子序列发生的。我们发现来自HS578T-tet-off-HEYL癌细胞的条件培养基促进人血管内皮细胞(HUVECs)的血管生长和迁移,但被针对CXCL1/2/3的中和抗体阻断。支持这些发现的是,在MDA-MB-231细胞中使用shRNA抑制HEYL表达显著降低了肿瘤生长。此外,使用CXCl1/2/3受体的小分子抑制剂结合抗VEGF单克隆抗体贝伐单抗抑制由HEYL诱导的促血管生成细胞因子的作用,显著降低了MDA-MB-231异种移植瘤的肿瘤生长。因此,肿瘤上皮中HEYL蛋白的表达在促进新生血管生成方面对血管微环境有深远影响。此外,我们表明在内皮细胞中缺乏HEYL表达会导致在正常生理条件和癌症中新生血管生成的缺陷。因此,HeyL-/-小鼠在新生视网膜中的血管生长受损,而与野生型C57/Bl6小鼠相比,同基因HeyL-/-小鼠中乳腺肿瘤细胞E0771的生长受到抑制。在肿瘤细胞和肿瘤相关内皮细胞中阻断HEYL促进血管生成的功能可能会增强针对乳腺癌肿瘤血管的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3f8/7845423/7083511ffe84/fonc-10-581459-g001.jpg

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