European Center for Angioscience (ECAS), Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.
Vascular Oncology and Metastasis, German Cancer Research Center, Heidelberg (DKFZ-ZMBH Alliance), Germany.
Cancer Res. 2020 Jun 15;80(12):2586-2598. doi: 10.1158/0008-5472.CAN-19-2660. Epub 2020 Apr 17.
The angiopoietin (Angpt)-TIE signaling pathway controls vascular maturation and maintains the quiescent phenotype of resting vasculature. The contextual agonistic and antagonistic Tie2 ligand ANGPT2 is believed to be exclusively produced by endothelial cells, disrupting constitutive ANGPT1-TIE2 signaling to destabilize the microvasculature during pathologic disorders like inflammation and cancer. However, scattered reports have also portrayed tumor cells as a source of ANGPT2. Employing ISH-based detection of , we found strong tumor cell expression of in a subset of patients with melanoma. Comparative analysis of biopsies revealed a higher fraction of -expressing tumor cells in metastatic versus primary sites. Tumor cell-expressed was dispensable for primary tumor growth, yet in-depth analysis of primary tumors revealed enhanced intratumoral necrosis upon silencing of tumor cell expression in the absence of significant immune and vascular alterations. Global transcriptional profiling of -deficient tumor cells identified perturbations in redox homeostasis and an increased response to cellular oxidative stress. Ultrastructural analyses illustrated a significant increase of dysfunctional mitochondria in -silenced tumor cells, thereby resulting in enhanced reactive oxygen species (ROS) production and downstream MAPK stress signaling. Functionally, enhanced ROS in -silenced tumor cells reduced colonization potential and . Taken together, these findings uncover the hitherto unappreciated role of tumor cell-expressed ANGPT2 as an autocrine-positive regulator of metastatic colonization and validate ANGPT2 as a therapeutic target for a well-defined subset of patients with melanoma. SIGNIFICANCE: This study reveals that tumor cells can be a source of ANGPT2 in the tumor microenvironment and that tumor cell-derived ANGPT2 augments metastatic colonization by protecting tumor cells from oxidative stress.
血管生成素 (Angpt)-TIE 信号通路控制血管成熟并维持静止血管的静止表型。上下文激动和拮抗 Tie2 配体 ANGPT2 被认为仅由内皮细胞产生,破坏了固有的 ANGPT1-TIE2 信号,在炎症和癌症等病理紊乱期间破坏微血管的稳定性。然而,零星的报道也将肿瘤细胞描绘为 ANGPT2 的来源。我们使用基于原位杂交 (ISH) 的检测方法发现,在一部分黑色素瘤患者中,肿瘤细胞强烈表达 。对活检的比较分析显示,转移性肿瘤与原发性肿瘤相比,表达 的肿瘤细胞比例更高。肿瘤细胞表达的 对于原发性肿瘤的生长不是必需的,但对原发性肿瘤的深入分析表明,在没有明显免疫和血管改变的情况下,沉默肿瘤细胞 表达会增强肿瘤内坏死。-缺陷肿瘤细胞的全转录组分析鉴定出氧化还原稳态的扰动和对细胞氧化应激的反应增加。超微结构分析表明,沉默肿瘤细胞中的功能失调线粒体显著增加,从而导致活性氧 (ROS) 产生增加和下游 MAPK 应激信号。功能上,沉默肿瘤细胞中的增强 ROS 降低了定植潜力和侵袭性。总之,这些发现揭示了肿瘤细胞表达的 ANGPT2 作为肿瘤微环境中转移性定植的自主正调节剂的先前未被认识的作用,并验证了 ANGPT2 作为具有明确特征的黑色素瘤患者的治疗靶点。意义:本研究揭示了肿瘤细胞可以成为肿瘤微环境中 ANGPT2 的来源,并且肿瘤细胞衍生的 ANGPT2 通过保护肿瘤细胞免受氧化应激来增强转移性定植。