From the Department of Pharmacology and Chemical Biology, University of Pittsburgh, Pittsburgh, Pennsylvania 15260.
J Biol Chem. 2014 Feb 28;289(9):5904-13. doi: 10.1074/jbc.M113.480038. Epub 2014 Jan 8.
Protein-tyrosine phosphatase 4A3 (PTP4A3) is highly expressed in multiple human cancers and is hypothesized to have a critical, albeit poorly defined, role in the formation of experimental tumors in mice. PTP4A3 is broadly expressed in many tissues so the cellular basis of its etiological contributions to carcinogenesis may involve both tumor and stromal cells. In particular, PTP4A3 is expressed in the tumor vasculature and has been proposed to be a direct target of vascular endothelial growth factor (VEGF) signaling in endothelial cells. We now provide the first in vivo experimental evidence that PTP4A3 participates in VEGF signaling and contributes to the process of pathological angiogenesis. Colon tumor tissue isolated from Ptp4a3-null mice revealed reduced tumor microvessel density compared with wild type controls. Additionally, vascular cells derived from Ptp4a3-null tissues exhibited decreased invasiveness in an ex vivo wound healing assay. When primary endothelial cells were isolated and cultured in vitro, Ptp4a3-null cells displayed greatly reduced migration compared with wild type cells. Exposure to VEGF led to an increase in Src phosphorylation in wild type endothelial cells, a response that was completely ablated in Ptp4a3-null cells. In loss-of-function studies, reduced VEGF-mediated migration was also observed when human endothelial cells were treated with a small molecule inhibitor of PTP4A3. VEGF-mediated in vivo vascular permeability was significantly attenuated in PTP4A3-deficient mice. These findings strongly support a role for PTP4A3 as an important contributor to endothelial cell function and as a multimodal target for cancer therapy and mitigating VEGF-regulated angiogenesis.
蛋白酪氨酸磷酸酶 4A3(PTP4A3)在多种人类癌症中高度表达,据推测在小鼠实验性肿瘤的形成中具有关键作用(尽管其作用尚未明确)。PTP4A3 在许多组织中广泛表达,因此其在癌症发生中的病因贡献的细胞基础可能涉及肿瘤细胞和基质细胞。特别是,PTP4A3 在肿瘤血管中表达,并被提出是内皮细胞中血管内皮生长因子(VEGF)信号的直接靶标。我们现在提供了第一个体内实验证据,证明 PTP4A3 参与 VEGF 信号传导,并有助于病理性血管生成的过程。与野生型对照相比,从 Ptp4a3 缺失型小鼠分离的结肠肿瘤组织显示肿瘤微血管密度降低。此外,源自 Ptp4a3 缺失型组织的血管细胞在体外伤口愈合测定中表现出侵袭性降低。当分离和培养原代内皮细胞时,与野生型细胞相比,Ptp4a3 缺失型细胞的迁移能力大大降低。暴露于 VEGF 导致野生型内皮细胞中Src 磷酸化增加,而 Ptp4a3 缺失型细胞中完全消除了该反应。在功能丧失研究中,当用 PTP4A3 的小分子抑制剂处理人内皮细胞时,也观察到 VEGF 介导的迁移减少。PTP4A3 缺陷型小鼠的 VEGF 介导的体内血管通透性显著减弱。这些发现强烈支持 PTP4A3 作为内皮细胞功能的重要贡献者以及作为癌症治疗和减轻 VEGF 调节的血管生成的多模式靶标的作用。