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Expression of semaphorin 6D and its receptor plexin-A1 in gastric cancer and their association with tumor angiogenesis

机译:semaphorin 6D及其受体plexin-A1在胃癌中的表达及其与肿瘤血管生成的关系

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The semaphorin and plexin family of ligands and receptor proteins provides important axon growth and guidance cues required for development. In recent years, studies have expanded their role in the regulation of cardiac morphogenesis and tumorigenesis. However, the mechanism responsible for their role in regulating cancer development and progression has not been clarified. In the present study, semaphorin 6D (Sema6D) and its receptor plexin-A1 were identified to be expressed at high levels in vascular epithelial cells within gastric cancer, and were positively correlated with vascular endothelial growth factor receptor 2 (VEGFR2). These findings verify our hypothesis that Sema6D and plexin-A1 may be closely associated with tumor angiogenesis. Combined with experimental observations in the MGC803 gastric cancer cell line, it was observed that knocking down plexin-A1 signaling led to a decreased expression of VEGFR2 at the messenger RNA and protein levels. Sema6D recognized and activated plexin-A1, which subsequently activated its downstream target, VEGFR2. The activation of VEGFR2 functioned as a positive regulator of tumor angiogenesis. Our data provided an understanding of the complex signaling cascades involved in the angiogenesis-related pathway in tumor cells. In light of our observations, pharmacological interventions targeting Sema6D/plexin-A1/VEGFR2 signaling may potentially be used as a target for the development of novel anti-angiogenic drugs in gastric cancer.
机译:semaphorin和plexin配体和受体蛋白家族提供重要的轴突生长和发育所需的指导信号。近年来,研究已经扩大了它们在调节心脏形态发生和肿瘤发生中的作用。但是,尚未阐明其在调节癌症发生和发展中的作用的机制。在本研究中,信号蛋白6D(Sema6D)及其受体plexin-A1被确定在胃癌内的血管上皮细胞中高表达,并且与血管内皮生长因子受体2(VEGFR2)正相关。这些发现证实了我们的假设,即Sema6D和plexin-A1可能与肿瘤血管生成密切相关。结合在MGC803胃癌细胞系中的实验观察结果,观察到击倒plexin-A1信号转导导致信使RNA和蛋白水平的VEGFR2表达降低。 Sema6D识别并激活了plexin-A1,随后激活了其下游靶标VEGFR2。 VEGFR2的激活作为肿瘤血管生成的正向调节器。我们的数据提供了对涉及肿瘤细胞中血管生成相关途径的复杂信号传导级联的理解。根据我们的观察,针对Sema6D / plexin-A1 / VEGFR2信号传导的药理干预措施有可能被用作开发新型抗血管生成药物的靶标。

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