Bilotta Anna, Dattilo Vincenzo, D'Agostino Sabrina, Belviso Stefania, Scalise Stefania, Bilotta Mariaconcetta, Gaudio Eugenio, Paduano Francesco, Perrotti Nicola, Florio Tullio, Fusco Alfredo, Iuliano Rodolfo, Trapasso Francesco
Department of Medicina Sperimentale e Clinica, University Magna Graecia of Catanzaro, Catanzaro, Italy.
Department of Scienze della Salute, University Magna Graecia of Catanzaro, Catanzaro, Italy.
Oncotarget. 2017 Feb 7;8(6):10091-10102. doi: 10.18632/oncotarget.14350.
PTPRJ is a receptor protein tyrosine phosphatase with tumor suppressor activity. Very little is known about the role of PTPRJ ectodomain, although recently both physiological and synthetic PTPRJ ligands have been identified. A putative shorter spliced variant, coding for a 539 aa protein corresponding to the extracellular N-terminus of PTPRJ, is reported in several databases but, currently, no further information is available.Here, we confirmed that the PTPRJ short isoform (named sPTPRJ) is a soluble protein secreted into the supernatant of both endothelial and tumor cells. Like PTPRJ, also sPTPRJ undergoes post-translational modifications such as glycosylation, as assessed by sPTPRJ immunoprecipitation. To characterize its functional activity, we performed an endothelial cell tube formation assay and a wound healing assay on HUVEC cells overexpressing sPTPRJ and we found that sPTPRJ has a proangiogenic activity. We also showed that sPTPRJ expression down-regulates endothelial adhesion molecules, that is a hallmark of proangiogenic activity. Moreover, sPTPRJ mRNA levels in human high-grade glioma, one of the most angiogenic tumors, are higher in tumor samples compared to controls. Further studies will be helpful not only to clarify the way sPTPRJ works but also to supply clues to circumvent its activity in cancer therapy.
PTPRJ是一种具有肿瘤抑制活性的受体蛋白酪氨酸磷酸酶。尽管最近已经鉴定出生理和合成的PTPRJ配体,但对PTPRJ胞外域的作用了解甚少。几个数据库中报道了一种假定的较短剪接变体,其编码一种对应于PTPRJ细胞外N端的539个氨基酸的蛋白质,但目前尚无更多信息。在此,我们证实PTPRJ短异构体(命名为sPTPRJ)是一种分泌到内皮细胞和肿瘤细胞上清液中的可溶性蛋白质。与PTPRJ一样,通过sPTPRJ免疫沉淀评估,sPTPRJ也会经历翻译后修饰,如糖基化。为了表征其功能活性,我们对过表达sPTPRJ的人脐静脉内皮细胞(HUVEC)进行了内皮细胞管形成试验和伤口愈合试验,发现sPTPRJ具有促血管生成活性。我们还表明,sPTPRJ的表达下调内皮黏附分子,这是促血管生成活性的一个标志。此外,在人类高级别胶质瘤(最具血管生成性的肿瘤之一)中,肿瘤样本中的sPTPRJ mRNA水平高于对照。进一步的研究不仅有助于阐明sPTPRJ的作用方式,还能为在癌症治疗中规避其活性提供线索。