Valiulyte I, Preitakaite V, Tamasauskas A, Kazlauskas A
Neuroscience Institute, Lithuanian University of Health Sciences, Kaunas, Lithuania.
Faculty of Medicine, Lithuanian University of Health Sciences, Kaunas, Lithuania.
Braz J Med Biol Res. 2018 Oct 8;51(11):e7786. doi: 10.1590/1414-431X20187786.
Angiogenesis is one of the key processes in the growth and development of tumors. Class-3 semaphorins (Sema3) are characterized as axon guidance factors involved in tumor angiogenesis by interacting with the vascular endothelial growth factor signaling pathway. Sema3 proteins convey their regulatory signals by binding to neuropilins and plexins receptors, which are located on the effector cell. These processes are regulated by furin endoproteinases that cleave RXRR motifs within the Sema, plexin-semaphorins-integrin, and C-terminal basic domains of Sema3 protein. Several studies have shown that the furin-mediated processing of the basic domain of Sema3F and Sema3A is critical for association with receptors. It is unclear, however, if this mechanism can also be applied to other Sema3 proteins, including the main subject of this study, Sema3C. To address this question, we generated a variant of the full-length human Sema3C carrying point mutation R745A at the basic domain at the hypothetical furin recognition site 742RNRR745, which would disable the processing of Sema3C at this specific location. The effects produced by this mutation were tested in an in vitro angiogenesis assay together with the wild-type Sema3C, Sema3A, and Sema3F proteins. Our results showed that the inhibitory effect of Sema3C on microcapillary formation by human umbilical vein endothelial cells could be abrogated upon mutation at the Sema3C basic domain within putative furin cleavage site 742RNRR745, indicating that this site was essential for the Sema3 biological activity.
血管生成是肿瘤生长和发展的关键过程之一。3类信号素(Sema3)的特征是作为轴突导向因子,通过与血管内皮生长因子信号通路相互作用参与肿瘤血管生成。Sema3蛋白通过与位于效应细胞上的神经纤毛蛋白和丛蛋白受体结合来传递其调节信号。这些过程由弗林蛋白酶调节,弗林蛋白酶可切割Sema3蛋白的Sema、丛蛋白-信号素-整合素以及C端碱性结构域内的RXRR基序。多项研究表明,弗林蛋白酶介导的Sema3F和Sema3A碱性结构域的加工对于与受体的结合至关重要。然而,尚不清楚这种机制是否也适用于其他Sema3蛋白,包括本研究的主要对象Sema3C。为了解决这个问题,我们构建了全长人Sema3C的一个变体,该变体在假定的弗林蛋白酶识别位点742RNRR745的碱性结构域携带点突变R745A,这将使Sema3C在这个特定位置的加工失效。该突变产生的效应与野生型Sema3C、Sema3A和Sema3F蛋白一起在体外血管生成试验中进行了测试。我们的结果表明,在假定的弗林蛋白酶切割位点742RNRR745处的Sema3C碱性结构域发生突变后,Sema3C对人脐静脉内皮细胞微毛细血管形成的抑制作用可能会被消除,这表明该位点对于Sema3的生物学活性至关重要。