Department of Pharmacy, University of Salerno, Viale Giovanni Paolo II, Fisciano, 84084 Salerno, Italy.
Department of Pharmacy, University of Genova, Viale Benedetto XV 3, 16132 Genova, Italy.
Biomolecules. 2021 Nov 24;11(12):1758. doi: 10.3390/biom11121758.
The pyrazolyl-urea Gege3 molecule has shown interesting antiangiogenic effects in the tumor contest. Here, we have studied the role of this compound as interfering with endothelial cells activation in response to the paracrine effects of annexin A1 (ANXA1), known to be involved in promoting tumor progression. ANXA1 has been analyzed in the extracellular environment once secreted through microvesicles (EVs) by pancreatic cancer (PC) cells. Particularly, Gege3 has been able to notably prevent the effects of Ac2-26, the ANXA1 mimetic peptide, and of PC-derived EVs on endothelial cells motility, angiogenesis, and calcium release. Furthermore, this compound also inhibited the translocation of ANXA1 to the plasma membrane, otherwise induced by the same ANXA1-dependent extracellular stimuli. Moreover, these effects have been mediated by the indirect inhibition of protein kinase Cα (PKCα), which generally promotes the phosphorylation of ANXA1 on serine 27. Indeed, by the subtraction of intracellular calcium levels, the pathway triggered by PKCα underwent a strong inhibition leading to the following impediment to the ANXA1 localization at the plasma membrane, as revealed by confocal and cytofluorimetry analysis. Thus, Gege3 appeared an attractive molecule able to prevent the paracrine effects of PC cells deriving ANXA1 in the tumor microenvironment.
吡唑并脲 Gege3 分子在肿瘤环境中显示出有趣的抗血管生成作用。在这里,我们研究了这种化合物作为干扰内皮细胞激活的作用,内皮细胞激活是对 annexin A1(ANXA1)旁分泌效应的反应,已知参与促进肿瘤进展。ANXA1 一旦通过胰腺癌细胞(PC)分泌的微泡(EV)释放到细胞外环境中,就会被分析。特别是,Gege3 能够显著阻止 Ac2-26(ANXA1 模拟肽)和源自 PC 的 EV 对内皮细胞迁移、血管生成和钙释放的作用。此外,该化合物还抑制了 ANXA1 向质膜的易位,否则会被相同的依赖于 ANXA1 的细胞外刺激诱导。此外,这些作用是通过间接抑制蛋白激酶 Cα(PKCα)介导的,PKCα 通常促进 ANXA1 在丝氨酸 27 上的磷酸化。事实上,通过减去细胞内钙水平,PKCα 触发的途径受到强烈抑制,导致 ANXA1 在质膜上的定位受阻,如共聚焦和细胞荧光分析所示。因此,Gege3 似乎是一种有吸引力的分子,能够阻止肿瘤微环境中源自 PC 细胞的 ANXA1 的旁分泌作用。